Basic Information

Gene Symbol
-
Assembly
GCA_947086385.1
Location
CAMTYR010000034.1:13779999-13784943[-]

Transcription Factor Domain

TF Family
LRRFIP
Domain
LRRFIP domain
PFAM
PF09738
TF Group
Unclassified Structure
Description
LRRFIP1 is a transcriptional repressor which preferentially binds to the GC-rich consensus sequence (5'- AGCCCCCGGCG-3') and may regulate expression of TNF, EGFR and PDGFA [1]. LRRFIP2 may function as activator of the canonical Wnt signalling pathway, in association with DVL3, upstream of CTNNB1/beta-catenin [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 12 2.4e-05 0.15 10.8 1.1 209 285 21 101 4 103 0.79
2 12 0.00083 5.2 5.7 3.0 203 266 218 283 198 304 0.71
3 12 0.011 69 2.1 2.8 197 265 307 377 292 398 0.70
4 12 0.051 3.2e+02 -0.1 0.5 209 258 416 464 386 482 0.66
5 12 0.00012 0.75 8.5 2.9 209 285 485 565 477 567 0.79
6 12 4.3e-05 0.27 10.0 1.4 208 285 596 677 570 679 0.73
7 12 0.0034 21 3.7 0.5 208 285 708 785 682 787 0.69
8 12 3e-05 0.18 10.5 1.4 208 285 816 897 790 899 0.73
9 12 5.4e-05 0.33 9.7 1.2 208 285 928 1009 902 1011 0.73
10 12 3.7e-05 0.23 10.2 1.2 203 285 1060 1148 1040 1150 0.72
11 12 5.4e-05 0.33 9.7 1.2 208 285 1179 1260 1153 1262 0.73
12 12 0.027 1.7e+02 0.8 0.0 208 238 1318 1348 1292 1358 0.76

Sequence Information

Coding Sequence
GCTCCGAAAGAGCCTGAGCCCATTTCGGAACCGACAAAAGAAATCTCCCGGCCAGAATCCGTCGCCAGTGTCAAGGAGAGCCCGAAAGAATCCAAATTGTCTCCTGAATTAGAGAAGATTGTCACTGAGAAGACAGAGATCGTTAAACAAGTTGAAATTGTTGAGCAGAAGATCCAAGAAGTCGCCAAGGATGAGATTCTTAAGGTCGAGCCAACTTCCAAGGAGCCCTCTCGGCCACAACAATCCGCCGAGCTGAAAGAAGAGGTCAAGGAAGTTGGCAAGGAGTCTCCGAAGGAAATCTCCAGGCCAGAGTCCGTTGCCAGTTCGAAGGACGAAGCTCCGAAAGAGCCTGAGCCCATTTCGGAACCGACAAGAAATCTCCCGGCCAGAATCCGTCGAGCCAACTTCCAAGGAGCCCTCTCGGCCACAATCATCCGCCGAGCTGAAAGAAGAGGTCAAGGAAGTTGGCAAGGAGTCTCCGAAGGAAATCTCCAGGCCAGAGTCCGTTCACAAACCGCCAGTTCGAAGGACGAAGCTCCGAAAGAGCCTGAGCCCATTTCGGAACCGACAAAAGAAATCTCCCGGCCAGAGTCCGTCGCCAGTTCGAAGGACGAAGCTCCGAAAGAGCCTGAGCCCATTTCGGAACCGACAAAAGAAATCTCCCGGCCAGAATCCGTCGCCAGTGTCAAGGAGAGCCCGAAAGAAACCAAGTTGTCTCCTGAACTGGAGAAGATTGTCACTGAGAAGACAGAGATCGTTAAACAAGTTGAAATTGTTGAGCAGAAGATCCAAGAAGTCGCCAAGGATGAGATTCTTAAGGTCGAGCCAACTTCCAAGGAGCCCTCTCGGCCACAATCATCCGCCGAGCTGAAAGAAGAGGTCAAGAATTCGAAGGACGAAGCTCCGAAAGAGCCTGAGCCCATTTCGGAACCGACGAAAGAAATCTCCCGGCCAGAATCCGTCGCCAGTGTCAAGGAGAGCCCGAAAGAATCCAAATTGTCTCCTGAAGCAGAGAAGATTATCACTGAGAAGACAGAGATCGTTAAACAAGTTGAAATTGTTGCGCAGAAGATCCAAGAAGTCGCCAAGGATGAGATTCTTAAGGTCGAGCCAACTTCCAAGGAGCCCTCTCGGCCACAATCTTCCGCCGAGCTGAAAGAAGAGGTCAAGAATTCGAAGGACGAAGCTCCGAAAGAGCCTGAGCCCATTTCGGAACCGACAAAAGAAATCTCCCGGCCAGAATCCGTCGCCAGTGTCAAGGAGACCCCGAAAGAAACCAAGTTGTCTCCTGAACCAGAGAAGATTGTCACTGAGAAGACAGAGATTGTTAAACAAGTTGAAATTGTTGAGCAGAGATCCAAGAAGTCGCCAAGGATGAGATTCTTAAGGTCGAGCCAACTTCCAAGGAGCCTCTCGGCCACAATCATCCGCCGAGCTGAAAGAAGAGAATCCGTCGCCAGTGTCAAGGAGAGCCCGAAAGAATCCAAATTGTCTCCTGAGCTGGAGAAGATTGTCACTGAGAAGACAGAGATCGTTAAACAAGTTGAAATTGTTGAGCAGAAGATCCAAGAAGTCGCCAAGGATGAGATTCTTAAGGTCGAGCCAACTTCCAAGGAGCCCTCTCGGCCACAATCATCCGCCGAGCTGAAAGAAGAGGTCAAGGAAGTTGGCAAGGAGTCTCCGAAGGAAATCTCCAGGCCAGAGTCCGTTGCCAGTTCGAAGGACGAAGCTCCGAAAGAGCCTGAGCCCATTTCGGAACCGACAAAAGAAATCTCCCGGCCAGAATCCGTCGCCAGTGTCAAGGAGAGCCCGAAAGAAACCAAGTTGTCTCCTGAATTAGAGAAGATTGTCACTGAGAAGACAGAGATCGTTAAACAAGTTGAAATTGTTGAGCAGAAGATCCAAGAAGTCGCCAAGGATGAGATTCTTAAGGTCGAGCCAACTTCCAAGGAGCCCTCTCGGCCACAATCATCCGCCGAGCTGAAAGAAGAGGTCAAGGAAGTTGGCAAGGAGTCTCCGAAGGAAATCTCCAGGCCAGAGTCCGTTGCCAGTTCGAAGGACGAAGCTCCGAAAGAGCCTGAGCCCATTTCGGAACCGACAAAAGAAATCTCCCGGCCAGAATCCGTCGCCAGTGTCAAGGAGAGCCCGAAAGAATCCAAATTGTCTCCTGAGCTGGAGAAGATTGTCACTGAGAAGACAGAGATCTTGAAATTGTTGCGCAGAAGATCCAAGAAGTCGCCAGGAGAGATTCTTAAGGTCGAGCCAACTTCCAAGGAGCCCTCTCGGCCACAATCATCCGCCGAGCTGAAAGAAGAGGTCAAGGAAGTTGGCAAGGAGTCTCCGAAGGAAATCTCCAGGCCAGAGTCCGTTGCCAGTTCGAAGGACGAAGCTCCGAAAGAGCCTGAGCCCATTTCGGAACCGACAAAAGAAATCTCCCGGCCAGAATCCGTCGCCAGTGTCAAGGAGACCCCGAAAGAATCCAAATTGTCTCCTGAACTGGAGAAGATTGTCACTGAGAAGACAGAGATCGTTAAACAAGTTGAAATTGTTGAGCAGAAGATCCAAGAAGTCGCCAAGGATGAGATTCTTAAGGTCGAGCCAACTTCCAAGGAGCCCTCTCGGCCACAATCATCCGCCGAGCTGAAAGAAGAGGTCAAGGAAGTTGGCAAGGAGTCTCCGAAGGAAATCTCCAGGCCAGAGTCCGTTGCCAGTTCGAAGGACGAAGCTCCGAAAGAGCCTGAGCCCATTTCGGAACCGACAAAAGAAATCTCCCGGCCAGAATCCGTCGCCAGTGTCAAGGAGAGCCCGAAAGAAACCAAGTTGTCTCCTGAATTAGAGAAGATTGTCACTGAGAAGACAGAGATCGTTAAACAAGTTGAAATTGTTGCGCAGAAGATCCAAGAAGTCGCCAAGGATGAGATTCTTAAGGTCGAGCCAACTTCCAAGGAGCCCTCTCGGCCACAATCATCCGCCGAGCTGAAAGAAGAGGTCAAGGAAGTTGGCAAGGAGTCTCCGAAGGAAATCTCCAGGCCAGAGTCCGTTGCCAGTTCGAAGGACGAAGCTCCGAAAGAGCCTGAGCCCATTTCGGAACCGACAAAAGAAATCTCCCGGCCAGAGTCCGTCGCCAGTTCGAAGGACGAAGCTCCGAAAGAGCCTGAGCCCATTTCGGAACCGACAAAAGAAATCTCCCGGCCAGAATCCGTCGCCAGTGTCAAGGAGACCCCGAAAGAATCCAAATTGTCTCCTGAGCTGGAGAAGATTGTCACTGAGAAGACAGAGATCGTTAAACAAGTTGAAATTGTTGCGCAGAAGATCCAAGAAGTCGCCAAGGATGAGATTCTTAAGGTCGAGCCAACTTCCAAGGAGCCCTCTCGGCCACAATCATCCGCCGAGCTGAAAGAAGAGGTCAAGGAAGTTGGCAAGGAGTCTCCGAAGGAAATCTCCAGGCCAGAGTCCGTTGCCAGTTCGAAGGACGAAGCTCCGAAAGAGCCTGAGCCCATTTCGGAACCGACAAAAGAAATCTCCCGGCCAGAATCCGTCGCCAGTGTCAAGGAGAGCCCGAAAGAAACCAAGCTGTCTCCTGAATTAGAGAAGATTGTCACTGAGAAGACAGAGATCGTTAAACAAGTTGAAATTGTTGCGCAGAAGATCCAAGAAGTCGCCAAGGATGAGATTCTTAAGGTCGAGCCAACTTCCAAGGAGCCCTCTCGGCCACAATCATCCGCCGAGCTGAAAGAAGAGGTCAAGGAAGTTGGCAAGGAGTCTCCGAAGGAAATCTCCAGGCCAGAGTCCGTTGCCAGTTCGAAGGACGAAGCTCCGAAAGAGCCTGAGCCCATTTCGGAACCGACAAAAGAAATCTCCAGGCCAGAGTCCGTCGCCAGTTCGAAGGACGAAGCTCCGAAAGAGCCTGAGCCCATTTCGGAACCGACAAAAGAAATCTCCCGGCCAGAATCCGTCGCCAGTGTCAAGGAGAGCCCGAAAGAATCCAAATTGTCTCCTGAGCTGGAGAAGATTGTCACTGAGAAGACAGAGATCGTTAAACAATCATGCGAGACTCTGTTCCCAGCGCTAGAGATGTATCTCCTGATCTCGAAGGATCTCTACAATTTGCTACCATTCATTCTGCTACTGAGGTTGCCAGTAGTGAATATAAAGAAGAGTCCTTGTCGCTGCATTTGGAAATTGTGA
Protein Sequence
APKEPEPISEPTKEISRPESVASVKESPKESKLSPELEKIVTEKTEIVKQVEIVEQKIQEVAKDEILKVEPTSKEPSRPQQSAELKEEVKEVGKESPKEISRPESVASSKDEAPKEPEPISEPTRNLPARIRRANFQGALSATIIRRAERRGQGSWQGVSEGNLQARVRSQTASSKDEAPKEPEPISEPTKEISRPESVASSKDEAPKEPEPISEPTKEISRPESVASVKESPKETKLSPELEKIVTEKTEIVKQVEIVEQKIQEVAKDEILKVEPTSKEPSRPQSSAELKEEVKNSKDEAPKEPEPISEPTKEISRPESVASVKESPKESKLSPEAEKIITEKTEIVKQVEIVAQKIQEVAKDEILKVEPTSKEPSRPQSSAELKEEVKNSKDEAPKEPEPISEPTKEISRPESVASVKETPKETKLSPEPEKIVTEKTEIVKQVEIVEQRSKKSPRMRFLRSSQLPRSLSATIIRRAERRESVASVKESPKESKLSPELEKIVTEKTEIVKQVEIVEQKIQEVAKDEILKVEPTSKEPSRPQSSAELKEEVKEVGKESPKEISRPESVASSKDEAPKEPEPISEPTKEISRPESVASVKESPKETKLSPELEKIVTEKTEIVKQVEIVEQKIQEVAKDEILKVEPTSKEPSRPQSSAELKEEVKEVGKESPKEISRPESVASSKDEAPKEPEPISEPTKEISRPESVASVKESPKESKLSPELEKIVTEKTEILKLLRRRSKKSPGEILKVEPTSKEPSRPQSSAELKEEVKEVGKESPKEISRPESVASSKDEAPKEPEPISEPTKEISRPESVASVKETPKESKLSPELEKIVTEKTEIVKQVEIVEQKIQEVAKDEILKVEPTSKEPSRPQSSAELKEEVKEVGKESPKEISRPESVASSKDEAPKEPEPISEPTKEISRPESVASVKESPKETKLSPELEKIVTEKTEIVKQVEIVAQKIQEVAKDEILKVEPTSKEPSRPQSSAELKEEVKEVGKESPKEISRPESVASSKDEAPKEPEPISEPTKEISRPESVASSKDEAPKEPEPISEPTKEISRPESVASVKETPKESKLSPELEKIVTEKTEIVKQVEIVAQKIQEVAKDEILKVEPTSKEPSRPQSSAELKEEVKEVGKESPKEISRPESVASSKDEAPKEPEPISEPTKEISRPESVASVKESPKETKLSPELEKIVTEKTEIVKQVEIVAQKIQEVAKDEILKVEPTSKEPSRPQSSAELKEEVKEVGKESPKEISRPESVASSKDEAPKEPEPISEPTKEISRPESVASSKDEAPKEPEPISEPTKEISRPESVASVKESPKESKLSPELEKIVTEKTEIVKQSCETLFPALEMYLLISKDLYNLLPFILLLRLPVVNIKKSPCRCIWKL

Similar Transcription Factors

Sequence clustering based on sequence similarity using MMseqs2

100% Identity
-
90% Identity
-
80% Identity
-