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Conserved domains on  [gi|1063687589|ref|NP_001321895|]
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basic helix-loop-helix (bHLH) DNA-binding superfamily protein [Arabidopsis thaliana]

Protein Classification

basic helix-loop-helix domain-containing protein( domain architecture ID 14413057)

basic helix-loop-helix (bHLH) domain-containing protein is a DNA-binding protein that may act as a transcription factor

Graphical summary

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List of domain hits

Name Accession Description Interval E-value
bHLH_AtbHLH_like cd11393
basic helix-loop-helix (bHLH) domain found in Arabidopsis thaliana genes coding transcription ...
316-365 4.91e-18

basic helix-loop-helix (bHLH) domain found in Arabidopsis thaliana genes coding transcription factors and similar proteins; bHLH proteins are the second largest class of plant transcription factors that regulate transcription of genes that are involve in many essential physiological and developmental process. bHLH proteins are transcriptional regulators that are found in organisms from yeast to humans. The Arabidopsis bHLH proteins that have been characterized so far have roles in regulation of fruit dehiscence, cell development (carpel, anther and epidermal), phytochrome signaling, flavonoid biosynthesis, hormone signaling and stress responses.


:

Pssm-ID: 381399 [Multi-domain]  Cd Length: 53  Bit Score: 76.84  E-value: 4.91e-18
                          10        20        30        40        50
                  ....*....|....*....|....*....|....*....|....*....|
gi 1063687589 316 SPEKELPKAKLRDKITTLQQIVSPFGKTDTASVLQEAITYINFYQEQVKV 365
Cdd:cd11393     2 SIAERKRREKINERIRALRSLVPNGGKTDKASILDEAIEYIKFLQEQVKV 51
 
Name Accession Description Interval E-value
bHLH_AtbHLH_like cd11393
basic helix-loop-helix (bHLH) domain found in Arabidopsis thaliana genes coding transcription ...
316-365 4.91e-18

basic helix-loop-helix (bHLH) domain found in Arabidopsis thaliana genes coding transcription factors and similar proteins; bHLH proteins are the second largest class of plant transcription factors that regulate transcription of genes that are involve in many essential physiological and developmental process. bHLH proteins are transcriptional regulators that are found in organisms from yeast to humans. The Arabidopsis bHLH proteins that have been characterized so far have roles in regulation of fruit dehiscence, cell development (carpel, anther and epidermal), phytochrome signaling, flavonoid biosynthesis, hormone signaling and stress responses.


Pssm-ID: 381399 [Multi-domain]  Cd Length: 53  Bit Score: 76.84  E-value: 4.91e-18
                          10        20        30        40        50
                  ....*....|....*....|....*....|....*....|....*....|
gi 1063687589 316 SPEKELPKAKLRDKITTLQQIVSPFGKTDTASVLQEAITYINFYQEQVKV 365
Cdd:cd11393     2 SIAERKRREKINERIRALRSLVPNGGKTDKASILDEAIEYIKFLQEQVKV 51
HLH smart00353
helix loop helix domain;
324-364 1.31e-04

helix loop helix domain;


Pssm-ID: 197674 [Multi-domain]  Cd Length: 53  Bit Score: 39.12  E-value: 1.31e-04
                           10        20        30        40
                   ....*....|....*....|....*....|....*....|....
gi 1063687589  324 AKLRDKITTLQQIVSPFG---KTDTASVLQEAITYINFYQEQVK 364
Cdd:smart00353   9 RKINEAFDELRSLLPTLPknkKLSKAEILRLAIEYIKSLQEELQ 52
 
Name Accession Description Interval E-value
bHLH_AtbHLH_like cd11393
basic helix-loop-helix (bHLH) domain found in Arabidopsis thaliana genes coding transcription ...
316-365 4.91e-18

basic helix-loop-helix (bHLH) domain found in Arabidopsis thaliana genes coding transcription factors and similar proteins; bHLH proteins are the second largest class of plant transcription factors that regulate transcription of genes that are involve in many essential physiological and developmental process. bHLH proteins are transcriptional regulators that are found in organisms from yeast to humans. The Arabidopsis bHLH proteins that have been characterized so far have roles in regulation of fruit dehiscence, cell development (carpel, anther and epidermal), phytochrome signaling, flavonoid biosynthesis, hormone signaling and stress responses.


Pssm-ID: 381399 [Multi-domain]  Cd Length: 53  Bit Score: 76.84  E-value: 4.91e-18
                          10        20        30        40        50
                  ....*....|....*....|....*....|....*....|....*....|
gi 1063687589 316 SPEKELPKAKLRDKITTLQQIVSPFGKTDTASVLQEAITYINFYQEQVKV 365
Cdd:cd11393     2 SIAERKRREKINERIRALRSLVPNGGKTDKASILDEAIEYIKFLQEQVKV 51
bHLH_AtIND_like cd11454
basic helix-loop-helix (bHLH) domain found in Arabidopsis thaliana protein INDEHISCENT (IND) ...
325-365 5.47e-07

basic helix-loop-helix (bHLH) domain found in Arabidopsis thaliana protein INDEHISCENT (IND) and similar proteins; The family includes several bHLH transcription factors from Arabidopsis thaliana, such as IND, HEC proteins (HEC1, HEC2 and HEC3) and UNE12. IND, also termed AtbHLH40, or EN 120, is a bHLH transcription regulator required for seed dispersal. It is involved in the differentiation of all three cell types required for fruit dehiscence. HEC1 (also termed AtbHLH88, or protein HECATE 1, or EN 118), HEC2 (also termed AtbHLH37, or protein HECATE 2, or EN 117) and HEC3 (also termed AtbHLH43, or protein HECATE 3, or EN 119) are required for the female reproductive tract development and fertility. Both IND and HEC proteins have been implicated in regulation of auxin signaling. They heterodimerize with SPATULA (SPT) bHLH transcription factor to regulate reproductive tract development in plant. UNE12, also termed AtbHLH59, or protein UNFERTILIZED EMBRYO SAC 12, or EN 93, is required for ovule fertilization.


Pssm-ID: 381460  Cd Length: 63  Bit Score: 46.23  E-value: 5.47e-07
                          10        20        30        40
                  ....*....|....*....|....*....|....*....|.
gi 1063687589 325 KLRDKITTLQQIVSPFGKTDTASVLQEAITYINFYQEQVKV 365
Cdd:cd11454    15 RISERIRILQRLVPGGTKMDTASMLDEAIHYVKFLQLQVKL 55
HLH smart00353
helix loop helix domain;
324-364 1.31e-04

helix loop helix domain;


Pssm-ID: 197674 [Multi-domain]  Cd Length: 53  Bit Score: 39.12  E-value: 1.31e-04
                           10        20        30        40
                   ....*....|....*....|....*....|....*....|....
gi 1063687589  324 AKLRDKITTLQQIVSPFG---KTDTASVLQEAITYINFYQEQVK 364
Cdd:smart00353   9 RKINEAFDELRSLLPTLPknkKLSKAEILRLAIEYIKSLQEELQ 52
bHLH_AtPIF_like cd11445
basic helix-loop-helix (bHLH) domain found in Arabidopsis thaliana phytochrome interacting ...
319-365 6.12e-04

basic helix-loop-helix (bHLH) domain found in Arabidopsis thaliana phytochrome interacting factors (PIFs) and similar proteins; The family includes several bHLH transcription factors from Arabidopsis thaliana, such as PIFs, ALC, PIL1, SPATULA, and UNE10. PIFs (PIF1, PIF3, PIF4, PIF5, PIF6 and PIF7) have been shown to control light-regulated gene expression. They directly bind to the photoactivated phytochromes and are degraded in response to light signals. ALC, also termed AtbHLH73, or protein ALCATRAZ, or EN 98, is required for the dehiscence of fruit, especially for the separation of the valve cells from the replum. It promotes the differentiation of a strip of labile non-lignified cells sandwiched between layers of lignified cells. PIL1, also termed AtbHLH124, or protein phytochrome interacting factor 3-like 1, or EN 110, is involved in responses to transient and long-term shade. It is required for the light-mediated inhibition of hypocotyl elongation and necessary for rapid light-induced expression of the photomorphogenesis- and circadian-related gene APRR9. PIL1 seems to play a role in multiple PHYB responses, such as flowering transition and petiole elongation. SPATULA, also termed AtbHLH24, or EN 99, plays a role in floral organogenesis. It promotes the growth of carpel margins and of pollen tract tissues derived from them. UNE10, also termed AtbHLH16, or protein UNFERTILIZED EMBRYO SAC 10, or EN 99, is required during the fertilization of ovules by pollen.


Pssm-ID: 381451  Cd Length: 64  Bit Score: 37.74  E-value: 6.12e-04
                          10        20        30        40        50
                  ....*....|....*....|....*....|....*....|....*....|.
gi 1063687589 319 KELPKAKLRDKIT----TLQQIVSPFGKTDTASVLQEAITYINFYQEQVKV 365
Cdd:cd11445     6 HNLSERRRRDRINekmkALQELIPNCNKTDKASMLDEAIEYLKSLQLQVQM 56
bHLH_AtNAI1_like cd11452
basic helix-loop-helix (bHLH) domain found in Arabidopsis thaliana protein NAI1 and similar ...
325-364 7.67e-04

basic helix-loop-helix (bHLH) domain found in Arabidopsis thaliana protein NAI1 and similar proteins; NAI1, also termed AtbHLH20, or EN 27, is a bHLH transcription activator that regulates the expression of at least NAI2, PYK10 and PBP1. It is required for and mediates the formation of endoplasmic reticulum bodies (ER bodies). It plays a role in the symbiotic interactions with the endophytes of the Sebacinaceae fungus family, such as Piriformospora indica and Sebacina.


Pssm-ID: 381458 [Multi-domain]  Cd Length: 75  Bit Score: 37.83  E-value: 7.67e-04
                          10        20        30        40
                  ....*....|....*....|....*....|....*....|
gi 1063687589 325 KLRDKITTLQQIVSPFGKTDTASVLQEAITYINFYQEQVK 364
Cdd:cd11452    16 KLSQRFIALSALVPGLKKMDKASVLGDAIKHIKQLQERVK 55
bHLH_SF cd00083
basic Helix Loop Helix (bHLH) domain superfamily; bHLH proteins are transcriptional regulators ...
325-361 3.34e-03

basic Helix Loop Helix (bHLH) domain superfamily; bHLH proteins are transcriptional regulators that are found in organisms from yeast to humans. Members of the bHLH superfamily have two highly conserved and functionally distinct regions. The basic part is at the amino end of the bHLH that may bind DNA to a consensus hexanucleotide sequence known as the E box (CANNTG). Different families of bHLH proteins recognize different E-box consensus sequences. At the carboxyl-terminal end of the region is the HLH region that interacts with other proteins to form homo- and heterodimers. bHLH proteins function as a diverse set of regulatory factors because they recognize different DNA sequences and dimerize with different proteins. The bHLH proteins can be divided to cell-type specific and widely expressed proteins. The cell-type specific members of bHLH superfamily are involved in cell-fate determination and act in neurogenesis, cardiogenesis, myogenesis, and hematopoiesis.


Pssm-ID: 381392 [Multi-domain]  Cd Length: 46  Bit Score: 35.19  E-value: 3.34e-03
                          10        20        30        40
                  ....*....|....*....|....*....|....*....|
gi 1063687589 325 KLRDKITTLQQIV---SPFGKTDTASVLQEAITYINFYQE 361
Cdd:cd00083     7 KINDAFEELKRLLpelPDSKKLSKASILQKAVEYIRELQS 46
bHLH_AtFIT_like cd11450
basic helix-loop-helix (bHLH) domain found in Arabidopsis thaliana Fe-deficiency induced ...
323-364 7.51e-03

basic helix-loop-helix (bHLH) domain found in Arabidopsis thaliana Fe-deficiency induced transcription factor 1 (FIT) and similar proteins; The family includes bHLH transcription factors from Arabidopsis thaliana, such as FIT and DYT1. FIT, also termed FER-like iron deficiency-induced transcription factor, or FER-like regulator of iron uptake, or AtbHLH29, or EN 43, is a bHLH transcription factor that is required for the iron deficiency response in plant. It regulates FRO2 at the level of mRNA accumulation and IRT1 at the level of protein accumulation. DYT1, also termed AtbHLH22, or protein dysfunctional tapetum 1, or EN 49, is a bHLH transcription factor involved in the control of tapetum development. It is required for male fertility and pollen differentiation, especially during callose deposition.


Pssm-ID: 381456 [Multi-domain]  Cd Length: 76  Bit Score: 35.19  E-value: 7.51e-03
                          10        20        30        40
                  ....*....|....*....|....*....|....*....|..
gi 1063687589 323 KAKLRDKITTLQQIVSPFGKTDTASVLQEAITYINFYQEQVK 364
Cdd:cd11450    15 RQKLNQRLFALRSVVPNITKMDKASIIKDAISYIQELQYQEK 56
 
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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