Basic Information

Gene Symbol
lilli
Assembly
GCA_963924545.1
Location
OZ004699.1:13114472-13163368[-]

Transcription Factor Domain

TF Family
AF-4
Domain
AF-4 domain
PFAM
PF05110
TF Group
Unclassified Structure
Description
This family consists of AF4 (Proto-oncogene AF4) and FMR2 (Fragile X syndrome) nuclear proteins. These proteins have been linked to human diseases such as acute lymphoblastic leukaemia and mental disabilities [1]. The family also contains a Drosophila AF4 protein homologue Lilliputian which contains an AT-hook domain. Lilliputian represents a novel pair-rule gene that acts in cytoskeleton regulation, segmentation and morphogenesis in Drosophila [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 6 6.4e-09 0.00036 21.6 0.0 4 75 24 99 21 167 0.68
2 6 6.8e-08 0.0039 18.2 19.4 349 505 255 425 247 438 0.54
3 6 1 5.7e+04 -11.3 19.8 421 481 508 572 454 600 0.48
4 6 1 5.7e+04 -5.9 12.2 434 479 643 688 629 708 0.43
5 6 1 5.7e+04 -6.5 21.2 367 484 700 817 695 841 0.60
6 6 0.96 5.5e+04 -5.4 22.0 84 245 994 1150 973 1178 0.43

Sequence Information

Coding Sequence
ATGCAATATCCTTGGAGGGCTAAGAATGATAATAAGGCTAACAAGGATAATGAGGCGGCTAATACCGTGGAAAGAGACCGCCTCCGTGAGCGGGAACGGCAGGCGAGGGCCCAGATGTCTTCGCAAGTAGCGGATCAAGAAAGTCCGGGCACTTCCGGAAATTTCTTGTTTAGAGAACCCATAAGGGTTAACCCGTCCACCGCCGATCCGGTCACCCAGCAGATCCAAAGCAAGCTAGGCGACTTCCAGCGAGTCAGGCACTTTCTGGACCAGAAGGACTCCGGGCTGATCGGTGTGGATGGGGTGCCGCCGAGCCCGGGAGGCCCGCCTCCACTTCCACAGAGACCACATCTCATTTCCATGCCTTCCGGCGGCCCACCAGTGGCAGCTGCTTCCAGCAGACTGCAGCCGGCTCCTGAATCCCGTACGGAATTCAAGAAGCCCACTCACCACCACCTGCACCATCCTCACCAGCGAGGTGGTTACGTGAAGCCGGTGGATAGCAAGCCGCCGTACGGAGGCCGCGGCGGCTACCCCGGCCAGCCCGTGAAGCACGGCAGCGGCGCCGTGAGCCATCGTTCTAACGGCATCCTGCCGGCGAAGGGGCCGCCTCTGTCGTCAATACCGCCGTCCAGCTCCTCAACGTCATCCATCCGCCTGCACGGGATCGAGAGGCTTCCACGAAACCCTTACGAGCAGAGCCAAGGCCTTACGGCTGGACCCAGGGAGACCCTGCCTTGCGCCACTCCGGTCGCTGCTGAAGTAGACCATATATTTAAGGAAATGATAGATCAGACAACACCACTGACTGCAATGGCGGCGACCCCCAGGATAGAGCTCGACAATAAGTACAATTACAATCCACTTCTTGCCAAGTTAACCGAGGGGATtccagcgccatctccaatcaAAAaACGTGAACGTCAACCGGCTCTTCGACCCCAAGAAAGTCTAAGAGATGATCTCAACTTATCGGAGGAGAGCGATGATGAACAAAAGAAGGAAACTTTACATTCTTCTAATATAACCGTCAAAAAgaTGTTATCGCCCCTCGCTGCAACACCTGCTATACACAATTCAAAAATGGAGGTGTCCGAGCCCTTAGCCCCTTTACCAACATCACCAATAGCCAGTTCTTCTAGTGACTCTGGATCAGATTCAGGATCTGACAGTGAGTCTAGTAGTGACGACTCTGGTGATGAAAATGTATCAGCGGTGAATACTCGTCTTCAAGCACCACCTGCAGAACTAGAGCCCACATCACCACCCACGGAAGACAGCAAAATAAGGTGGAACTTGGCGTCTTTTGTAGGCAACAGTCAAAATATAGCAGATCCCATTACTTCTCCTTTGGTGTCCCCTGTCAAACCATCTTCTTCGCTGCCTATCAAAACAAGTCCGGACAGTAGAAAAAGGGTTTCTGAGGAGTCTGACACCAGCGATTCGGTCAAAGATGTTGATGACATAGTGGCCAAGGCAAAAGCGTTAGCTGCATTAAGTAATTTACCGTTATTATCAAGTTTTTCGGACTCTGAAAACAGCAGCAAAGAATCAAACTCTAAGAGACGAAAGCATACCATTCAACCAGTTACCAATCCTAATTTAAGTGATAGTGATTCCGACGAAGATGAAAGAACTAGTAAAAGAAAACCGGTGATTCGTGCTAGTCCTAGGACTAAATCAGTGGACTCTCACAGTGATTCCGATTCTGAACCTAAAACCGATAGTGGCTTCGTGAACCCCATCATCAAACCTATTTCTCCTGTGCCAGTAGTGAACCCTGAGAAATTGACAAAAGCAGGTCGAGGTAGACCTAGGAAGAATAAACTTCCAACTGAGGTGAAGAAGCCAAAAAGAGGTCGTCCAAAGAAAACTCGTTCCCCTAATGCTTCGTCAGATGTTGAAAAGAGGAAGCCAAGAGGACGAGGTCGCCCACCAAAATCTGTACTTCCACCAAGTAGTTCTGATGAagatgaaaaatttgaaaaaccgCCGCCTCCACCACGCCGCCGTACCAAATCAAAAGTGCAAACTTCTAGCAGCTCCGATTCAGACAGTCCGGCACCAAGGCGACGAAATTCTAGTAGTTGTAGCAGTATTCGTCATGAATCGGAAAAAGAAACTCTGAAACATGAGTTGCCGAAGAAAATTTATAAACACAAATCTCCAAGGTCTGAAGAGCGGAAGAAAGCAAAGAAGAGTTCAGACGAAGAATGGGGTATTGAGAACAAGGCGATCCTCAAAAACCATTTCAGGGACGAacaattgaaaaagaaaatttcagatACTTCAAAAGATATTACATCTCCCTTCAGACGAAAAGGTCGGCCGCCATTGTCCAAGAAAGAATCAATTAGTGATATGGAAAAGATAAAGGCAAAAGCTAAAGTTAGTTCGTCTTCTGAGGACTCTAATAAGGCTATAAGTGATTCTGATAGTGACATTACTTCACCTTCTAAGAAAACTCCTAATAAAATGGACCCTACCATAAAGGTGGAAGAGAATAAGACGATAGCAGATAAAAAGAAAAGTGATACTCTTCGTAAACTCTTTACACCGAAAAGGGACTCTGAAGGAGGTAAAGGTGGAGGAAAAGGAGGAGGAAAGGGTGGTGGTAAAGGTAAGGGAGGAGTTAATGTGATAATAGTTGATGAAAACTATGAACGTAGTAGTTCGTCAGTAGAAGATGAAGCTATGCCAACCATATCAACCAACCCCGCTCTATTATCACCTATGTTTAATAATGAAGTGAAAAAGAAAAGTCCTGAACCACCGTCTCATCTATCATCACCTATATATAATGACCCAATCAAGTGTATAAAGACTGAAATTCCAATTAGTGATAATAATATTGAAAGGATAACACTTATGGTAAAGATAGATCTAAATCGGTTAGATCTTTCTAATATTCCCGCTTTGAAAAAACATGCAGACAGTACTAGATCCTGGTTATTGGAACCTAAACAGGCAAGTACAGGCAAAGTAAAAAAAGGGAGCGTGGATAAAATTGGTGAATCTGAAACGGACGCCATAACAAAATCATTGAAGGGTAGTGACAATGAAACCAAAAGGCCATTACCCCCAAAATCCGAGCAAGATCATATAGACTGGAAACACAAGAAGAAACGTAAAAGAAGGAACAGCTCAAGTTCAATTTCTTCGCTTTCAACCGTCAGTAACTTATCTCACAGTAGCTATAAGAAGGAACACCAAAGTAAAAAGGATAAAGATAATCCTAAATCTAAGAGACGAAGAGAAGACACTGAAGTTATTGCACGATCTCAAATGGATAATCTCAATTTAACTAATGCGCCCCCAACTAACCATGAACGGGAAGCAGGCAAGAACCAGACTGTTCAGCATCCTGAACCAGTGATATCCAATAGTCATCCCCAGCCTAGCAGGGAGTACCACTCATACCTTGAACCTTCTGAAGAACCATCTGAGTATGAAGAGAGGGATCAAAACCAGTACCTGAGCGATGCAAAGAGATTAAAGCACATGGCTGATAGAGAGACTGATACAATTAAACAATGCATGCTGTACCTGGAGgctgtactttattttttgttaactgGTAACACTATGGAACAAGAGAGTGTTTCAGAAAAAGCAGCCTTCACCATGTATAAAGACACACTGGCGCTAATCAAATTTATTTCATCAAAATTTAGGAGCCAGCAGAACATGTCGTCGGTTCATACTAAACTGGCTGTGTTAAGttatcGGTGCCAAGCTCTACTATTTCACAAATTGTTTAGCATGAGAAAACCGGAGAGTAAGGAGGTAGTGAAGATTATTAGCGACTACGTTAGcaagaatccCATTTCTCAAGATCAACTGAACCACCAACAAGGTCAGGGTACTCCTTCCCCTCTGTCCCCTACTCCTTCTCCAGCAGGTTCGGTGGGTTCGGTAGGCAGCCAATCTTCAGGTTATAGTAGTGGAGAATTAGCAGCAAGGGGAAACAATGCACCCATTCCTGCCACACATGCTCAGAATTCTGGGGCATGGGTACCGCTCTCTGTTTTCAATGCCATGAACGTGCAAAATCAATATTTCACGTATATGGTCTCATTCATGGAACATTGGGAAATGGCCGACTCGCTCATCATTAAGGGCAAACATACAAGTTTCTTTGTTAACCTGGACAAGCAATTTAAGCCTTTGTCGGTACACAGTTCTATTATAGACTTGGTCAGGTACGTAATGGAAGGTATAAATCGTCTGAAGGAAAGTTAG
Protein Sequence
MQYPWRAKNDNKANKDNEAANTVERDRLRERERQARAQMSSQVADQESPGTSGNFLFREPIRVNPSTADPVTQQIQSKLGDFQRVRHFLDQKDSGLIGVDGVPPSPGGPPPLPQRPHLISMPSGGPPVAAASSRLQPAPESRTEFKKPTHHHLHHPHQRGGYVKPVDSKPPYGGRGGYPGQPVKHGSGAVSHRSNGILPAKGPPLSSIPPSSSSTSSIRLHGIERLPRNPYEQSQGLTAGPRETLPCATPVAAEVDHIFKEMIDQTTPLTAMAATPRIELDNKYNYNPLLAKLTEGIPAPSPIKKRERQPALRPQESLRDDLNLSEESDDEQKKETLHSSNITVKKMLSPLAATPAIHNSKMEVSEPLAPLPTSPIASSSSDSGSDSGSDSESSSDDSGDENVSAVNTRLQAPPAELEPTSPPTEDSKIRWNLASFVGNSQNIADPITSPLVSPVKPSSSLPIKTSPDSRKRVSEESDTSDSVKDVDDIVAKAKALAALSNLPLLSSFSDSENSSKESNSKRRKHTIQPVTNPNLSDSDSDEDERTSKRKPVIRASPRTKSVDSHSDSDSEPKTDSGFVNPIIKPISPVPVVNPEKLTKAGRGRPRKNKLPTEVKKPKRGRPKKTRSPNASSDVEKRKPRGRGRPPKSVLPPSSSDEDEKFEKPPPPPRRRTKSKVQTSSSSDSDSPAPRRRNSSSCSSIRHESEKETLKHELPKKIYKHKSPRSEERKKAKKSSDEEWGIENKAILKNHFRDEQLKKKISDTSKDITSPFRRKGRPPLSKKESISDMEKIKAKAKVSSSSEDSNKAISDSDSDITSPSKKTPNKMDPTIKVEENKTIADKKKSDTLRKLFTPKRDSEGGKGGGKGGGKGGGKGKGGVNVIIVDENYERSSSSVEDEAMPTISTNPALLSPMFNNEVKKKSPEPPSHLSSPIYNDPIKCIKTEIPISDNNIERITLMVKIDLNRLDLSNIPALKKHADSTRSWLLEPKQASTGKVKKGSVDKIGESETDAITKSLKGSDNETKRPLPPKSEQDHIDWKHKKKRKRRNSSSSISSLSTVSNLSHSSYKKEHQSKKDKDNPKSKRRREDTEVIARSQMDNLNLTNAPPTNHEREAGKNQTVQHPEPVISNSHPQPSREYHSYLEPSEEPSEYEERDQNQYLSDAKRLKHMADRETDTIKQCMLYLEAVLYFLLTGNTMEQESVSEKAAFTMYKDTLALIKFISSKFRSQQNMSSVHTKLAVLSYRCQALLFHKLFSMRKPESKEVVKIISDYVSKNPISQDQLNHQQGQGTPSPLSPTPSPAGSVGSVGSQSSGYSSGELAARGNNAPIPATHAQNSGAWVPLSVFNAMNVQNQYFTYMVSFMEHWEMADSLIIKGKHTSFFVNLDKQFKPLSVHSSIIDLVRYVMEGINRLKES

Similar Transcription Factors

Sequence clustering based on sequence similarity using MMseqs2

100% Identity
iTF_00110547;
90% Identity
-
80% Identity
-