Multiple antibiotic resistance protein marR [Raoultella planticola]
helix-turn-helix domain-containing protein( domain architecture ID 229396)
helix-turn-helix domain-containing protein may bind DNA and be involved in the regulation of gene expression
List of domain hits
Name | Accession | Description | Interval | E-value | |||
HTH_CRP super family | cl46859 | helix_turn_helix, cAMP Regulatory protein C-terminus; DNA binding domain of prokaryotic ... |
1-143 | 1.58e-36 | |||
helix_turn_helix, cAMP Regulatory protein C-terminus; DNA binding domain of prokaryotic regulatory proteins belonging to the catabolite activator protein family. The actual alignment was detected with superfamily member PRK11512: Pssm-ID: 481199 Cd Length: 144 Bit Score: 122.70 E-value: 1.58e-36
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Name | Accession | Description | Interval | E-value | |||
PRK11512 | PRK11512 | multiple antibiotic resistance transcriptional regulator MarR; |
1-143 | 1.58e-36 | |||
multiple antibiotic resistance transcriptional regulator MarR; Pssm-ID: 183170 Cd Length: 144 Bit Score: 122.70 E-value: 1.58e-36
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MarR | COG1846 | DNA-binding transcriptional regulator, MarR family [Transcription]; |
14-142 | 7.55e-28 | |||
DNA-binding transcriptional regulator, MarR family [Transcription]; Pssm-ID: 441451 [Multi-domain] Cd Length: 142 Bit Score: 100.43 E-value: 7.55e-28
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HTH_MARR | smart00347 | helix_turn_helix multiple antibiotic resistance protein; |
31-130 | 8.36e-22 | |||
helix_turn_helix multiple antibiotic resistance protein; Pssm-ID: 197670 [Multi-domain] Cd Length: 101 Bit Score: 83.80 E-value: 8.36e-22
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MarR | pfam01047 | MarR family; The Mar proteins are involved in the multiple antibiotic resistance, a ... |
38-95 | 1.71e-11 | |||
MarR family; The Mar proteins are involved in the multiple antibiotic resistance, a non-specific resistance system. The expression of the mar operon is controlled by a repressor, MarR. A large number of compounds induce transcription of the mar operon. This is thought to be due to the compound binding to MarR, and the resulting complex stops MarR binding to the DNA. With the MarR repression lost, transcription of the operon proceeds. The structure of MarR is known and shows MarR as a dimer with each subunit containing a winged-helix DNA binding motif. Pssm-ID: 426012 [Multi-domain] Cd Length: 59 Bit Score: 56.02 E-value: 1.71e-11
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Name | Accession | Description | Interval | E-value | |||
PRK11512 | PRK11512 | multiple antibiotic resistance transcriptional regulator MarR; |
1-143 | 1.58e-36 | |||
multiple antibiotic resistance transcriptional regulator MarR; Pssm-ID: 183170 Cd Length: 144 Bit Score: 122.70 E-value: 1.58e-36
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MarR | COG1846 | DNA-binding transcriptional regulator, MarR family [Transcription]; |
14-142 | 7.55e-28 | |||
DNA-binding transcriptional regulator, MarR family [Transcription]; Pssm-ID: 441451 [Multi-domain] Cd Length: 142 Bit Score: 100.43 E-value: 7.55e-28
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HTH_MARR | smart00347 | helix_turn_helix multiple antibiotic resistance protein; |
31-130 | 8.36e-22 | |||
helix_turn_helix multiple antibiotic resistance protein; Pssm-ID: 197670 [Multi-domain] Cd Length: 101 Bit Score: 83.80 E-value: 8.36e-22
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MarR | pfam01047 | MarR family; The Mar proteins are involved in the multiple antibiotic resistance, a ... |
38-95 | 1.71e-11 | |||
MarR family; The Mar proteins are involved in the multiple antibiotic resistance, a non-specific resistance system. The expression of the mar operon is controlled by a repressor, MarR. A large number of compounds induce transcription of the mar operon. This is thought to be due to the compound binding to MarR, and the resulting complex stops MarR binding to the DNA. With the MarR repression lost, transcription of the operon proceeds. The structure of MarR is known and shows MarR as a dimer with each subunit containing a winged-helix DNA binding motif. Pssm-ID: 426012 [Multi-domain] Cd Length: 59 Bit Score: 56.02 E-value: 1.71e-11
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MarR_2 | pfam12802 | MarR family; The Mar proteins are involved in the multiple antibiotic resistance, a ... |
37-94 | 6.69e-11 | |||
MarR family; The Mar proteins are involved in the multiple antibiotic resistance, a non-specific resistance system. The expression of the mar operon is controlled by a repressor, MarR. A large number of compounds induce transcription of the mar operon. This is thought to be due to the compound binding to MarR, and the resulting complex stops MarR binding to the DNA. With the MarR repression lost, transcription of the operon proceeds. The structure of MarR is known and shows MarR as a dimer with each subunit containing a winged-helix DNA binding motif. Pssm-ID: 432797 [Multi-domain] Cd Length: 60 Bit Score: 54.52 E-value: 6.69e-11
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HTH_27 | pfam13463 | Winged helix DNA-binding domain; |
58-103 | 1.46e-06 | |||
Winged helix DNA-binding domain; Pssm-ID: 433228 [Multi-domain] Cd Length: 68 Bit Score: 43.43 E-value: 1.46e-06
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PRK10870 | PRK10870 | transcriptional repressor MprA; Provisional |
56-142 | 1.34e-03 | |||
transcriptional repressor MprA; Provisional Pssm-ID: 182795 Cd Length: 176 Bit Score: 37.03 E-value: 1.34e-03
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Blast search parameters | ||||
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