Basic Information

Gene Symbol
MLXIP
Assembly
GCA_950022985.1
Location
OX465520.1:10647576-10671378[-]

Transcription Factor Domain

TF Family
bHLH
Domain
HLH domain
PFAM
PF00010
TF Group
Basic Domians group
Description
A basic helix-loop-helix (bHLH) is a protein structural motif that characterizes one of the largest families of dimerizing transcription factors.It should not be confused with the helix-turn-helix domain.The motif is characterized by two α-helices connected by a loop. In general, transcription factors including this domain are dimeric, each with one helix containing basic amino acid residues that facilitate DNA binding. In general, one helix is smaller, and, due to the flexibility of the loop, allows dimerization by folding and packing against another helix. The larger helix typically contains the DNA-binding regions. bHLH proteins typically bind to a consensus sequence called an E-box, CANNTG. The canonical E-box is CACGTG (palindromic), however some bHLH transcription factors, notably those of the bHLH-PAS family, bind to related non-palindromic sequences, which are similar to the E-box. bHLH TFs may homodimerize or heterodimerize with other bHLH TFs and form a large variety of dimers, each one with specific functions.https://en.wikipedia.org/wiki/Basic_helix-loop-helix
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 8 4.8e-08 2.6e-05 24.8 0.1 2 32 738 768 737 774 0.89
2 8 2.2e-07 0.00012 22.7 0.0 4 32 779 807 778 825 0.83
3 8 2.2e-07 0.00012 22.7 0.0 4 32 907 935 906 953 0.83
4 8 2.2e-07 0.00012 22.7 0.0 4 32 1035 1063 1034 1081 0.83
5 8 2.2e-07 0.00012 22.7 0.0 4 32 1163 1191 1162 1209 0.83
6 8 2.2e-07 0.00012 22.7 0.0 4 32 1291 1319 1290 1337 0.83
7 8 2.2e-07 0.00012 22.7 0.0 4 32 1419 1447 1418 1465 0.83
8 8 8.3e-15 4.5e-12 46.4 0.2 4 53 1547 1598 1546 1598 0.93

Sequence Information

Coding Sequence
ATGACACACGTTGAGAAACGGCCGCCACGACCAGGAAAAGAGACTATACATTCAGGGCATTTCATGGTGTCGCATTTTGAAGCTGAGGCTCAGGATGAATTTGACGATTTAGCAGTGCCAGTCCCCGATGAAGAACAAAACGTGCAAAAGGTTTCAGTGGTGGCAACCTACACAGTACCTGTCTCTAAAGAACAGTTCACCCCATCAGATAAAATTGAACCCAAACAACACCAACAGCTTTCTATCGAGATATCGCTTACCAAGTTATTTAAATGTATGACTTTGGCTTAcagacaaaaattaacCTCACCAAAATGGAATCGTTTCAAAGGTATAAAACTCCGGTGGAAGGACAAGATCAGACTCAACAACGTTATATGGAGATGTTGGCACATGCAATtcataaagaaacaaaatacgCTGGTGTGCCAGTTCGCTTCACCACTAGATGTTGATACTCACGTAAAACCAGAGACAACAATATTAGAAGGCAAATATTGGAAACGTAGAGCAGAAGCAGTTATAGCAGAATATAAAAAATGGCGGATGTTTCATATAATGCGGCTCCTTGGCAAGGGGGACCCTGCCGTCCAAGACACGATATCGGACATGGACACGGTGGAATCGTTCTCGCAATGCAGCGACCTCGCGGGCAACATGTTGACGGACGAGGACTACCTCAACTTCATGAGTGACACACTTTTCTCCACTATTACCAATCATCAACCCTTCGCATTTCCCGATTGCAGGGAAATTGCAAGAGGCGCTAGTTTAGCTGACTTCATTCAGCCAAGCTTAGGTCCTTTGCAGCCTAATCTCGATGATTTTATGGACACATTGGAACCGCTTCAAGAACTCCTGTCATCAACGTCTAGGTTACCGCCAGTACCGGAAGAAAGCCCCCTTCCCGCCGAAGACTCGATTTACCGGAGTGGTATGTCAGTGGACTCCTACAGTTCACAAGGATACAGTCAGAATACTGCAGCCGTCACGATGCCGACCAGTCAAATGTCCATACACGGTACCAGTAACAATACTCAAATGTTAATGTCGGAGGAGTCGATAAAAAACGAGCAGATGCACGCTTACGGCAGCTCGCGGATGTTCAGCCACGGCCAGGAGATGCAGGGCGGCATGATGGGTGCGCAGGAGATGATGACGTCATTCCCCTCCAGCTCTTACGAGGACACTCAGATTCAGAGCTCTGGTTACGGCGGCAAGAACGCCAGGATGCAACATGTCAATGCACCCAAAATTGTCACGCAGTCAGATTCTTACTATAAGTATAACTCAGCCGTCCCCCCATCCCAAACGGCGCCGGAGACGGTGACCCTGCTGCAGCAGCCGGTGCAGAGCTCCAAGTACGCGTCGACGATCGTGATCCAGGCGCGGCCCGGGTACCGCGACAAGCCGCGCCGCATGCCGCACTActccgcgcccgcgccgcagcAGTACTACTCGCCGCCTATGCAGGCTGCAAGTTCAGGCGCCCAAAGCTACGAGTCGCGCGGCCCCCGCCAGCCGAGTGGGTCCGGCGCGATGCAGTACCTCCAGCCGACGCAGGAGTacgcccccgcgcccgccgcccccgcgccgCTGGCGCCCCCGACGCGATCCTTCAAGATGCCCTCGCCGCCGTTGGTGCCGGCCAGCTCGCATCAGATCCAAGGCCCGAGCACGTCCAGCTCAACAAGCGGCTCCGTCAGTCCGGGCGCGCGCGCCGCCAAGGAGCAGTTCCGCTCGCACAGCCTGCCGCTCGGCGCGCAGCTCAACGCGGACTGGTCGCTCAGCGCGCcgccgcacgcgcacgcgcatgCCGTAGCGCTCGACGCGCACTCCAGGCACGCCTCCAGGCAGCGCGAGTCGTCTGGCAGCTCGCTGCGCCTGCGCTCCCGCTCGACGTCGAGCGGCGCGGACCCCCCGGGCGCCCCCGGcggccccccgcgccccccgccgcCGCTCAACAGCGTCGCGTCCGAGCCCAGCCTGCCGCAGGCCACAGTCATGCTCGCGCAACTGCTCTCCGCGCAACATTCGAAGAGCATGTACAAGCTGAACAGCTCGGAGGATTTGGCAGGAGGGCCTGAACCCGTGCAGTCTCCCATAAGGAAAGGGCAACCTTCGCCTATAGGCAGTGACGTCATGTCACCGCACCAGtcGCTGTCGCCGCCGGGCTCGCCGGGCTCCCCGCGCGCCGGCTCCCCGCAGCCGCGCCGCACGCACCTCCACGCGGAGCAGAAGCGCCGCTACAACATCAAGAACGGCTTCGACACCCTGCAGGCCCTCATCCCGCATCTCAACACCAACCCCGCCGCCAAGTACAAGTACTTCCAGTCGCACCTCCACGCGGAGCAGAAGCGCCGCTACAACATCAAGAACGGCTTCGACACCCTGCAGGCCCTCATCCCGCACCTCAACACCAACCCCGCCGCCAAGGTATGCTTCAGTACAAGTACTTCCAGTCGCACCTCCACGCGGAGCAGAAGCGCCGCTACAACATCAAGAACGGCTTCGACACCCTGCAGGCCCTCATCCCGCATCTCAACACCAACCCCGCCGCCAAGGTATGCTTCAGTACAAGTACTTCCAGTCGCACCTCCACGCGGAGCAGAAGCGCCGCTACAACATCAAGAACGGCTTCGACACCCTGCAGGCCCTCATCCCGCACCTCAACACCAACCCCGCCGCCAAGGTATGCTTCAGTACAAGTACTTCCAGTCGCACCTCCACGCGGAGCAGAAGCGCCGCTACAACATCAAGAACGGCTTCGACACCCTGCAGGCCCTCATCCCGCATCTCAACACCAACCCCGCCGCCAAGGTATGCTTCAGTACAAGTACTTCCAGTCGCACCTCCACGCGGAGCAGAAGCGCCGCTACAACATCAAGAACGGCTTCGACACCCTGCAGGCCCTCATCCCGCACCTCAACACCAACCCCGCCGCCAAGGTATGCTTCAGTACAAGTACTTCCAGTCGCACCTCCACGCGGAGCAGAAGCGCCGCTACAACATCAAGAACGGCTTCGACACCCTGCAGGCCCTCATCCCGCACCTCAACACCAACCCCGCCGCCAAGGTATGCTTCAGTACAAGTACTTCCAGTCGCACCTCCACGCGGAGCAGAAGCGCCGCTACAACATCAAGAACGGCTTCGACACCCTGCAGGCCCTCATCCCGCACCTCAACACCAACCCCGCCGCCAAGGTATGCTTCAGTACAAGTACTTCCAGTCGCACCTCCACGCGGAGCAGAAGCGCCGCTACAACATCAAGAACGGCTTCGACACCCTGCAGGCCCTCATCCCGCATCTCAACACCAACCCCGCCGCCAAGGTATGCTTCAGTACAAGTACTTCCAGTCGCACCTCCACGCGGAGCAGAAGCGCCGCTACAACATCAAGAACGGCTTCGACACCCTGCAGGCCCTCATCCCGCATCTCAACACCAACCCCGCCGCCAAGGTATGCTTCAGTACAAGTACTTCCAGTCGCACCTCCACGCGGAGCAGAAGCGCCGCTACAACATCAAGAACGGCTTCGACACCCTGCAGGCCCTCATCCCGCACCTCAACACCAACCCCGCCGCCAAGGTATGCTTCAGTACAAGTACTTCCAGTCGCACCTCCACGCGGAGCAGAAGCGCCGCTACAACATCAAGAACGGCTTCGACACCCTGCAGGCCCTCATCCCGCACCTCAACACCAACCCCGCCGCCAAGGTATGCTTCAGTACAAGTACTTCCAGTCGCACCTCCACGCGGAGCAGAAGCGCCGCTACAACATCAAGAACGGCTTCGACACCCTGCAGGCCCTCATCCTGCATCTCAACACCAACCCCGCCGCCAAGGTATGCTTCAGTACAAGTACTTCCAGTCGCACCTCCACGCGGAGCAGAAGCGCCGCTACAACATCAAGAACGGCTTCGACACCCTGCAGGCCCTCATCCCGCACCTCAACACCAACCCCGCCGCCAAGGTATGCTTCAGTACAAGTACTTCCAGTCGCACCTCCACGCGGAGCAGAAGCGCCGCTACAACATCAAGAACGGCTTCGACACCCTGCAGGCCCTCATCCCGCACCTCAACACCAACCCCGCCGCCAAGGTATGCTTCAGTACAAGTACTTCCAGTCGCACCTCCACGCGGAGCAGAAGCGCCGCTACAACATCAAGAACGGCTTCGACACCCTGCAGGCCCTCATCCCGCACCTCAACACCAACCCCGCCGCCAAGGTATGCTTCAGTACAAGTACTTCCAGTCGCACCTCCACGCGGAGCAGAAGCGCCGCTACAACATCAAGAACGGCTTCGACACCCTGCAGGCCCTCATCCCGCATCTCAACACCAACCCCGCCGCCAAGGTATGCTTCAGTACAAGTACTTCCAGTCGCACCTCCACGCGGAGCAGAAGCGCCGCTACAACATCAAGAACGGCTTCGACACCCTGCAGGCCCTCATCCCGCACCTCAACACCAACCCCGCCGCCAAGGTATGCTTCAGTACAAGTACTTCCAGTCGCACCTCCACGCGGAGCAGAAGCGCCGCTACAACATCAAGAACGGCTTCGACACCCTGCAGGCCCTCATCCCGCACCTCAACACCAACCCCGCCGCCAAGGTATGCTTCAGTACAAGTACTTCCAGTCGCACCTCCACGCGGAGCAGAAGCGCCGCTACAACATCAAGAACGGCTTCGACACCCTGCAGGCCCTCATCCCGCACCTCAACACCAACCCCGCCGCCAAGATAAGTAAAGCTGCAATGTTACAAAAGGGTGCCGAATACATCAAGCAGTTGAAGGCTGAgagaaatcaaataaaagaagaaatggAAAGCCTGAGACAACAAACAGAAAGCTTAAATAATTCTATATCAAACTGCCACTCGCTGCTGCCAGCGACGGGCGCCCCGGTGTCGCGCGCACGCGCAGGCCGGCTGCGCGAGATGTTCGCGCGCCACGTCGCCAACCGGACCATGCACAACTGGAAGTATTGGCTCCAACTAGTACAGTTTAGCGTGGTAGCCGCGGCGCTAGTGGACTCGTTCAGCGCGTGCGTGTCGTGCGGCAGCGGCGCCGACCTCGTGCGCACTACGCTGCTGTGGGCCGAGCAACACTGCTCGCTGTCGGAGATGCGCCCCGCCGTACTAAATTCCCTCCGAGTGCTGTGTACGACGACAGACATTCTGACGAGCCCCGAGCGGTTGCCGGAGGAGGCGCGGCAGGCCGTGGCGTCCAGCGCCGCCGTCAAGACCGAGCCCACATAA
Protein Sequence
MTHVEKRPPRPGKETIHSGHFMVSHFEAEAQDEFDDLAVPVPDEEQNVQKVSVVATYTVPVSKEQFTPSDKIEPKQHQQLSIEISLTKLFKCMTLAYRQKLTSPKWNRFKGIKLRWKDKIRLNNVIWRCWHMQFIKKQNTLVCQFASPLDVDTHVKPETTILEGKYWKRRAEAVIAEYKKWRMFHIMRLLGKGDPAVQDTISDMDTVESFSQCSDLAGNMLTDEDYLNFMSDTLFSTITNHQPFAFPDCREIARGASLADFIQPSLGPLQPNLDDFMDTLEPLQELLSSTSRLPPVPEESPLPAEDSIYRSGMSVDSYSSQGYSQNTAAVTMPTSQMSIHGTSNNTQMLMSEESIKNEQMHAYGSSRMFSHGQEMQGGMMGAQEMMTSFPSSSYEDTQIQSSGYGGKNARMQHVNAPKIVTQSDSYYKYNSAVPPSQTAPETVTLLQQPVQSSKYASTIVIQARPGYRDKPRRMPHYSAPAPQQYYSPPMQAASSGAQSYESRGPRQPSGSGAMQYLQPTQEYAPAPAAPAPLAPPTRSFKMPSPPLVPASSHQIQGPSTSSSTSGSVSPGARAAKEQFRSHSLPLGAQLNADWSLSAPPHAHAHAVALDAHSRHASRQRESSGSSLRLRSRSTSSGADPPGAPGGPPRPPPPLNSVASEPSLPQATVMLAQLLSAQHSKSMYKLNSSEDLAGGPEPVQSPIRKGQPSPIGSDVMSPHQSLSPPGSPGSPRAGSPQPRRTHLHAEQKRRYNIKNGFDTLQALIPHLNTNPAAKYKYFQSHLHAEQKRRYNIKNGFDTLQALIPHLNTNPAAKVCFSTSTSSRTSTRSRSAATTSRTASTPCRPSSRISTPTPPPRYASVQVLPVAPPRGAEAPLQHQERLRHPAGPHPAPQHQPRRQGMLQYKYFQSHLHAEQKRRYNIKNGFDTLQALIPHLNTNPAAKVCFSTSTSSRTSTRSRSAATTSRTASTPCRPSSRTSTPTPPPRYASVQVLPVAPPRGAEAPLQHQERLRHPAGPHPAPQHQPRRQGMLQYKYFQSHLHAEQKRRYNIKNGFDTLQALIPHLNTNPAAKVCFSTSTSSRTSTRSRSAATTSRTASTPCRPSSRISTPTPPPRYASVQVLPVAPPRGAEAPLQHQERLRHPAGPHPASQHQPRRQGMLQYKYFQSHLHAEQKRRYNIKNGFDTLQALIPHLNTNPAAKVCFSTSTSSRTSTRSRSAATTSRTASTPCRPSSRTSTPTPPPRYASVQVLPVAPPRGAEAPLQHQERLRHPAGPHPASQHQPRRQGMLQYKYFQSHLHAEQKRRYNIKNGFDTLQALIPHLNTNPAAKVCFSTSTSSRTSTRSRSAATTSRTASTPCRPSSRTSTPTPPPRYASVQVLPVAPPRGAEAPLQHQERLRHPAGPHPAPQHQPRRQGMLQYKYFQSHLHAEQKRRYNIKNGFDTLQALIPHLNTNPAAKVCFSTSTSSRTSTRSRSAATTSRTASTPCRPSSRTSTPTPPPRYASVQVLPVAPPRGAEAPLQHQERLRHPAGPHPAPQHQPRRQGMLQYKYFQSHLHAEQKRRYNIKNGFDTLQALIPHLNTNPAAKISKAAMLQKGAEYIKQLKAERNQIKEEMESLRQQTESLNNSISNCHSLLPATGAPVSRARAGRLREMFARHVANRTMHNWKYWLQLVQFSVVAAALVDSFSACVSCGSGADLVRTTLLWAEQHCSLSEMRPAVLNSLRVLCTTTDILTSPERLPEEARQAVASSAAVKTEPT

Similar Transcription Factors

Sequence clustering based on sequence similarity using MMseqs2

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