Basic Information

Gene Symbol
ESRRB
Assembly
GCA_029286605.1
Location
JAGSMR010000055.1:916137-926840[-]

Transcription Factor Domain

TF Family
ESR
Domain
zf-C4|ESR-like
PFAM
AnimalTFDB
TF Group
Zinc-Coordinating Group
Description
This entry represents CLAVATA3/ESR (CLE)-related protein 14 from Arabidopsis thaliana (CLE14) and similar proteins predominantly found in plants. CLE14 is an extracellular signal peptide that regulates cell fate. It represses root apical meristem maintenance and functions as an elicitor of the root meristem differentiation through the CLV2/CRN complex signalling pathway. This protein inhibits irreversibly root growth by reducing cell division rates in the root apical meristem [1, 2].
Hmmscan Out
# of c-Evalue i-Evalue score bias hmm coord from hmm coord to ali coord from ali coord to env coord from env coord to acc
1 7 4.3e-40 1.2e-35 124.1 0.0 1 161 157 307 157 312 0.87
2 7 0.00052 14 5.8 0.0 134 162 313 341 307 347 0.88
3 7 0.00015 4.2 7.5 0.0 126 162 372 407 370 415 0.84
4 7 4.3e-05 1.2 9.4 0.0 125 162 439 475 438 481 0.88
5 7 0.00031 8.6 6.5 0.0 134 162 542 570 511 585 0.88
6 7 0.023 6.2e+02 0.4 0.0 135 162 638 665 631 670 0.87
7 7 2.6e-24 7.1e-20 72.4 0.0 135 270 761 895 753 897 0.94

Sequence Information

Coding Sequence
ATGCTGCGCCGTGTGAAGCAGGAAGCCGAGCCGCCGCCCCAGTACTCGCCCGAGGCCCACGCGGAGCAACCGCCCACCCGCCCCGTGCACATGGTACGAGCACCGCAGCTGGAACTAGAGCCGAAGGAGGAGGTGAAGTTCTGCGTGTCCCCCGAGAGCGGTGTGGTTGGCAACACCAGTCCCGAGCAGCAGCACTGCTCGTCGACCACCGCGGCGGCTGCGGGGGGCGCGCGGGACGAGGACTCGCCGCGGCGGTACTGCCTCGTCTGCGGCGACGTTGCCTCGGGATTCCACTACGGCGTTGCCAGCTGCGAGGCGTGCAAGGCCTTCTTCAAGAGGACTATACAGGGCAACATCGAGTACACCTGCCCCGCGGCGAACGAGTGCGAGATAAACAAGCGGCGGCGCAAGGCGTGCCAGGCGTGCCGCTTCCGCAAGTGCCTGCGCACGGGCATGCTGCGCGAGGGCGTGCGGCTGGACCGCGTGCGCGGCGGCCGCCAGAAGTACCGGCGCGCGCCCGACGCGCCGCCGCACCACGCGCCGCGCCCGCACCTCGACGACATCAAGGTATTAGAAGCACTCACTTCCTACGAACCAGACTTATTGACCTGCGGTGTGCCGCCTGCCGGCGCGACAGAACCCACGGCGAGAACACTAGCCCTTCTAGCAGACCTCTATGACAGAGAGCTGGTAGGAATTATCGGTTGGGCCAAACAGATACCCGGATTTACAGACTTGCAACTCAGTGATCAGATGCGGCTTCTGCAGAGTACTTGGGCGGAGATGCTGAGCCTGATGCTGGCGTACCGCTCGCTGCCGGCCGCCGGCGCCACGCTGCGGCTGCGCTTCGCCGCGGACCTCTCGCTCGACGAGCAGCAGGCGCGCGACATCGGCGCGCTCGACCTCTACctgcaggtgcgtaccgctcgctgcgctgcgctgcgcttcGCCGCGGACCTCTCGCTCGACGAGCAGCAGGCGCGCGACATCGGCGCGCTCGACCTCTACctgcaggtgcgtaccgctcgctgcgctgcgctgcgccgcGGACCTCTCGCTCGACGAGCTGCAGGCGCGCGACATCGGCGCGCTCGACCTCTACctgcaggtgcgtaccgctcgccgcgctgcgctgcgctgcgcttcGCCGCGGACCTCTCGCTCGACGAGCAGCAGGCGCGCGACATCGGCGCGCTCGACCTCTACctgcaggtgcgtaccgctcgctgcgctgcgctgcgcttcGCCGCCGGACCTCTCGCTCGACGAGCAGCGGGCGCGCGACATCAGCGCGCTCGACCTCTACctgcaggtgcgtaccgctcgctgcgctgcgctgcgctgcgcttcGCCGCGGACCTCTCGCTCGACGAGCAGCAGGCGCGCGACATCGGCGCGCTCGACCTCTACctgcaggtgcgtaccgctCGCTGCGCTGCGCTTCGCCGCGGACCTCTCGCTCGACGAGCTGCGGGCGCGCGACATCCGGCGCGCTCGACCTCTACCTGCGGGTGCGTACCGctcgctgcgctgcgctgcgccgcGGACCTCTCGCTCGACGAGCAGCGGGCGCGCGACATCAGCGCGCTCGACCTCctgcaggtgcgtaccgctcgctgcgctgcgctgcgcttcGCCGCGGACCTCTCGCTCGACGAGCAGCAGGCGCGCGACATCGGCGCGCTCGACCTCTACctgcaggtgcgtaccgctcgctgcgctgcgctgcgctgcgccgcGGACCTCTCGCTCGACAGGCAGCAGGCGCGCGACATCGGCGCTCGACCTCTACctgcaggtgcgtaccgctcgctgcgctgcgctgcgccgcGGACCTCTCGCTCGACGAGCTGCAGGCGCGCGACATCGGCGCGCTCGACCTCTACctgcaggtgcgtaccgctcgctgcgctgcgctgcgccgcGGACCTCTCGCTCGACGAGCAGCAGGCGCGCGACATCGGCGCGCTCGACCTCTACctgcaggtgcgtaccgctcgctgcgctgcgctgcgccgcGGACCTCTCGCTCGACGAGCAGCAGGCGCGCGACATCGGCGCGCTCGACCTCTACctgcaggtgcgtaccgctcgctgcgctgcgctgcgccgcGGACCTCTCGCTCGACGAGCAGCAGGCGCGCGACATCGGCGCTCGACCTCTACctgcaggtgcgtaccgctCGCTGCGCTGCGCTTCGCCGCGGACCTCTCGCTCGACGAGCAGCAGGCGCGCGACATCGGCGCGCTCGACCTCTACctgcaggtgcgtaccgctCGCTGCGCTGCGCCGCGGACCTCTCGCTCGACGAGCAGCAGGCGCGCGACATCGGCACGCTCGGCTTCGCGCCCTTGCAATGGGTGTGCAGCGTGGCGCGGCGGCTGGAGCGCGCGGGCGCGCTGCGCGAGGAGTGCTTCCTGCTGAAGGCGCTCGCGCTCGCCAACTCGGAGGCGCGGCTGGAGGAGCACGCGGCGCTGCGCCGCTTCCGCGACACCATCCTCGCCGCGCTCAACGACGCCGTCGCCGCGCTCAGGCCGTACAACGCGAACgcggcgctgcagcagctgctgCTGGTGCTGCCGGCGCTGCGGCACGCCGACGTGTGCGTGCGCCGCTTCTGGTCGCAGGTGCACCGCGACCGCCGCGCGCCCATGAACAAGCTCTTCGTCGAGATGCTCGAGGCCTGTCTGCGGTAG
Protein Sequence
MLRRVKQEAEPPPQYSPEAHAEQPPTRPVHMVRAPQLELEPKEEVKFCVSPESGVVGNTSPEQQHCSSTTAAAAGGARDEDSPRRYCLVCGDVASGFHYGVASCEACKAFFKRTIQGNIEYTCPAANECEINKRRRKACQACRFRKCLRTGMLREGVRLDRVRGGRQKYRRAPDAPPHHAPRPHLDDIKVLEALTSYEPDLLTCGVPPAGATEPTARTLALLADLYDRELVGIIGWAKQIPGFTDLQLSDQMRLLQSTWAEMLSLMLAYRSLPAAGATLRLRFAADLSLDEQQARDIGALDLYLQVRTARCAALRFAADLSLDEQQARDIGALDLYLQVRTARCAALRRGPLARRAAGARHRRARPLPAGAYRSPRCAALRFAADLSLDEQQARDIGALDLYLQVRTARCAALRFAAGPLARRAAGARHQRARPLPAGAYRSLRCAALRFAADLSLDEQQARDIGALDLYLQVRTARCAALRRGPLARRAAGARHPARSTSTCGCVPLAALRCAADLSLDEQRARDISALDLLQVRTARCAALRFAADLSLDEQQARDIGALDLYLQVRTARCAALRCAADLSLDRQQARDIGARPLPAGAYRSLRCAAPRTSRSTSCRRATSARSTSTCRCVPLAALRCAADLSLDEQQARDIGALDLYLQVRTARCAALRRGPLARRAAGARHRRARPLPAGAYRSLRCAAPRTSRSTSSRRATSALDLYLQVRTARCAALRRGPLARRAAGARHRRARPLPAGAYRSLRCAADLSLDEQQARDIGTLGFAPLQWVCSVARRLERAGALREECFLLKALALANSEARLEEHAALRRFRDTILAALNDAVAALRPYNANAALQQLLLVLPALRHADVCVRRFWSQVHRDRRAPMNKLFVEMLEACLR

Similar Transcription Factors

Sequence clustering based on sequence similarity using MMseqs2

100% Identity
iTF_01337821;
90% Identity
iTF_01337821;
80% Identity
iTF_01337821;