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Conserved domains on  [gi|1219161051|ref|XP_021744069|]
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choline monooxygenase, chloroplastic [Chenopodium quinoa]

Protein Classification

SRPBCC family protein( domain architecture ID 10131506)

SRPBCC (START/RHOalphaC/PITP/Bet v1/CoxG/CalC) family protein may have a deep hydrophobic ligand-binding pocket

Graphical summary

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List of domain hits

Name Accession Description Interval E-value
Rieske_RO_Alpha_CMO cd03541
Rieske non-heme iron oxygenase (RO) family, Choline monooxygenase (CMO) subfamily, N-terminal ...
115-232 3.67e-86

Rieske non-heme iron oxygenase (RO) family, Choline monooxygenase (CMO) subfamily, N-terminal Rieske domain of the oxygenase alpha subunit; ROs comprise a large class of aromatic ring-hydroxylating dioxygenases that enable microorganisms to tolerate and utilize aromatic compounds for growth. The oxygenase alpha subunit contains an N-terminal Rieske domain with an [2Fe-2S] cluster and a C-terminal catalytic domain with a mononuclear Fe(II) binding site. The Rieske [2Fe-2S] cluster accepts electrons from a reductase or ferredoxin component and transfers them to the mononuclear iron for catalysis. CMO is a novel RO found in certain plants which catalyzes the first step in betaine synthesis. CMO is not found in animals or bacteria. In these organisms, the first step in betaine synthesis is catalyzed by either the membrane-bound choline dehydrogenase (CDH) or the soluble choline oxidase (COX).


:

Pssm-ID: 239614 [Multi-domain]  Cd Length: 118  Bit Score: 258.25  E-value: 3.67e-86
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 115 GWQVAGYSDQIKEPNQYFTGTLGNVEYLVCRDGEGKVHAFHNVCTHRASILACGSGKKSCFVCPYHGWVFGMNGSLTKAS 194
Cdd:cd03541     1 GWQVAGYSDQVKEKNQYFTGRLGNVEYVVCRDGNGKLHAFHNVCTHRASILACGSGKKSCFVCPYHGWVYGLDGSLTKAT 80
                          90       100       110
                  ....*....|....*....|....*....|....*...
gi 1219161051 195 KASEEQSLDPDELGLVPLKVAVWGPFILISLDRSSLEV 232
Cdd:cd03541    81 QATGIQNFNPKELGLVPLKVAEWGPFVLISVDRSLSEK 118
HcaE COG4638
Phenylpropionate dioxygenase or related ring-hydroxylating dioxygenase, large terminal subunit ...
90-430 1.66e-83

Phenylpropionate dioxygenase or related ring-hydroxylating dioxygenase, large terminal subunit [Inorganic ion transport and metabolism, General function prediction only];


:

Pssm-ID: 443676 [Multi-domain]  Cd Length: 298  Bit Score: 257.99  E-value: 1.66e-83
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051  90 ALTPPSSWYTEPAFYAHELDRIFYKGWQVAGYSDQIKEPNQYFTGTLGNVEYLVCRDGEGKVHAFHNVCTHRASILACGS 169
Cdd:COG4638     1 ASRLPAAFYTDPEIFELELERIFRRGWYYVGHSSELPEPGDYLTRTILGEPVVLVRDKDGEVRAFHNVCPHRGAPLSEGR 80
                          90       100       110       120       130       140       150       160
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 170 GKKSCFVCPYHGWVFGMNGSLTKASKASEEQSLDPDELGLVPLKVAVWGPFILISLDrsslevDDVGS--EWLGSCAEDV 247
Cdd:COG4638    81 GNGGRLVCPYHGWTYDLDGRLVGIPHMEGFPDFDPARAGLRSVPVEEWGGLIFVWLG------PDAPPlaEYLGPLAEYL 154
                         170       180       190       200       210       220       230       240
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 248 KAHAFdPNLQFINRSEFPMESNWKIFSDNYLDsSYHVPYAHKyyateldfdtyqtdmignvtiqrvagssnngfnrlgsq 327
Cdd:COG4638   155 DPYDF-GELKVAGRETYEVNANWKLVVENFLD-GYHVPFVHP-------------------------------------- 194
                         250       260       270       280       290       300       310       320
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 328 AFYAFAYPNFAVERYGPWMTTMHILPLGPRKCKLVVDYYIEKSKLDDkDYIEKGIAINDNVQKEDVVLCESVQKGLETPA 407
Cdd:COG4638   195 GIILFLFPNLMILDYPDHLVVRTVTPVSPDRTRVFVTFYVPKDALDP-EARADLEAFWGRVFEEDREIVERQQRGLRSLA 273
                         330       340
                  ....*....|....*....|....
gi 1219161051 408 YRSGRYVM-PIEKGIHHFHCWLHQ 430
Cdd:COG4638   274 YPGPYLSRsPAEGGVRHFRRWLRR 297
 
Name Accession Description Interval E-value
Rieske_RO_Alpha_CMO cd03541
Rieske non-heme iron oxygenase (RO) family, Choline monooxygenase (CMO) subfamily, N-terminal ...
115-232 3.67e-86

Rieske non-heme iron oxygenase (RO) family, Choline monooxygenase (CMO) subfamily, N-terminal Rieske domain of the oxygenase alpha subunit; ROs comprise a large class of aromatic ring-hydroxylating dioxygenases that enable microorganisms to tolerate and utilize aromatic compounds for growth. The oxygenase alpha subunit contains an N-terminal Rieske domain with an [2Fe-2S] cluster and a C-terminal catalytic domain with a mononuclear Fe(II) binding site. The Rieske [2Fe-2S] cluster accepts electrons from a reductase or ferredoxin component and transfers them to the mononuclear iron for catalysis. CMO is a novel RO found in certain plants which catalyzes the first step in betaine synthesis. CMO is not found in animals or bacteria. In these organisms, the first step in betaine synthesis is catalyzed by either the membrane-bound choline dehydrogenase (CDH) or the soluble choline oxidase (COX).


Pssm-ID: 239614 [Multi-domain]  Cd Length: 118  Bit Score: 258.25  E-value: 3.67e-86
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 115 GWQVAGYSDQIKEPNQYFTGTLGNVEYLVCRDGEGKVHAFHNVCTHRASILACGSGKKSCFVCPYHGWVFGMNGSLTKAS 194
Cdd:cd03541     1 GWQVAGYSDQVKEKNQYFTGRLGNVEYVVCRDGNGKLHAFHNVCTHRASILACGSGKKSCFVCPYHGWVYGLDGSLTKAT 80
                          90       100       110
                  ....*....|....*....|....*....|....*...
gi 1219161051 195 KASEEQSLDPDELGLVPLKVAVWGPFILISLDRSSLEV 232
Cdd:cd03541    81 QATGIQNFNPKELGLVPLKVAEWGPFVLISVDRSLSEK 118
HcaE COG4638
Phenylpropionate dioxygenase or related ring-hydroxylating dioxygenase, large terminal subunit ...
90-430 1.66e-83

Phenylpropionate dioxygenase or related ring-hydroxylating dioxygenase, large terminal subunit [Inorganic ion transport and metabolism, General function prediction only];


Pssm-ID: 443676 [Multi-domain]  Cd Length: 298  Bit Score: 257.99  E-value: 1.66e-83
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051  90 ALTPPSSWYTEPAFYAHELDRIFYKGWQVAGYSDQIKEPNQYFTGTLGNVEYLVCRDGEGKVHAFHNVCTHRASILACGS 169
Cdd:COG4638     1 ASRLPAAFYTDPEIFELELERIFRRGWYYVGHSSELPEPGDYLTRTILGEPVVLVRDKDGEVRAFHNVCPHRGAPLSEGR 80
                          90       100       110       120       130       140       150       160
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 170 GKKSCFVCPYHGWVFGMNGSLTKASKASEEQSLDPDELGLVPLKVAVWGPFILISLDrsslevDDVGS--EWLGSCAEDV 247
Cdd:COG4638    81 GNGGRLVCPYHGWTYDLDGRLVGIPHMEGFPDFDPARAGLRSVPVEEWGGLIFVWLG------PDAPPlaEYLGPLAEYL 154
                         170       180       190       200       210       220       230       240
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 248 KAHAFdPNLQFINRSEFPMESNWKIFSDNYLDsSYHVPYAHKyyateldfdtyqtdmignvtiqrvagssnngfnrlgsq 327
Cdd:COG4638   155 DPYDF-GELKVAGRETYEVNANWKLVVENFLD-GYHVPFVHP-------------------------------------- 194
                         250       260       270       280       290       300       310       320
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 328 AFYAFAYPNFAVERYGPWMTTMHILPLGPRKCKLVVDYYIEKSKLDDkDYIEKGIAINDNVQKEDVVLCESVQKGLETPA 407
Cdd:COG4638   195 GIILFLFPNLMILDYPDHLVVRTVTPVSPDRTRVFVTFYVPKDALDP-EARADLEAFWGRVFEEDREIVERQQRGLRSLA 273
                         330       340
                  ....*....|....*....|....
gi 1219161051 408 YRSGRYVM-PIEKGIHHFHCWLHQ 430
Cdd:COG4638   274 YPGPYLSRsPAEGGVRHFRRWLRR 297
RHO_alpha_C_CMO-like cd08883
C-terminal catalytic domain of plant choline monooxygenase (CMO) and related aromatic ring ...
259-433 8.02e-83

C-terminal catalytic domain of plant choline monooxygenase (CMO) and related aromatic ring hydroxylating dioxygenases; C-terminal catalytic domain of plant choline monooxygenase and related Rieske-type non-heme iron aromatic ring-hydroxylating oxygenases (RHOs, also known as aromatic ring hydroxylating dioxygenases). RHOs utilize non-heme Fe(II) to catalyze the addition of hydroxyl groups to the aromatic ring, an initial step in the oxidative degradation of aromatic compounds. RHOs are composed of either two or three protein components, and are comprised of an electron transport chain (ETC) and an oxygenase. The ETC transfers reducing equivalents from the electron donor to the oxygenase component, which in turn transfers electrons to the oxygen molecules. The oxygenase components are oligomers, either (alpha)n or (alpha)n(beta)n. The alpha subunits are the catalytic components and have an N-terminal domain, which binds a Rieske-like 2Fe-2S cluster, and a C-terminal domain which binds the non-heme Fe(II). The Fe(II) is co-ordinated by conserved His and Asp residues. Plant choline monooxygenase catalyzes the first step in a two-step oxidation of choline to the osmoprotectant glycine betaine. This subfamily belongs to the SRPBCC (START/RHO_alpha_C/PITP/Bet_v1/CoxG/CalC) domain superfamily of proteins that bind hydrophobic ligands. SRPBCC domains have a deep hydrophobic ligand-binding pocket.


Pssm-ID: 176892  Cd Length: 175  Bit Score: 251.88  E-value: 8.02e-83
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 259 INRSEFPMESNWKIFSDNYLdSSYHVPYAHKYYATELDFDTYQTDMIGNVTIQRVAGSSN--NGFNRLGSQAFYAFAYPN 336
Cdd:cd08883     1 HARREYVIECNWKVYVDNYL-EGYHVPFAHPGLAAVLDYATYRTELFEYVSLQSAPARAEegSFFYRLGNAALYAWIYPN 79
                          90       100       110       120       130       140       150       160
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 337 FAVERYGPWMTTMHILPLGPRKCKLVVDYYIEKSKLDDKDYIEKGIAiNDNVQKEDVVLCESVQKGLETPAYRSGRYVMP 416
Cdd:cd08883    80 LMLNRYPPGMDVNVVLPLGPERCKVVFDYFVDDSDGSDEAFIAESIE-SDRVQKEDIEICESVQRGLESGAYDPGRFSPK 158
                         170
                  ....*....|....*..
gi 1219161051 417 IEKGIHHFHCWLHQVLK 433
Cdd:cd08883   159 RENGVHHFHRLLAQALN 175
Ring_hydroxyl_A pfam00848
Ring hydroxylating alpha subunit (catalytic domain); This family is the catalytic domain of ...
269-428 1.14e-24

Ring hydroxylating alpha subunit (catalytic domain); This family is the catalytic domain of aromatic-ring- hydroxylating dioxygenase systems. The active site contains a non-heme ferrous ion coordinated by three ligands.


Pssm-ID: 425905  Cd Length: 210  Bit Score: 100.99  E-value: 1.14e-24
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 269 NWKIFSDNYLDsSYHVPYAHK-----YYATELDF-------------------------DTYQTDMIGNVTIQRVAGssn 318
Cdd:pfam00848  17 NWKLAAENFLE-CYHVPVLHPellraSPPEDLPPseaahfdgfgphgrlgqggdlrltpAAASMTLDAEAGRPELPG--- 92
                          90       100       110       120       130       140       150       160
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 319 nGFNRLGSQAFYAFAYPNFAVERYGPWMTTMHILPLGPRKCKLVVDYYIEKSKL---DDKDYIEKGIAINDNVQKEDVVL 395
Cdd:pfam00848  93 -LPEEQDRGALFYTLFPNLSILLAPDHVVVYQLIPTGPDTTRVEVYWYVPPDALaepEFAEELEAVWDRTFGVNQEDAEL 171
                         170       180       190
                  ....*....|....*....|....*....|...
gi 1219161051 396 CESVQKGLETPAYRSGRYVMPIEKGIHHFHCWL 428
Cdd:pfam00848 172 CERVQRGLRSRGYEPGPVFGRQEGGVRHFHEWV 204
Rieske pfam00355
Rieske [2Fe-2S] domain; The rieske domain has a [2Fe-2S] centre. Two conserved cysteines ...
115-193 1.38e-20

Rieske [2Fe-2S] domain; The rieske domain has a [2Fe-2S] centre. Two conserved cysteines coordinate one Fe ion, while the other Fe ion is coordinated by two conserved histidines. In hyperthermophilic archaea there is a SKTPCX(2-3)C motif at the C-terminus. The cysteines in this motif form a disulphide bridge, which stabilizes the protein.


Pssm-ID: 425632 [Multi-domain]  Cd Length: 89  Bit Score: 85.86  E-value: 1.38e-20
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 115 GWQVAGYSDQIKEPNQYFTgTLGNVEYLVCRDGEGKVHAFHNVCTHRASILACGSG-KKSCFVCPYHGWVFGMNGSLTKA 193
Cdd:pfam00355   1 SWYPVCHSSELPEGEPKVV-EVGGEPLVVFRDEDGELYALEDRCPHRGAPLSEGKVnGGGRLECPYHGWRFDGTGKVVKV 79
NirD COG2146
Ferredoxin subunit of nitrite reductase or a ring-hydroxylating dioxygenase [Inorganic ion ...
116-184 4.49e-09

Ferredoxin subunit of nitrite reductase or a ring-hydroxylating dioxygenase [Inorganic ion transport and metabolism, Secondary metabolites biosynthesis, transport and catabolism];


Pssm-ID: 441749 [Multi-domain]  Cd Length: 103  Bit Score: 53.69  E-value: 4.49e-09
                          10        20        30        40        50        60
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....
gi 1219161051 116 WQVAGYSDQIkEPNQYFTGTLGNVEYLVCRDGeGKVHAFHNVCTHRASILACGSGKKSCFVCPYHGWVF 184
Cdd:COG2146     3 EVKVCALDDL-PEGGGVVVEVGGKQIAVFRTD-GEVYAYDNRCPHQGAPLSEGIVDGGVVTCPLHGARF 69
PLN00095 PLN00095
chlorophyllide a oxygenase; Provisional
116-192 2.32e-05

chlorophyllide a oxygenase; Provisional


Pssm-ID: 165668 [Multi-domain]  Cd Length: 394  Bit Score: 46.21  E-value: 2.32e-05
                          10        20        30        40        50        60        70
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*..
gi 1219161051 116 WQVAGYSDQIKEPNQYFTGTLGNVEYLVCRDGEGKVHAFHNVCTHRASILACGSGKKSCFVCPYHGWVFGMNGSLTK 192
Cdd:PLN00095   73 WFPVAFAAGLRDEDALIAFDLFNVPWVLFRDADGEAGCIKDECAHRACPLSLGKLVDGKAQCPYHGWEYETGGECAK 149
 
Name Accession Description Interval E-value
Rieske_RO_Alpha_CMO cd03541
Rieske non-heme iron oxygenase (RO) family, Choline monooxygenase (CMO) subfamily, N-terminal ...
115-232 3.67e-86

Rieske non-heme iron oxygenase (RO) family, Choline monooxygenase (CMO) subfamily, N-terminal Rieske domain of the oxygenase alpha subunit; ROs comprise a large class of aromatic ring-hydroxylating dioxygenases that enable microorganisms to tolerate and utilize aromatic compounds for growth. The oxygenase alpha subunit contains an N-terminal Rieske domain with an [2Fe-2S] cluster and a C-terminal catalytic domain with a mononuclear Fe(II) binding site. The Rieske [2Fe-2S] cluster accepts electrons from a reductase or ferredoxin component and transfers them to the mononuclear iron for catalysis. CMO is a novel RO found in certain plants which catalyzes the first step in betaine synthesis. CMO is not found in animals or bacteria. In these organisms, the first step in betaine synthesis is catalyzed by either the membrane-bound choline dehydrogenase (CDH) or the soluble choline oxidase (COX).


Pssm-ID: 239614 [Multi-domain]  Cd Length: 118  Bit Score: 258.25  E-value: 3.67e-86
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 115 GWQVAGYSDQIKEPNQYFTGTLGNVEYLVCRDGEGKVHAFHNVCTHRASILACGSGKKSCFVCPYHGWVFGMNGSLTKAS 194
Cdd:cd03541     1 GWQVAGYSDQVKEKNQYFTGRLGNVEYVVCRDGNGKLHAFHNVCTHRASILACGSGKKSCFVCPYHGWVYGLDGSLTKAT 80
                          90       100       110
                  ....*....|....*....|....*....|....*...
gi 1219161051 195 KASEEQSLDPDELGLVPLKVAVWGPFILISLDRSSLEV 232
Cdd:cd03541    81 QATGIQNFNPKELGLVPLKVAEWGPFVLISVDRSLSEK 118
HcaE COG4638
Phenylpropionate dioxygenase or related ring-hydroxylating dioxygenase, large terminal subunit ...
90-430 1.66e-83

Phenylpropionate dioxygenase or related ring-hydroxylating dioxygenase, large terminal subunit [Inorganic ion transport and metabolism, General function prediction only];


Pssm-ID: 443676 [Multi-domain]  Cd Length: 298  Bit Score: 257.99  E-value: 1.66e-83
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051  90 ALTPPSSWYTEPAFYAHELDRIFYKGWQVAGYSDQIKEPNQYFTGTLGNVEYLVCRDGEGKVHAFHNVCTHRASILACGS 169
Cdd:COG4638     1 ASRLPAAFYTDPEIFELELERIFRRGWYYVGHSSELPEPGDYLTRTILGEPVVLVRDKDGEVRAFHNVCPHRGAPLSEGR 80
                          90       100       110       120       130       140       150       160
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 170 GKKSCFVCPYHGWVFGMNGSLTKASKASEEQSLDPDELGLVPLKVAVWGPFILISLDrsslevDDVGS--EWLGSCAEDV 247
Cdd:COG4638    81 GNGGRLVCPYHGWTYDLDGRLVGIPHMEGFPDFDPARAGLRSVPVEEWGGLIFVWLG------PDAPPlaEYLGPLAEYL 154
                         170       180       190       200       210       220       230       240
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 248 KAHAFdPNLQFINRSEFPMESNWKIFSDNYLDsSYHVPYAHKyyateldfdtyqtdmignvtiqrvagssnngfnrlgsq 327
Cdd:COG4638   155 DPYDF-GELKVAGRETYEVNANWKLVVENFLD-GYHVPFVHP-------------------------------------- 194
                         250       260       270       280       290       300       310       320
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 328 AFYAFAYPNFAVERYGPWMTTMHILPLGPRKCKLVVDYYIEKSKLDDkDYIEKGIAINDNVQKEDVVLCESVQKGLETPA 407
Cdd:COG4638   195 GIILFLFPNLMILDYPDHLVVRTVTPVSPDRTRVFVTFYVPKDALDP-EARADLEAFWGRVFEEDREIVERQQRGLRSLA 273
                         330       340
                  ....*....|....*....|....
gi 1219161051 408 YRSGRYVM-PIEKGIHHFHCWLHQ 430
Cdd:COG4638   274 YPGPYLSRsPAEGGVRHFRRWLRR 297
RHO_alpha_C_CMO-like cd08883
C-terminal catalytic domain of plant choline monooxygenase (CMO) and related aromatic ring ...
259-433 8.02e-83

C-terminal catalytic domain of plant choline monooxygenase (CMO) and related aromatic ring hydroxylating dioxygenases; C-terminal catalytic domain of plant choline monooxygenase and related Rieske-type non-heme iron aromatic ring-hydroxylating oxygenases (RHOs, also known as aromatic ring hydroxylating dioxygenases). RHOs utilize non-heme Fe(II) to catalyze the addition of hydroxyl groups to the aromatic ring, an initial step in the oxidative degradation of aromatic compounds. RHOs are composed of either two or three protein components, and are comprised of an electron transport chain (ETC) and an oxygenase. The ETC transfers reducing equivalents from the electron donor to the oxygenase component, which in turn transfers electrons to the oxygen molecules. The oxygenase components are oligomers, either (alpha)n or (alpha)n(beta)n. The alpha subunits are the catalytic components and have an N-terminal domain, which binds a Rieske-like 2Fe-2S cluster, and a C-terminal domain which binds the non-heme Fe(II). The Fe(II) is co-ordinated by conserved His and Asp residues. Plant choline monooxygenase catalyzes the first step in a two-step oxidation of choline to the osmoprotectant glycine betaine. This subfamily belongs to the SRPBCC (START/RHO_alpha_C/PITP/Bet_v1/CoxG/CalC) domain superfamily of proteins that bind hydrophobic ligands. SRPBCC domains have a deep hydrophobic ligand-binding pocket.


Pssm-ID: 176892  Cd Length: 175  Bit Score: 251.88  E-value: 8.02e-83
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 259 INRSEFPMESNWKIFSDNYLdSSYHVPYAHKYYATELDFDTYQTDMIGNVTIQRVAGSSN--NGFNRLGSQAFYAFAYPN 336
Cdd:cd08883     1 HARREYVIECNWKVYVDNYL-EGYHVPFAHPGLAAVLDYATYRTELFEYVSLQSAPARAEegSFFYRLGNAALYAWIYPN 79
                          90       100       110       120       130       140       150       160
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 337 FAVERYGPWMTTMHILPLGPRKCKLVVDYYIEKSKLDDKDYIEKGIAiNDNVQKEDVVLCESVQKGLETPAYRSGRYVMP 416
Cdd:cd08883    80 LMLNRYPPGMDVNVVLPLGPERCKVVFDYFVDDSDGSDEAFIAESIE-SDRVQKEDIEICESVQRGLESGAYDPGRFSPK 158
                         170
                  ....*....|....*..
gi 1219161051 417 IEKGIHHFHCWLHQVLK 433
Cdd:cd08883   159 RENGVHHFHRLLAQALN 175
Rieske_RO_Alpha_N cd03469
Rieske non-heme iron oxygenase (RO) family, N-terminal Rieske domain of the oxygenase alpha ...
116-226 3.96e-42

Rieske non-heme iron oxygenase (RO) family, N-terminal Rieske domain of the oxygenase alpha subunit; The RO family comprise a large class of aromatic ring-hydroxylating dioxygenases found predominantly in microorganisms. These enzymes enable microorganisms to tolerate and even exclusively utilize aromatic compounds for growth. ROs consist of two or three components: reductase, oxygenase, and ferredoxin (in some cases) components. The oxygenase component may contain alpha and beta subunits, with the beta subunit having a purely structural function. Some oxygenase components contain only an alpha subunit. The oxygenase alpha subunit has two domains, an N-terminal Rieske domain with an [2Fe-2S] cluster and a C-terminal catalytic domain with a mononuclear Fe(II) binding site. The Rieske [2Fe-2S] cluster accepts electrons from the reductase or ferredoxin component and transfers them to the mononuclear iron for catalysis. Reduced pyridine nucleotide is used as the initial source of two electrons for dioxygen activation.


Pssm-ID: 239551 [Multi-domain]  Cd Length: 118  Bit Score: 144.65  E-value: 3.96e-42
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 116 WQVAGYSDQIKEPNQYFTGTLGNVEYLVCRDGEGKVHAFHNVCTHRASILACG-SGKKSCFVCPYHGWVFGMNGSLTKAS 194
Cdd:cd03469     1 WYFVGHSSELPEPGDYVTLELGGEPLVLVRDRDGEVRAFHNVCPHRGARLCEGrGGNAGRLVCPYHGWTYDLDGKLVGVP 80
                          90       100       110
                  ....*....|....*....|....*....|..
gi 1219161051 195 KASEEQSLDPDELGLVPLKVAVWGPFILISLD 226
Cdd:cd03469    81 REEGFPGFDKEKLGLRTVPVEEWGGLIFVNLD 112
RHO_alpha_C cd00680
C-terminal catalytic domain of the oxygenase alpha subunit of Rieske-type non-heme iron ...
261-432 5.56e-36

C-terminal catalytic domain of the oxygenase alpha subunit of Rieske-type non-heme iron aromatic ring-hydroxylating oxygenases; C-terminal catalytic domain of the oxygenase alpha subunit of Rieske-type non-heme iron aromatic ring-hydroxylating oxygenase (RHO) family. RHOs, also known as aromatic ring hydroxylating dioxygenases, utilize non-heme Fe(II) to catalyze the addition of hydroxyl groups to the aromatic ring, an initial step in the oxidative degradation of aromatic compounds. RHOs are composed of either two or three protein components, and are comprised of an electron transport chain (ETC), and an oxygenase. The ETC transfers reducing equivalents from the electron donor to the oxygenase component, which in turn transfers electrons to the oxygen molecules. The oxygenase components are oligomers, either (alpha)n or (alpha)n(beta)n. The alpha subunits are the catalytic components and have an N-terminal domain, which binds a Rieske-like 2Fe-2S cluster, and a C-terminal domain which binds the non-heme Fe(II). The Fe(II) is co-ordinated by conserved His and Asp residues. Oxygenases belonging to this family include the alpha subunits of Pseudomonas resinovorans strain CA10 anthranilate 1,2-dioxygenase, Stenotrophomonas maltophilia dicamba O-demethylase, Ralstonia sp. U2 salicylate-5-hydroxylase, Cycloclasticus sp. strain A5 polycyclic aromatic hydrocarbon dioxygenase, toluene 2,3-dioxygenase from Pseudomonas putida F1, dioxin dioxygenase of Sphingomonas sp. Strain RW1, plant choline monooxygenase, and the polycyclic aromatic hydrocarbon (PAH)-degrading ring-hydroxylating dioxygenase from Sphingomonas CHY-1. This group also includes the C-terminal catalytic domains of MupW, part of the mupirocin biosynthetic gene cluster in Pseudomonas fluorescens, and Pseudomonas aeruginosa GbcA (glycine betaine catabolism A). This family belongs to the SRPBCC (START/RHO_alpha_C/PITP/Bet_v1/CoxG/CalC) domain superfamily of proteins that bind hydrophobic ligands. SRPBCC domains have a deep hydrophobic ligand-binding pocket.


Pssm-ID: 176852 [Multi-domain]  Cd Length: 188  Bit Score: 130.76  E-value: 5.56e-36
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 261 RSEFPMESNWKIFSDNYLDSsYHVPYAHK------YYATELDFDTYQTDMIGNVTIQRVAGS-------SNNGFNRLGSQ 327
Cdd:cd00680     2 RYEYEVDCNWKLAVENFLEC-YHVPTVHPdtlatgLPLPLLFGDHYRVDDTGEGPGEGLSRHwgdgkgpQSALPGLKPGG 80
                          90       100       110       120       130       140       150       160
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 328 AFYAFAYPNFAVERYGPWMTTMHILPLGPRKCKLVVDYYIEKSKLDD---KDYIEKGIAINDNVQKEDVVLCESVQKGLE 404
Cdd:cd00680    81 YLYLYLFPNLMIGLYPDSLQVQQFVPIGPNKTRLEVRLYRPKDEDAReefDAELESLAGILRQVLDEDIELCERIQRGLR 160
                         170       180
                  ....*....|....*....|....*...
gi 1219161051 405 TPAYRSGRyVMPIEKGIHHFHCWLHQVL 432
Cdd:cd00680   161 SGAFRGGP-LSPLEEGIRHFHRWLRRAL 187
RHO_alpha_C_2 cd08886
C-terminal catalytic domain of the oxygenase alpha subunit of an uncharacterized subgroup of ...
261-425 9.77e-31

C-terminal catalytic domain of the oxygenase alpha subunit of an uncharacterized subgroup of Rieske-type non-heme iron aromatic ring-hydroxylating oxygenases; C-terminal catalytic domain of the oxygenase alpha subunit of a functionally uncharacterized subgroup of the Rieske-type non-heme iron aromatic ring-hydroxylating oxygenase (RHO) family. RHOs, also known as aromatic ring hydroxylating dioxygenases, utilize non-heme Fe(II) to catalyze the addition of hydroxyl groups to the aromatic ring, an initial step in the oxidative degradation of aromatic compounds. RHOs are composed of either two or three protein components, and are comprised of an electron transport chain (ETC) and an oxygenase. The ETC transfers reducing equivalents from the electron donor to the oxygenase component, which in turn transfers electrons to the oxygen molecules. The oxygenase components are oligomers, either (alpha)n or (alpha)n(beta)n. The alpha subunits are the catalytic components and have an N-terminal domain, which binds a Rieske-like 2Fe-2S cluster, and a C-terminal domain which binds the non-heme Fe(II). The Fe(II) is co-ordinated by conserved His and Asp residues. This subfamily belongs to the SRPBCC (START/RHO_alpha_C/PITP/Bet_v1/CoxG/CalC) domain superfamily of proteins that bind hydrophobic ligands. SRPBCC domains have a deep hydrophobic ligand-binding pocket.


Pssm-ID: 176895  Cd Length: 182  Bit Score: 116.44  E-value: 9.77e-31
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 261 RSEFPMESNWKIFSDNYLDSsYHVPYAHKYYATELDFDTYQTDMIGNVTIQRV----AGSSNNGFNRLGSQAFYaFAYPN 336
Cdd:cd08886     3 RLTSEIKANWKNVVDNYLEC-YHCHTAHPDFVDSLDMDTYKHTTHGNYSSQMAnygsAENSEYSVKPDADFAFY-WLWPN 80
                          90       100       110       120       130       140       150       160
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 337 FAVERYG--PWMTTMHILPLGPRKCKLVVDYYIEKSKLDDKDyiEKGIAINDNVQK-EDVVLCESVQKGLETPAYRSGRY 413
Cdd:cd08886    81 TMLNVYPgaGNMGVINIIPVDAETTLQHYDFYFRDEELTDEE--KELIEYYRQVLQpEDLELVESVQRGLKSRAFGQGRI 158
                         170
                  ....*....|....*...
gi 1219161051 414 VM------PIEKGIHHFH 425
Cdd:cd08886   159 VVdpsgsgISEHAVHHFH 176
Ring_hydroxyl_A pfam00848
Ring hydroxylating alpha subunit (catalytic domain); This family is the catalytic domain of ...
269-428 1.14e-24

Ring hydroxylating alpha subunit (catalytic domain); This family is the catalytic domain of aromatic-ring- hydroxylating dioxygenase systems. The active site contains a non-heme ferrous ion coordinated by three ligands.


Pssm-ID: 425905  Cd Length: 210  Bit Score: 100.99  E-value: 1.14e-24
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 269 NWKIFSDNYLDsSYHVPYAHK-----YYATELDF-------------------------DTYQTDMIGNVTIQRVAGssn 318
Cdd:pfam00848  17 NWKLAAENFLE-CYHVPVLHPellraSPPEDLPPseaahfdgfgphgrlgqggdlrltpAAASMTLDAEAGRPELPG--- 92
                          90       100       110       120       130       140       150       160
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 319 nGFNRLGSQAFYAFAYPNFAVERYGPWMTTMHILPLGPRKCKLVVDYYIEKSKL---DDKDYIEKGIAINDNVQKEDVVL 395
Cdd:pfam00848  93 -LPEEQDRGALFYTLFPNLSILLAPDHVVVYQLIPTGPDTTRVEVYWYVPPDALaepEFAEELEAVWDRTFGVNQEDAEL 171
                         170       180       190
                  ....*....|....*....|....*....|...
gi 1219161051 396 CESVQKGLETPAYRSGRYVMPIEKGIHHFHCWL 428
Cdd:pfam00848 172 CERVQRGLRSRGYEPGPVFGRQEGGVRHFHEWV 204
Rieske pfam00355
Rieske [2Fe-2S] domain; The rieske domain has a [2Fe-2S] centre. Two conserved cysteines ...
115-193 1.38e-20

Rieske [2Fe-2S] domain; The rieske domain has a [2Fe-2S] centre. Two conserved cysteines coordinate one Fe ion, while the other Fe ion is coordinated by two conserved histidines. In hyperthermophilic archaea there is a SKTPCX(2-3)C motif at the C-terminus. The cysteines in this motif form a disulphide bridge, which stabilizes the protein.


Pssm-ID: 425632 [Multi-domain]  Cd Length: 89  Bit Score: 85.86  E-value: 1.38e-20
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 115 GWQVAGYSDQIKEPNQYFTgTLGNVEYLVCRDGEGKVHAFHNVCTHRASILACGSG-KKSCFVCPYHGWVFGMNGSLTKA 193
Cdd:pfam00355   1 SWYPVCHSSELPEGEPKVV-EVGGEPLVVFRDEDGELYALEDRCPHRGAPLSEGKVnGGGRLECPYHGWRFDGTGKVVKV 79
Rieske_RO_Alpha_AntDO cd03538
Rieske non-heme iron oxygenase (RO) family, Anthranilate 1,2-dioxygenase (AntDO) subfamily, ...
98-206 7.29e-19

Rieske non-heme iron oxygenase (RO) family, Anthranilate 1,2-dioxygenase (AntDO) subfamily, N-terminal Rieske domain of the oxygenase alpha subunit; ROs comprise a large class of aromatic ring-hydroxylating dioxygenases that enable microorganisms to tolerate and utilize aromatic compounds for growth. The oxygenase alpha subunit contains an N-terminal Rieske domain with an [2Fe-2S] cluster and a C-terminal catalytic domain with a mononuclear Fe(II) binding site. The Rieske [2Fe-2S] cluster accepts electrons from a reductase or ferredoxin component and transfers them to the mononuclear iron for catalysis. AntDO converts anthranilate to catechol, a naturally occurring compound formed through tryptophan degradation and an important intermediate in the metabolism of many N-heterocyclic compounds such as indole, o-nitrobenzoate, carbazole, and quinaldine.


Pssm-ID: 239612 [Multi-domain]  Cd Length: 146  Bit Score: 82.90  E-value: 7.29e-19
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051  98 YTEPAFYAHELDRIFYKGWQVAGYSDQIKEPNQYFTGTLGNVEYLVCRDGEGKVHAFHNVCTHRASILA---CGSGKKSc 174
Cdd:cd03538     5 YTDPEIFALEMERLFGNAWIYVGHESQVPNPGDYITTRIGDQPVVMVRHTDGSVHVLYNRCPHKGTKIVsdgCGNTGKF- 83
                          90       100       110
                  ....*....|....*....|....*....|....
gi 1219161051 175 FVCPYHGWVFGMNGSLTKA--SKASEEQSLDPDE 206
Cdd:cd03538    84 FRCPYHAWSFKTDGSLLAIplKKGYEGTGFDPSH 117
PobA COG5749
Chlorophyllide a oxygenase/letal leaf spot protein [Coenzyme transport and metabolism];
111-418 4.67e-18

Chlorophyllide a oxygenase/letal leaf spot protein [Coenzyme transport and metabolism];


Pssm-ID: 444459 [Multi-domain]  Cd Length: 349  Bit Score: 85.05  E-value: 4.67e-18
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 111 IFYKGWQVAGYSDQIKePNQYFTGTLGNVEYLVCRDGEGKVHAFHNVCTHRASILACGSGKKSCFVCPYHGWVFGMNGSL 190
Cdd:COG5749    15 IFRNHWYPVAPSEDLK-PNKPKPVTLLGEPLVIWRDSDGKVVALEDRCPHRGAPLSEGRVEGGNLRCPYHGWQFDGDGKC 93
                          90       100       110       120       130       140       150       160
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 191 TKASKASEEQSLdPDELGLVPLKVAVWGPFILIsldrsslevddvgseWLGSCAEDVKAHAFD-PNLQFIN----RSEFP 265
Cdd:COG5749    94 VHIPQLPENQPI-PKNAKVKSYPVQERYGLIWV---------------WLGDPPQADETPIPDiPELDDPEwvatSSVRD 157
                         170       180       190       200       210       220       230       240
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 266 MESNWKIFSDNYLDSSyHVPYAHK------YYATELDFDTYQTDmiGNVTIQRVAGSSNNGF----NRLGSQAFYAFAYP 335
Cdd:COG5749   158 LECHYSRLIENLIDPS-HVPFVHHgtqgnrKQAQPLEMEIESTP--NGITASYTAQSYYQLFfpflGNLDETLTITFIYP 234
                         250       260       270       280       290       300       310       320
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 336 NFAVERYGPW----MTTMHIL-PLGPRKCKLVVDYYieKSKLDDKDYIEKGIAINDN-VQKEDVVLCESVQKGLEtpayR 409
Cdd:COG5749   235 NTVSVDIGSGlggrFGIVLYAtPIDEGKTRAYAIFF--RNFAKKPRWLRHFLKLLRNgILEQDVIILESQQPALL----Q 308

                  ....*....
gi 1219161051 410 SGRYVMPIE 418
Cdd:COG5749   309 LGSYELPTP 317
Rieske_RO_Alpha_NDO cd03535
Rieske non-heme iron oxygenase (RO) family, Nathphalene 1,2-dioxygenase (NDO) subfamily, ...
114-226 1.33e-17

Rieske non-heme iron oxygenase (RO) family, Nathphalene 1,2-dioxygenase (NDO) subfamily, N-terminal Rieske domain of the oxygenase alpha subunit; ROs comprise a large class of aromatic ring-hydroxylating dioxygenases that enable microorganisms to tolerate and utilize aromatic compounds for growth. The oxygenase alpha subunit contains an N-terminal Rieske domain with an [2Fe-2S] cluster and a C-terminal catalytic domain with a mononuclear Fe(II) binding site. The Rieske [2Fe-2S] cluster accepts electrons from a reductase or ferredoxin component and transfers them to the mononuclear iron for catalysis. NDO is a three-component RO system consisting of a reductase, a ferredoxin, and a hetero-hexameric alpha-beta subunit oxygenase component. NDO catalyzes the oxidation of naphthalene to cis-(1R,2S)-dihydroxy-1,2-dihydronaphthalene (naphthalene cis-dihydrodiol) with the consumption of O2 and NAD(P)H. NDO has a relaxed substrate specificity and can oxidize almost 100 substrates. Included in its varied activities are the enantiospecific cis-dihydroxylation of polycyclic aromatic hydrocarbons and benzocycloalkenes, benzylic hydroxylation, N- and O-dealkylation, sulfoxidation and desaturation reactions.


Pssm-ID: 239609 [Multi-domain]  Cd Length: 123  Bit Score: 78.63  E-value: 1.33e-17
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 114 KGWQVAGYSDQIKEPNQYFTGTLGNVEYLVCRDGEGKVHAFHNVCTHRASILaCG--SGKKSCFVCPYHGWVFGMNGSLT 191
Cdd:cd03535     1 RAWVFLGHESEIPNAGDYVVRYIGDDSFIVCRDEDGEIRAMFNSCRHRGMQV-CRaeMGNTSHFRCPYHGWTYRNTGRLV 79
                          90       100       110
                  ....*....|....*....|....*....|....*...
gi 1219161051 192 --KASKASEEQSLDPDELGLVPL-KVAVWGPFILISLD 226
Cdd:cd03535    80 gvPAQQEAYGGGFDKSQWGLRPApNLDSYNGLIFGSLD 117
Rieske cd03467
Rieske domain; a [2Fe-2S] cluster binding domain commonly found in Rieske non-heme iron ...
116-218 2.00e-16

Rieske domain; a [2Fe-2S] cluster binding domain commonly found in Rieske non-heme iron oxygenase (RO) systems such as naphthalene and biphenyl dioxygenases, as well as in plant/cyanobacterial chloroplast b6f and mitochondrial cytochrome bc(1) complexes. The Rieske domain can be divided into two subdomains, with an incomplete six-stranded, antiparallel beta-barrel at one end, and an iron-sulfur cluster binding subdomain at the other. The Rieske iron-sulfur center contains a [2Fe-2S] cluster, which is involved in electron transfer, and is liganded to two histidine and two cysteine residues present in conserved sequences called Rieske motifs. In RO systems, the N-terminal Rieske domain of the alpha subunit acts as an electron shuttle that accepts electrons from a reductase or ferredoxin component and transfers them to the mononuclear iron in the alpha subunit C-terminal domain to be used for catalysis.


Pssm-ID: 239550 [Multi-domain]  Cd Length: 98  Bit Score: 74.45  E-value: 2.00e-16
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 116 WQVAGYSDQIKePNQYFTGTLGNVEYLVCRDGEGKVHAFHNVCTHRASILACGSGKKSCFVCPYHGWVFGM-NGSLTKas 194
Cdd:cd03467     1 WVVVGALSELP-PGGGRVVVVGGGPVVVVRREGGEVYALSNRCTHQGCPLSEGEGEDGCIVCPCHGSRFDLrTGEVVS-- 77
                          90       100
                  ....*....|....*....|....
gi 1219161051 195 kaseeqslDPDELGLVPLKVAVWG 218
Cdd:cd03467    78 --------GPAPRPLPKYPVKVEG 93
Rieske_RO_Alpha_HBDO cd03542
Rieske non-heme iron oxygenase (RO) family, 2-Halobenzoate 1,2-dioxygenase (HBDO) subfamily, ...
116-198 2.24e-16

Rieske non-heme iron oxygenase (RO) family, 2-Halobenzoate 1,2-dioxygenase (HBDO) subfamily, N-terminal Rieske domain of the oxygenase alpha subunit; ROs comprise a large class of aromatic ring-hydroxylating dioxygenases that enable microorganisms to tolerate and utilize aromatic compounds for growth. The oxygenase alpha subunit contains an N-terminal Rieske domain with an [2Fe-2S] cluster and a C-terminal catalytic domain with a mononuclear Fe(II) binding site. The Rieske [2Fe-2S] cluster accepts electrons from a reductase or ferredoxin component and transfers them to the mononuclear iron for catalysis. HBDO catalyzes the double hydroxylation of 2-halobenzoates with concomitant release of halogenide and carbon dioxide, yielding catechol.


Pssm-ID: 239615 [Multi-domain]  Cd Length: 123  Bit Score: 75.17  E-value: 2.24e-16
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 116 WQVAGYSDQIKEPNQYFTGTLGNVEYLVCRDGEGKVHAFHNVCTHRASILaC--GSGKKSCFVCPYHGWVFGMNGSLTKA 193
Cdd:cd03542     1 WVYLAHESQIPNNNDYFTTTIGRQPVVITRDKDGELNAFINACSHRGAML-CrrKQGNKGTFTCPFHGWTFSNTGKLLKV 79

                  ....*
gi 1219161051 194 SKASE 198
Cdd:cd03542    80 KDPKT 84
RHO_alpha_C_GbcA-like cd08884
C-terminal catalytic domain of GbcA (glycine betaine catabolism A) from Pseudomonas aeruginosa ...
254-427 1.55e-15

C-terminal catalytic domain of GbcA (glycine betaine catabolism A) from Pseudomonas aeruginosa PAO1 and related aromatic ring hydroxylating dioxygenases; C-terminal catalytic domain of GbcA (glycine betaine catabolism A) from Pseudomonas aeruginosa PAO1 and related Rieske-type non-heme iron aromatic ring-hydroxylating oxygenases (RHOs, also known as aromatic ring hydroxylating dioxygenases). RHOs utilize non-heme Fe(II) to catalyze the addition of hydroxyl groups to the aromatic ring, an initial step in the oxidative degradation of aromatic compounds. RHOs are composed of either two or three protein components, and are comprised of an electron transport chain (ETC) and an oxygenase. The ETC transfers reducing equivalents from the electron donor to the oxygenase component, which in turn transfers electrons to the oxygen molecules. The oxygenase components are oligomers, either (alpha)n or (alpha)n(beta)n. The alpha subunits are the catalytic components and have an N-terminal domain, which binds a Rieske-like 2Fe-2S cluster, and a C-terminal domain which binds the non-heme Fe(II). The Fe(II) is co-ordinated by conserved His and Asp residues. GbcA is involved in glycine betaine (GB) catabolism in Pseudomonas aeruginosa; it may remove a methyl group from GB via a dioxygenase mechanism, producing dimethylglycine and formaldehyde. This subfamily belongs to the SRPBCC (START/RHO_alpha_C/PITP/Bet_v1/CoxG/CalC) domain superfamily of proteins that bind hydrophobic ligands. SRPBCC domains have a deep hydrophobic ligand-binding pocket.


Pssm-ID: 176893  Cd Length: 205  Bit Score: 75.00  E-value: 1.55e-15
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 254 PNLQFINRSEFPMESNWKIFSDNYLDSsYHVPYAHKYYATEL----------------DFDTYQTDMIGNVTIQRVAGSS 317
Cdd:cd08884     6 ANLKVAHRISYEVAANWKLVVENYREC-YHCAGVHPELARSLsefddggnpdpeaggaDFRGRRGPLRGGAESFTMDGKA 84
                          90       100       110       120       130       140       150       160
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 318 -------NNGFNRLGsqAFYAFAYPNFAVERYGPWMTTMHILPLGPRKCKLVVDYYIEKSKLDDKDY-IEKGIAINDNVQ 389
Cdd:cd08884    85 vapplpgLTEADDRG--ALYYTLYPNSFLHLHPDHVVTFRVLPLSPDETLVRCKWLVHPDAVEGVDYdLDDLVEVWDATN 162
                         170       180       190
                  ....*....|....*....|....*....|....*...
gi 1219161051 390 KEDVVLCESVQKGLETPAYRSGRYvMPIEKGIHHFHCW 427
Cdd:cd08884   163 RQDWAICERNQRGVNSPAYRPGPY-SPMEGGVLAFDRW 199
RHO_alpha_C_1 cd08885
C-terminal catalytic domain of the oxygenase alpha subunit of an uncharacterized subgroup of ...
261-428 4.13e-14

C-terminal catalytic domain of the oxygenase alpha subunit of an uncharacterized subgroup of Rieske-type non-heme iron aromatic ring-hydroxylating oxygenases; C-terminal catalytic domain of the oxygenase alpha subunit of a functionally uncharacterized subgroup of the Rieske-type non-heme iron aromatic ring-hydroxylating oxygenase (RHO) family. RHOs, also known as aromatic ring hydroxylating dioxygenases, utilize non-heme Fe(II) to catalyze the addition of hydroxyl groups to the aromatic ring, an initial step in the oxidative degradation of aromatic compounds. RHOs are composed of either two or three protein components, and are comprised of an electron transport chain (ETC) and an oxygenase. The ETC transfers reducing equivalents from the electron donor to the oxygenase component, which in turn transfers electrons to the oxygen molecules. The oxygenase components are oligomers, either (alpha)n or (alpha)n(beta)n. The alpha subunits are the catalytic components and have an N-terminal domain, which binds a Rieske-like 2Fe-2S cluster, and a C-terminal domain which binds the non-heme Fe(II). The Fe(II) is co-ordinated by conserved His and Asp residues. This group contains two putative Parvibaculum lavamentivorans (T) DS-1 oxygenases; this organism catabolizes commercial linear alkylbenzenesulfonate surfactant (LAS) and other surfactants, by a pathway involving an undefined 'omega-oxygenation' and beta-oxidation of the LAS side chain. The nature of the LAS-oxygenase is unknown but is likely a multicomponent system. This subfamily belongs to the SRPBCC (START/RHO_alpha_C/PITP/Bet_v1/CoxG/CalC) domain superfamily of proteins that bind hydrophobic ligands. SRPBCC domains have a deep hydrophobic ligand-binding pocket.


Pssm-ID: 176894  Cd Length: 190  Bit Score: 70.48  E-value: 4.13e-14
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 261 RSEFPMESNWKIFSDNYLDSsYHVPYAHK-----YYATELD---------FDTYQTDMIGNVTIQRvAGSSNNGFNRLGS 326
Cdd:cd08885     3 REEEVWDTNWKVLAENFMEG-YHLPGLHPgtlhpFMPAELSyfrpedgrgFTRHKGTKHFNETIEP-AHPPNPGLTEEWR 80
                          90       100       110       120       130       140       150       160
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 327 QAFYAFA-YPNFAVERYGPWMTTMHILPLGPRKCKLV--VDYYIE-KSKLDDKDYIEKGIAINDNVQKEDVVLCESVQKG 402
Cdd:cd08885    81 RRLVLFAiFPTHLLALTPDYVWWLSLLPEGAGRVRVRwgVLVAPEaADDPEAAEYIAELKALLDAINDEDRLVVEGVQRG 160
                         170       180
                  ....*....|....*....|....*.
gi 1219161051 403 LETPAYRSGRYvMPIEKGIHHFHCWL 428
Cdd:cd08885   161 LGSRFAVPGRL-SHLERPIWQFQRYL 185
RHO_alpha_C_3 cd08887
C-terminal catalytic domain of the oxygenase alpha subunit of an uncharacterized subgroup of ...
259-428 7.14e-13

C-terminal catalytic domain of the oxygenase alpha subunit of an uncharacterized subgroup of Rieske-type non-heme iron aromatic ring-hydroxylating oxygenases; C-terminal catalytic domain of the oxygenase alpha subunit of a functionally uncharacterized subgroup of the Rieske-type non-heme iron aromatic ring-hydroxylating oxygenase (RHO) family. RHOs, also known as aromatic ring hydroxylating dioxygenases, utilize non-heme Fe(II) to catalyze the addition of hydroxyl groups to the aromatic ring, an initial step in the oxidative degradation of aromatic compounds. RHOs are composed of either two or three protein components, and are comprised of an electron transport chain (ETC) and an oxygenase. The ETC transfers reducing equivalents from the electron donor to the oxygenase component, which in turn transfers electrons to the oxygen molecules. The oxygenase components are oligomers, either (alpha)n or (alpha)n(beta)n. The alpha subunits are the catalytic components and have an N-terminal domain, which binds a Rieske-like 2Fe-2S cluster, and a C-terminal domain which binds the non-heme Fe(II). The Fe(II) is co-ordinated by conserved His and Asp residues. This group contains a putative Parvibaculum lavamentivorans (T) DS-1 oxygenase; this organism catabolizes commercial linear alkylbenzenesulfonate surfactant (LAS) and other surfactants, by a pathway involving an undefined 'omega-oxygenation' and beta-oxidation of the LAS side chain. The nature of the LAS-oxygenase is unknown but is likely a multicomponent system. This subfamily belongs to the SRPBCC (START/RHO_alpha_C/PITP/Bet_v1/CoxG/CalC) domain superfamily of proteins that bind hydrophobic ligands. SRPBCC domains have a deep hydrophobic ligand-binding pocket.


Pssm-ID: 176896  Cd Length: 185  Bit Score: 66.95  E-value: 7.14e-13
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 259 INRSEFPMESNWKIFSDNYLDSsYHVPYAHKyyATeldFDTYQT------DMIG-NV-------TIQRVAGSSNNGFNRL 324
Cdd:cd08887     1 FESRRFDVAANWKLALDGFLEG-YHFKVLHK--NT---IAPYFYdnlsvyDAFGpHSrivfprkSIESLRDLPEDEWDLR 74
                          90       100       110       120       130       140       150       160
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 325 GSQAFYAFAYPNFAVERYGPWMTTMHILPLGPRKCKLVVDYYIEKSKLDDK--DYIEKGIAINDNV-QKEDVVLCESVQK 401
Cdd:cd08887    75 RHLTVIYTLFPNVSLLVQPDHLEIIQIEPGSPDRTRVTVYLLIPPPPDTEEarAYWDKNWDFLMAVvLDEDFEVAEEIQR 154
                         170       180       190
                  ....*....|....*....|....*....|
gi 1219161051 402 GLETPA---YRSGRYvmpiEKGIHHFHCWL 428
Cdd:cd08887   155 GLASGAndhLTFGRN----ESALQHFHRWL 180
Rieske_RO_Alpha_OHBDO_like cd03545
Rieske non-heme iron oxygenase (RO) family, Ortho-halobenzoate-1,2-dioxygenase (OHBDO)-like ...
94-226 1.18e-12

Rieske non-heme iron oxygenase (RO) family, Ortho-halobenzoate-1,2-dioxygenase (OHBDO)-like subfamily, N-terminal Rieske domain of the oxygenase alpha subunit; composed of the oxygenase alpha subunits of OHBDO, salicylate 5-hydroxylase (S5H), terephthalate 1,2-dioxygenase system (TERDOS) and similar proteins. ROs comprise a large class of aromatic ring-hydroxylating dioxygenases that enable microorganisms to tolerate and utilize aromatic compounds for growth. The oxygenase alpha subunit contains an N-terminal Rieske domain with an [2Fe-2S] cluster and a C-terminal catalytic domain with a mononuclear Fe(II) binding site. The Rieske [2Fe-2S] cluster accepts electrons from a reductase or ferredoxin component and transfers them to the mononuclear iron for catalysis. OHBDO converts 2-chlorobenzoate (2-CBA) to catechol as well as 2,4-dCBA and 2,5-dCBA to 4-chlorocatechol, as part of the chlorobenzoate degradation pathway. Although ortho-substituted chlorobenzoates appear to be particularly recalcitrant to biodegradation, several strains utilize 2-CBA and the dCBA derivatives as a sole carbon and energy source. S5H converts salicylate (2-hydroxybenzoate), a metabolic intermediate of phenanthrene, to gentisate (2,5-dihydroxybenzoate) as part of an alternate pathway for naphthalene catabolism. S5H is a multicomponent enzyme made up of NagGH (the oxygenase components), NagAa (the ferredoxin reductase component), and NagAb (the ferredoxin component). The oxygenase component is made up of alpha (NagG) and beta (NagH) subunits. TERDOS is present in gram-positive bacteria and proteobacteria where it converts terephthalate (1,4-dicarboxybenzene) to protocatechuate as part of the terephthalate degradation pathway. The oxygenase component of TERDOS, called TerZ, is a hetero-hexamer with 3 alpha (TerZalpha) and 3 beta (TerZbeta) subunits.


Pssm-ID: 239616 [Multi-domain]  Cd Length: 150  Bit Score: 65.16  E-value: 1.18e-12
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051  94 PSSWYTEPAFYAHELDRIFY-KGWQVAGYSDQIKEPNQYFTGTLGNVEYLVCRDGEGKVHAFHNVCTHRASiLACGS--G 170
Cdd:cd03545     3 PYKVFTDRAYFDREQERIFRgKTWSYVGLEAEIPNAGDFKSTFVGDTPVVVTRAEDGSLHAWVNRCAHRGA-LVCRErrG 81
                          90       100       110       120       130       140
                  ....*....|....*....|....*....|....*....|....*....|....*....|...
gi 1219161051 171 KKSCFVCPYHGWVFGMNGSLTKA-------SKASEEQSLDPDELGLVPLKVAVWGPFILISLD 226
Cdd:cd03545    82 NDGSLTCVYHQWAYDLKGNLKGVpfrrglkGQGGMPKDFDMKQHGLEKLRVETVGGLVFASFS 144
Rieske_RO_Alpha_BPDO_like cd03472
Rieske non-heme iron oxygenase (RO) family, Biphenyl dioxygenase (BPDO)-like subfamily, ...
108-219 2.87e-12

Rieske non-heme iron oxygenase (RO) family, Biphenyl dioxygenase (BPDO)-like subfamily, N-terminal Rieske domain of the oxygenase alpha subunit; composed of the oxygenase alpha subunits of BPDO and similar proteins including cumene dioxygenase (CumDO), nitrobenzene dioxygenase (NBDO), alkylbenzene dioxygenase (AkbDO) and dibenzofuran 4,4a-dioxygenase (DFDO). ROs comprise a large class of aromatic ring-hydroxylating dioxygenases that enable microorganisms to tolerate and utilize aromatic compounds for growth. The oxygenase alpha subunit contains an N-terminal Rieske domain with an [2Fe-2S] cluster and a C-terminal catalytic domain with a mononuclear Fe(II) binding site. The Rieske [2Fe-2S] cluster accepts electrons from a reductase or ferredoxin component and transfers them to the mononuclear iron for catalysis. BPDO degrades biphenyls and polychlorinated biphenyls (PCB's) while CumDO degrades cumene (isopropylbenzene), an aromatic hydrocarbon that is intermediate in size between ethylbenzene and biphenyl. NBDO catalyzes the initial reaction in nitrobenzene degradation, oxidizing the aromatic rings of mono- and dinitrotoluenes to form catechol and nitrite. NBDO belongs to the naphthalene subfamily of ROs. AkbDO is involved in alkylbenzene catabolism, converting o-xylene to 2,3- and 3,4-dimethylphenol and ethylbenzene to cis-dihydrodiol. DFDO is involved in dibenzofuran degradation.


Pssm-ID: 239554 [Multi-domain]  Cd Length: 128  Bit Score: 63.71  E-value: 2.87e-12
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 108 LDRIFYKGWQVAGYSDQIKEPNQYFTGTLGNVEYLVCRDGEGKVHAFHNVCTHRA-SILACGSGKKSCFVCPYHGWVFGM 186
Cdd:cd03472     1 LERVFARSWLLLGHETHIPKAGDYLTTYMGEDPVIVVRQKDGSIRVFLNQCRHRGmRICRSDAGNAKAFTCTYHGWAYDT 80
                          90       100       110
                  ....*....|....*....|....*....|...
gi 1219161051 187 NGSLTkaSKASEEQSLdPDelglvPLKVAVWGP 219
Cdd:cd03472    81 AGNLV--NVPFEKEAF-CD-----GLDKADWGP 105
Rieske_RO_Alpha_DTDO cd03536
This alignment model represents the N-terminal rieske domain of the oxygenase alpha subunit ...
116-222 3.89e-12

This alignment model represents the N-terminal rieske domain of the oxygenase alpha subunit (DitA) of diterpenoid dioxygenase (DTDO). DTDO is a novel aromatic-ring-hydroxylating dioxygenase found in Pseudomonas and other proteobacteria that degrades dehydroabietic acid (DhA). Specifically, DitA hydroxylates 7-oxodehydroabietic acid to 7-oxo-11,12-dihydroxy-8, 13-abietadien acid. The ditA1 and ditA2 genes encode the alpha and beta subunits of the oxygenase component of DTDO while the ditA3 gene encodes the ferredoxin component of DTDO. The organization of the genes encoding the various diterpenoid dioxygenase components, the phylogenetic distinctiveness of both the alpha subunit and the ferredoxin component, and the unusual iron-sulfur cluster of the ferredoxin all suggest that this enzyme belongs to a new class of aromatic ring-hydroxylating dioxygenases.


Pssm-ID: 239610 [Multi-domain]  Cd Length: 123  Bit Score: 63.03  E-value: 3.89e-12
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 116 WQVAGYSDQIKEPNQYFTGTLGNVEYLVCRDGEGKVHAFHNVCTHRA-SILACGSGKKSCFVCPYHGWVFGMNGSLTKAS 194
Cdd:cd03536     1 WVLLGHESEIPNKGDFMVRDMGSDSVIVARDKDGEIHVSLNVCPHRGmRISTTDGGNTQIHVCIYHGWAFRPNGDFIGAP 80
                          90       100       110
                  ....*....|....*....|....*....|.
gi 1219161051 195 KASE---EQSLDPDELGLVPLKVAVWGPFIL 222
Cdd:cd03536    81 VEKEcmhGKMRTKAELGLHKARVTLYGGLIF 111
Rieske_RO_Alpha_S5H cd03539
This alignment model represents the N-terminal rieske iron-sulfur domain of the oxygenase ...
116-226 7.13e-11

This alignment model represents the N-terminal rieske iron-sulfur domain of the oxygenase alpha subunit (NagG) of salicylate 5-hydroxylase (S5H). S5H converts salicylate (2-hydroxybenzoate), a metabolic intermediate of phenanthrene, to gentisate (2,5-dihydroxybenzoate) as part of an alternate pathway for naphthalene catabolism. S5H is a multicomponent enzyme made up of NagGH (the oxygenase components), NagAa (the ferredoxin reductase component), and NagAb (the ferredoxin component). The oxygenase component is made up of alpha (NagG) and beta (NagH) subunits.


Pssm-ID: 239613 [Multi-domain]  Cd Length: 129  Bit Score: 59.56  E-value: 7.13e-11
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 116 WQVAGYSDQIKEPNQYFTGTLGNVEYLVCRDGEGKVHAFHNVCTHRAsILAC--GSGKKSCFVCPYHGWVFGMNGSLT-- 191
Cdd:cd03539     1 WCYVGLEAEIPNPGDFKRTLIGERSVIMTRDPDGGINVVENVCAHRG-MRFCreRNGNAKDFVCPYHQWNYSLKGDLQgv 79
                          90       100       110       120
                  ....*....|....*....|....*....|....*....|....
gi 1219161051 192 ---KASKASEE------QSLDPDELGLVPLKVAVWGPFILISLD 226
Cdd:cd03539    80 pfrRGVKKDGKvnggmpKDFKTKDHGLTKLKVATRGGVVFASFD 123
Rieske_RO_Alpha_VanA_DdmC cd03532
Rieske non-heme iron oxygenase (RO) family, Vanillate-O-demethylase oxygenase (VanA) and ...
116-188 1.18e-09

Rieske non-heme iron oxygenase (RO) family, Vanillate-O-demethylase oxygenase (VanA) and dicamba O-demethylase oxygenase (DdmC) subfamily, N-terminal Rieske domain of the oxygenase alpha subunit; ROs comprise a large class of aromatic ring-hydroxylating dioxygenases that enable microorganisms to tolerate and utilize aromatic compounds for growth. The oxygenase alpha subunit contains an N-terminal Rieske domain with an [2Fe-2S] cluster and a C-terminal catalytic domain with a mononuclear Fe(II) binding site. The Rieske [2Fe-2S] cluster accepts electrons from a reductase or ferredoxin component and transfers them to the mononuclear iron for catalysis. Vanillate-O-demethylase is a heterodimeric enzyme consisting of a terminal oxygenase (VanA) and reductase (VanB) components. This enzyme reductively catalyzes the conversion of vanillate into protocatechuate and formaldehyde. Protocatechuate and vanillate are important intermediate metabolites in the degradation pathway of lignin-derived compounds such as ferulic acid and vanillin by soil microbes. DDmC is the oxygenase component of a three-component dicamba O-demethylase found in Pseudomonas maltophila, that catalyzes the conversion of a widely used herbicide called herbicide dicamba (2-methoxy-3,6-dichlorobenzoic acid) to DCSA (3,6-dichlorosalicylic acid).


Pssm-ID: 239608 [Multi-domain]  Cd Length: 116  Bit Score: 55.84  E-value: 1.18e-09
                          10        20        30        40        50        60        70
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....
gi 1219161051 116 WQVAGYSDQI-KEPNQYftgTLGNVEYLVCRDGEGKVHAFHNVCTHRASILACGSGKKSCFVCPYHGWVFGMNG 188
Cdd:cd03532     6 WYVAAWADELgDKPLAR---TLLGEPVVLYRTQDGRVAALEDRCPHRSAPLSKGSVEGGGLVCGYHGLEFDSDG 76
NirD COG2146
Ferredoxin subunit of nitrite reductase or a ring-hydroxylating dioxygenase [Inorganic ion ...
116-184 4.49e-09

Ferredoxin subunit of nitrite reductase or a ring-hydroxylating dioxygenase [Inorganic ion transport and metabolism, Secondary metabolites biosynthesis, transport and catabolism];


Pssm-ID: 441749 [Multi-domain]  Cd Length: 103  Bit Score: 53.69  E-value: 4.49e-09
                          10        20        30        40        50        60
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....
gi 1219161051 116 WQVAGYSDQIkEPNQYFTGTLGNVEYLVCRDGeGKVHAFHNVCTHRASILACGSGKKSCFVCPYHGWVF 184
Cdd:COG2146     3 EVKVCALDDL-PEGGGVVVEVGGKQIAVFRTD-GEVYAYDNRCPHQGAPLSEGIVDGGVVTCPLHGARF 69
Rieske_RO_Alpha_PhDO_like cd03479
Rieske non-heme iron oxygenase (RO) family, Phthalate 4,5-dioxygenase (PhDO)-like subfamily, ...
116-210 2.64e-08

Rieske non-heme iron oxygenase (RO) family, Phthalate 4,5-dioxygenase (PhDO)-like subfamily, N-terminal Rieske domain of the oxygenase alpha subunit; composed of the oxygenase alpha subunits of PhDO and similar proteins including 3-chlorobenzoate 3,4-dioxygenase (CBDO), phenoxybenzoate dioxygenase (POB-dioxygenase) and 3-nitrobenzoate oxygenase (MnbA). ROs comprise a large class of aromatic ring-hydroxylating dioxygenases that enable microorganisms to tolerate and utilize aromatic compounds for growth. The oxygenase alpha subunit contains an N-terminal Rieske domain with an [2Fe-2S] cluster and a C-terminal catalytic domain with a mononuclear Fe(II) binding site. The Rieske [2Fe-2S] cluster accepts electrons from a reductase or ferredoxin component and transfers them to the mononuclear iron for catalysis. PhDO and CBDO are two-component RO systems, containing oxygenase and reductase components. PhDO catalyzes the dihydroxylation of phthalate to form the 4,5-dihydro-cis-dihydrodiol of phthalate (DHD). CBDO, together with CbaC dehydrogenase, converts the environmental pollutant 3CBA to protocatechuate (PCA) and 5-Cl-PCA, which are then metabolized by the chromosomal PCA meta (extradiol) ring fission pathway. POB-dioxygenase catalyzes the initial catabolic step in the angular dioxygenation of phenoxybenzoate, converting mono- and dichlorinated phenoxybenzoates to protocatechuate and chlorophenols. These phenoxybenzoates are metabolic products formed during the degradation of pyrethroid insecticides.


Pssm-ID: 239561 [Multi-domain]  Cd Length: 144  Bit Score: 52.63  E-value: 2.64e-08
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 116 WQVAGYSDQIKEPNQYFTGTLGNVEYLVCRDGEGKVHAFHNVCTHRASILACGSGKKSCFVCPYHGWVFGMNGSLTkask 195
Cdd:cd03479    22 WQPVALSSELTEDGQPVRVRLLGEDLVAFRDTSGRVGLLDEHCPHRGASLVFGRVEECGLRCCYHGWKFDVDGQCL---- 97
                          90
                  ....*....|....*
gi 1219161051 196 aseEQSLDPDELGLV 210
Cdd:cd03479    98 ---EMPSEPPDSQLK 109
PLN00095 PLN00095
chlorophyllide a oxygenase; Provisional
116-192 2.32e-05

chlorophyllide a oxygenase; Provisional


Pssm-ID: 165668 [Multi-domain]  Cd Length: 394  Bit Score: 46.21  E-value: 2.32e-05
                          10        20        30        40        50        60        70
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*..
gi 1219161051 116 WQVAGYSDQIKEPNQYFTGTLGNVEYLVCRDGEGKVHAFHNVCTHRASILACGSGKKSCFVCPYHGWVFGMNGSLTK 192
Cdd:PLN00095   73 WFPVAFAAGLRDEDALIAFDLFNVPWVLFRDADGEAGCIKDECAHRACPLSLGKLVDGKAQCPYHGWEYETGGECAK 149
Rieske_RO_Alpha_OMO_CARDO cd03548
Rieske non-heme iron oxygenase (RO) family, 2-Oxoquinoline 8-monooxygenase (OMO) and Carbazole ...
97-187 4.70e-05

Rieske non-heme iron oxygenase (RO) family, 2-Oxoquinoline 8-monooxygenase (OMO) and Carbazole 1,9a-dioxygenase (CARDO) subfamily, N-terminal Rieske domain of the oxygenase alpha subunit; ROs comprise a large class of aromatic ring-hydroxylating dioxygenases that enable microorganisms to tolerate and utilize aromatic compounds for growth. The oxygenase alpha subunit contains an N-terminal Rieske domain with an [2Fe-2S] cluster and a C-terminal catalytic domain with a mononuclear Fe(II) binding site. The Rieske [2Fe-2S] cluster accepts electrons from a reductase or ferredoxin component and transfers them to the mononuclear iron for catalysis. OMO catalyzes the NADH-dependent oxidation of the N-heterocyclic aromatic compound 2-oxoquinoline to 8-hydroxy-2-oxoquinoline, the second step in the bacterial degradation of quinoline. OMO consists of a reductase component (OMR) and an oxygenase component (OMO) that together function to shuttle electrons from the reduced pyridine nucleotide to the active site of OMO, where O2 activation and 2-oxoquinoline hydroxylation occurs. CARDO, which contains oxygenase (CARDO-O), ferredoxin (CARDO-F) and ferredoxin reductase (CARDO-R) components, catalyzes the dihydroxylation at the C1 and C9a positions of carbazole. The oxygenase component of OMO and CARDO contain only alpha subunits arranged in a trimeric structure.


Pssm-ID: 239617 [Multi-domain]  Cd Length: 136  Bit Score: 43.18  E-value: 4.70e-05
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051  97 WYtePAFYAHELDRIFYKGWQVAGysdqikepnqyftgtlgnvEYLVCRDGEGKVHAFHNVCTHRASILacgSGKKSCF- 175
Cdd:cd03548    15 WY--PALFSHELEEGEPKGIQLCG-------------------EPILLRRVDGKVYALKDRCLHRGVPL---SKKPECFt 70
                          90
                  ....*....|....*.
gi 1219161051 176 ----VCPYHGWVFGMN 187
Cdd:cd03548    71 kgtiTCWYHGWTYRLD 86
Rieske_RO_Alpha_Cao cd04337
Cao (chlorophyll a oxygenase) is a rieske non-heme iron-sulfur protein located within the ...
145-192 5.27e-05

Cao (chlorophyll a oxygenase) is a rieske non-heme iron-sulfur protein located within the plastid-envelope inner and thylakoid membranes, that catalyzes the conversion of chlorophyllide a to chlorophyllide b. CAO is found not only in plants but also in chlorophytes and prochlorophytes. This domain represents the N-terminal rieske domain of the oxygenase alpha subunit. ROs comprise a large class of aromatic ring-hydroxylating dioxygenases that enable microorganisms to tolerate and utilize aromatic compounds for growth. The oxygenase alpha subunit contains an N-terminal Rieske domain with an [2Fe-2S] cluster and a C-terminal catalytic domain with a mononuclear Fe(II) binding site. The Rieske [2Fe-2S] cluster accepts electrons from a reductase or ferredoxin component and transfers them to the mononuclear iron for catalysis. Cao is closely related to several other plant RO's including Tic 55, a 55 kDa protein associated with protein transport through the inner chloroplast membrane; Ptc 52, a novel 52 kDa protein isolated from chloroplasts; and LLS1/Pao (Lethal-leaf spot 1/pheophorbide a oxygenase).


Pssm-ID: 239829 [Multi-domain]  Cd Length: 129  Bit Score: 42.86  E-value: 5.27e-05
                          10        20        30        40
                  ....*....|....*....|....*....|....*....|....*...
gi 1219161051 145 RDGEGKVHAFHNVCTHRASILACGSGKKSCFVCPYHGWVFGMNGSLTK 192
Cdd:cd04337    46 RDEDGTPGCIRDECAHRACPLSLGKVIEGRIQCPYHGWEYDGDGECTK 93
Rieske_RO_Alpha_Tic55 cd04338
Tic55 is a 55kDa LLS1-related non-heme iron oxygenase associated with protein transport ...
145-192 1.01e-04

Tic55 is a 55kDa LLS1-related non-heme iron oxygenase associated with protein transport through the plant inner chloroplast membrane. This domain represents the N-terminal Rieske domain of the Tic55 oxygenase alpha subunit. Tic55 is closely related to the oxygenase alpha subunits of a small subfamily of enzymes found in plants as well as oxygenic cyanobacterial photosynthesizers including LLS1 (lethal leaf spot 1, also known as PaO), Ptc52, and ACD1 (accelerated cell death 1). ROs comprise a large class of aromatic ring-hydroxylating dioxygenases that enable microorganisms to tolerate and utilize aromatic compounds for growth. The oxygenase alpha subunit contains an N-terminal Rieske domain with an [2Fe-2S] cluster and a C-terminal catalytic domain with a mononuclear Fe(II) binding site. The Rieske [2Fe-2S] cluster accepts electrons from a reductase or ferredoxin component and transfers them to the mononuclear iron for catalysis.


Pssm-ID: 239830 [Multi-domain]  Cd Length: 134  Bit Score: 42.13  E-value: 1.01e-04
                          10        20        30        40        50
                  ....*....|....*....|....*....|....*....|....*....|.
gi 1219161051 145 RDGEGKVHAFHNVCTHRASILACGS---GKKSCFvcpYHGWVFGMNGSLTK 192
Cdd:cd04338    46 RDQNGQLRCLEDRCPHRLAKLSEGQlidGKLECL---YHGWQFGGEGKCVK 93
Rieske_RO_Alpha_PaO cd03480
Rieske non-heme iron oxygenase (RO) family, Pheophorbide a oxygenase (PaO) subfamily, ...
147-200 2.03e-04

Rieske non-heme iron oxygenase (RO) family, Pheophorbide a oxygenase (PaO) subfamily, N-terminal Rieske domain of the oxygenase alpha subunit; composed of the oxygenase alpha subunits of a small subfamily of enzymes found in plants as well as oxygenic cyanobacterial photosynthesizers including LLS1 (lethal leaf spot 1, also known as PaO) and ACD1 (accelerated cell death 1). ROs comprise a large class of aromatic ring-hydroxylating dioxygenases that enable microorganisms to tolerate and utilize aromatic compounds for growth. The oxygenase alpha subunit contains an N-terminal Rieske domain with an [2Fe-2S] cluster and a C-terminal catalytic domain with a mononuclear Fe(II) binding site. The Rieske [2Fe-2S] cluster accepts electrons from a reductase or ferredoxin component and transfers them to the mononuclear iron for catalysis. PaO expression increases upon physical wounding of plant leaves and is thought to catalyze a key step in chlorophyll degradation. The Arabidopsis-accelerated cell death gene ACD1 is involved in oxygenation of PaO.


Pssm-ID: 239562 [Multi-domain]  Cd Length: 138  Bit Score: 41.15  E-value: 2.03e-04
                          10        20        30        40        50
                  ....*....|....*....|....*....|....*....|....*....|....*
gi 1219161051 147 GEGKVHAFHNVCTHRASILACGS-GKKSCFVCPYHGWVFGMNGSLTKASKASEEQ 200
Cdd:cd03480    49 NSQQWRAFDDQCPHRLAPLSEGRiDEEGCLECPYHGWSFDGSGSCQRIPQAAEGG 103
Rieske_RO_Alpha_PrnD cd03537
This alignment model represents the N-terminal rieske domain of the oxygenase alpha subunit of ...
116-204 4.73e-04

This alignment model represents the N-terminal rieske domain of the oxygenase alpha subunit of aminopyrrolnitrin oxygenase (PrnD). PrnD is a novel Rieske N-oxygenase that catalyzes the final step in the pyrrolnitrin biosynthetic pathway, the oxidation of the amino group in aminopyrrolnitrin to a nitro group, forming the antibiotic pyrrolnitrin. The biosynthesis of pyrrolnitrin is one of the best examples of enzyme-catalyzed arylamine oxidation. Although arylamine oxygenases are widely distributed within the microbial world and used in a variety of metabolic reactions, PrnD represents one of only two known examples of arylamine oxygenases or N-oxygenases involved in arylnitro group formation, the other being AurF involved in aureothin biosynthesis.


Pssm-ID: 239611 [Multi-domain]  Cd Length: 123  Bit Score: 39.92  E-value: 4.73e-04
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 116 WQVAGYSDQIKE-PNQYftgTLGNVEYLVCRDGEGKVHAFHNVCTHRASILACGSGKKSCFVCPYHGWVFGMNGSLTKAS 194
Cdd:cd03537     4 WYVAMRSDDLKDkPTEL---TLFGRPCVAWRGATGRAVVMDRHCSHLGANLADGRVKDGCIQCPFHHWRYDEQGQCVHIP 80
                          90
                  ....*....|.
gi 1219161051 195 KASEE-QSLDP 204
Cdd:cd03537    81 GHSTAvRRLEP 91
PLN02281 PLN02281
chlorophyllide a oxygenase
141-192 5.12e-04

chlorophyllide a oxygenase


Pssm-ID: 177920 [Multi-domain]  Cd Length: 536  Bit Score: 42.41  E-value: 5.12e-04
                          10        20        30        40        50
                  ....*....|....*....|....*....|....*....|....*....|..
gi 1219161051 141 YLVCRDGEGKVHAFHNVCTHRASILACGSGKKSCFVCPYHGWVFGMNGSLTK 192
Cdd:PLN02281  245 WVIFRGEDGKPGCVRNTCAHRACPLDLGTVNEGRIQCPYHGWEYSTDGECKK 296
PLN02518 PLN02518
pheophorbide a oxygenase
38-199 5.34e-04

pheophorbide a oxygenase


Pssm-ID: 215283 [Multi-domain]  Cd Length: 539  Bit Score: 42.16  E-value: 5.34e-04
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051  38 TSTNNPVLKFRTPNKTINAvAAPAFPSLNTTTTPPSIQSLVQEFDPRIPAEDALTPPSSWYtePAFYAHELDrifykgwq 117
Cdd:PLN02518   33 FVSSSRPRRGKIFTPLRVA-APPSVPSEAALQQDEGEEQRVEQELGQESSDSKFSWRDHWY--PVSLVEDLD-------- 101
                          90       100       110       120       130       140       150       160
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 118 vagysdqikePNQYFTGTLGNVEYLVCRD-GEGKVHAFHNVCTHRASILACGSGKKS-CFVCPYHGWVFGMNGSLTKASK 195
Cdd:PLN02518  102 ----------PSVPTPFQLLGRDLVLWKDpNQGEWVAFDDKCPHRLAPLSEGRIDENgHLQCSYHGWSFDGCGSCTRIPQ 171

                  ....
gi 1219161051 196 ASEE 199
Cdd:PLN02518  172 AAPE 175
Rieske_RO_Alpha_KSH cd03531
The alignment model represents the N-terminal rieske iron-sulfur domain of KshA, the oxygenase ...
115-191 6.43e-04

The alignment model represents the N-terminal rieske iron-sulfur domain of KshA, the oxygenase component of 3-ketosteroid 9-alpha-hydroxylase (KSH). The terminal oxygenase component of KSH is a key enzyme in the microbial steroid degradation pathway, catalyzing the 9 alpha-hydroxylation of 4-androstene-3,17-dione (AD) and 1,4-androstadiene-3,17-dione (ADD). KSH is a two-component class IA monooxygenase, with terminal oxygenase (KshA) and oxygenase reductase (KshB) components. KSH activity has been found in many actino- and proteo- bacterial genera including Rhodococcus, Nocardia, Arthrobacter, Mycobacterium, and Burkholderia.


Pssm-ID: 239607 [Multi-domain]  Cd Length: 115  Bit Score: 39.32  E-value: 6.43e-04
                          10        20        30        40        50        60        70        80
                  ....*....|....*....|....*....|....*....|....*....|....*....|....*....|....*....|
gi 1219161051 115 GWQVAGYSDQIKE--PNQY--FTGTLgnveyLVCRDGEGKVHAFHNVCTHRASILACGSGKKSCFVCPYHGWVFGMNGSL 190
Cdd:cd03531     1 GWHCLGLARDFRDgkPHGVeaFGTKL-----VVFADSDGALNVLDAYCRHMGGDLSQGTVKGDEIACPFHDWRWGGDGRC 75

                  .
gi 1219161051 191 T 191
Cdd:cd03531    76 K 76
Rieske_YhfW_C cd03477
YhfW family, C-terminal Rieske domain; YhfW is a protein of unknown function with an ...
143-190 2.15e-03

YhfW family, C-terminal Rieske domain; YhfW is a protein of unknown function with an N-terminal DadA-like (glycine/D-amino acid dehydrogenase) domain and a C-terminal Rieske domain. The Rieske domain is a [2Fe-2S] cluster binding domain involved in electron transfer. It is commonly found in Rieske non-heme iron oxygenase (RO) systems such as naphthalene and biphenyl dioxygenases, as well as in plant/cyanobacterial chloroplast b6f and mitochondrial cytochrome bc(1) complexes. YhfW is found in bacteria, some eukaryotes and archaea.


Pssm-ID: 239559 [Multi-domain]  Cd Length: 91  Bit Score: 37.28  E-value: 2.15e-03
                          10        20        30        40
                  ....*....|....*....|....*....|....*....|....*...
gi 1219161051 143 VCRDGEGKVHAFHNVCTHRASILACGSGKKScFVCPYHGWVFGMNGSL 190
Cdd:cd03477    25 VYRDEDGVLHTVSATCTHLGCIVHWNDAEKS-WDCPCHGSRFSYDGEV 71
Rieske_NirD_small_Bacillus cd03530
Small subunit of nitrite reductase (NirD) family, Rieske domain; composed of proteins similar ...
137-187 2.68e-03

Small subunit of nitrite reductase (NirD) family, Rieske domain; composed of proteins similar to the Bacillus subtilis small subunit of assimilatory nitrite reductase containing a Rieske domain. The Rieske domain is a [2Fe-2S] cluster binding domain involved in electron transfer. Assimilatory nitrate and nitrite reductases convert nitrate through nitrite to ammonium.


Pssm-ID: 239606 [Multi-domain]  Cd Length: 98  Bit Score: 37.20  E-value: 2.68e-03
                          10        20        30        40        50
                  ....*....|....*....|....*....|....*....|....*....|...
gi 1219161051 137 GNVEYLVCRDGEGKVHAFHNVCTHRASILACG--SGKksCFVCPYHGWVFGMN 187
Cdd:cd03530    21 GGGEIAVFRTADDEVFALENRCPHKGGPLSEGivHGE--YVTCPLHNWVIDLE 71
 
Blast search parameters
Data Source: Precalculated data, version = cdd.v.3.21
Preset Options:Database: CDSEARCH/cdd   Low complexity filter: no  Composition Based Adjustment: yes   E-value threshold: 0.01

References:

  • Wang J et al. (2023), "The conserved domain database in 2023", Nucleic Acids Res.51(D)384-8.
  • Lu S et al. (2020), "The conserved domain database in 2020", Nucleic Acids Res.48(D)265-8.
  • Marchler-Bauer A et al. (2017), "CDD/SPARCLE: functional classification of proteins via subfamily domain architectures.", Nucleic Acids Res.45(D)200-3.
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