Basic Information

Gene Symbol
TSC22D1
Assembly
None
Location
scaffold6:877229-880261[+]

Transcription Factor Domain

TF Family
TSC22
Domain
TSC22 domain
PFAM
PF01166
TF Group
Basic Domians group
Description
These proteins are highly similar in a region of about 50 residues that include a conserved leucine-zipper domain most probably involved in homo- or hetero-dimerisation. Drosophila protein bunched [1] (gene bun) (also known as shortsighted), a probable transcription factor required for peripheral nervous system morphogenesis, eye development and oogenesis.
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 3 1 2.5e+04 -7.9 8.4 40 53 654 667 601 679 0.65
2 3 1 2.5e+04 -4.2 2.6 36 50 696 710 685 717 0.58
3 3 1.5e-29 3.7e-25 88.3 3.1 1 57 944 1000 944 1000 0.98

Sequence Information

Coding Sequence
ATGGATGAAAGCTGCATTGATCAAAAAATAAATGATACACAATCTGATGTGAAACAAAAGTGCATGGAAAATACTAATTCATTACCACTTTCTGGTGACAATTGTGTCAATTCCAAAAAAACTTCATTTGAAATCACTAGCATCACAGAGCCAAATAATATTGACGATAATGATGATGACTCACCAGATACTGAACCCCATTCTCATGACAACAGGGCAGATATCAGGCATGATGTAGATTTGCAAAACTATGCTGATAATATGGTTGTTTATAATACATGTAATGATATGGGTAGTTCAGCACCAGTTATACCCACCAGTTCTCAGTATGGTTTAGCAATTGTTGACAATTTAGATAGTGTACATTCCCTAGGTTCTACAAAAAATGATGATAATCATGGAACAGATTTGAGTTTGCAAAAAAGTGACTGTGATGTTAATGGATTACAAAATAAAAATAGAAACGAGCGGTTCAAAGTAGTAAAGATTGAAAGTACAGAACCTTTTAAACGTGGACGTTGGGTTTGTATGGATTTTTTGGATCATTCAATGAATCAACAACCAGGAAACAATAATAAATCATCTATGGTAAATGGAGAAAGCAAAACATATCCTCAAATAAATGATATTGAAACACCTGATCCTGTTGACAATGGTCATCATGAATGCCCAGAGTACAGAGTTAGTACTAATAATGTGAGTACTTACACTACTAATTGTAATAACTCTGATAATTACAAGAGTCAGACTTCTACATATAGTATAGTTGTATCGTCTGGTGTAACCACTCCTATTCATAGTGCTTGTGTTTCACCTGGTCAAACTTTACAAACAAATATGCAAGTTCCAGTATTGACAAGTCAGTCCATTATTTCATCTGTACAGGTAACTCAACCACAAAGTCTTTCCCAAGTACAATTGCCTACACAACATAACATAAGTCAAAATTGTATGCAACATTCCAGCTTACAACCACACCAACTACAGCAAGTTATGGCTAACGCTGGAATTGTTCAACCACAATTACAACAGACACAACCTACATTAGGTGTTTTACATAGTCAAAATCAACCTATTCAACCACAACCAATCCAACATATGAACTCTGTGGAACAGCATAATGTTTCACAATCAATTCCACCACAATATCAACCGTCTTTGTCACAAGTTAATTTACAACAACAAATTATGCAGCACAATATGTCAGCCCAATTTCAAAAGACATATGTACCTCAAAATCAATCTGTTTTACCAAATTGTGCACCATTACAACAATCTATGAACCAAATTATTAATCAAGTTCCTCAATATTATAATTCTCCTTCAGTTCAGACTCAAAATGTTTCCTCTGAACCGTCATCAGTTTCTATGTCTAATCAACATATTACTCCACAGCAGTTTCAATCAATACCTATGCAAACTCAATCATTACAAAACCATGTACAATTACAACAAAATCAACAACAGCTGCCTCCTGTTCAACAGATACAACAACAAACTAGTCAACAACAACCAATAGTTCCACAAAATCAAATGAATCCTCAAATTGTACAACAAAATCCACAGTTGACTCACCAATCATCAATTTCACAGCCTAGTCAATCTCAGTCAGTACCTCAACAAGTATCTCAGCAACATATTCAACAGTCACCACAAACACAACAAACACATGTTCAACAAGTTTCTTCATCACAGCAACAACAACAAGGTCCTCAACAAATTCAGCAAGTAAATCAACAAAATCAAAGTCCCCAAATTTCTCAGATTCATCAACAATTACCTCAACAAACACATCATATGACACAAATTTCTCAAATGACAAATCAATCCCAATCAATGCCACAAACAAATCAAATGCAGCAAATTTCTTTGCAAACTCAACAAATACCTCAAGCACAATTACAACAACACTCTAAACAAATTCAACAGGCCCAAATACAATCCCAATCCCAACAAATTAATCAGCAACAAATTTCTCAACAACAAATCAATCAAATTACTAGTCAAAATCAAATAATTCATCAAAATAATCAACAAATACCTCACCCTTCACAAATGATGTCTCAGGGACAACCTTTAAATCCACAAAATCAACAAGTTCAACAACAACAATCACAACAACAAATACAATTGACTCAGACTAGTCAATCTGGCCAATCAATGTCACAACAAATTTTACAGTCAAATCCAAATATGCCACAACAAAATCAAGTTATTACTCAACCACAACAATTAGGAATGACTCAGTCAAATACAACTATGGTATCTCCATCTCAGAACCAACAAGTTGTTCAGACTCAGCATATGCAACAATCAAACCAGCAGTATCAGCAAGCTCAACAAATTATGCAATCACAGGGACAACAAATACCAATACAAAGCAATCAATCAATTATGCATCAACCAACCTATTCTCAAGCACAAAGTTTAAATGCTATACAACTTCAACAAGCTGTGATGCAAATTCCTCCAAATACTGTCACTTCTAGCCAAATGCATGTTCAACAACAACCACAATTAGTACAATCAATGCTTCAACAATCACAAATGTCTATGTCACAAAATAATATGCAGTCACCAATACCACCAATGTCTCAACAGCAAATGACATATTCTTTGCAACAGCATGTACCTATTAATTCAAGTTATGTTGATAGTATACAGCATTGTTACATTCCTTCTCAGCAACAAATGTCTACTTATAAACCATTAGTAACAACGGTAGAAGCCATAAATCCACAACAAGAAGATAATATTAATGAAGATGTGGATAGCGCATCACACAATGCAGCAACTACAGTTGCTATTGATAATAAAATAGAACAAGCCATGGATTTGGTTAAAAGTCATTTAATGTATGCTGTCCGTGAAGAAGTTGAAGTACTCAAAGAAAAAATTGCTGAATTAATGGACAAAGTTGGTTTATTAGAAACAGAAAATTCCAATCTTAGAATGTTAGTTCCCCCAGAGATATTAGACCAATACAATCGTGAAAAACAAAAACCAACAAATAGCCAGTCAACTCATAATTAG
Protein Sequence
MDESCIDQKINDTQSDVKQKCMENTNSLPLSGDNCVNSKKTSFEITSITEPNNIDDNDDDSPDTEPHSHDNRADIRHDVDLQNYADNMVVYNTCNDMGSSAPVIPTSSQYGLAIVDNLDSVHSLGSTKNDDNHGTDLSLQKSDCDVNGLQNKNRNERFKVVKIESTEPFKRGRWVCMDFLDHSMNQQPGNNNKSSMVNGESKTYPQINDIETPDPVDNGHHECPEYRVSTNNVSTYTTNCNNSDNYKSQTSTYSIVVSSGVTTPIHSACVSPGQTLQTNMQVPVLTSQSIISSVQVTQPQSLSQVQLPTQHNISQNCMQHSSLQPHQLQQVMANAGIVQPQLQQTQPTLGVLHSQNQPIQPQPIQHMNSVEQHNVSQSIPPQYQPSLSQVNLQQQIMQHNMSAQFQKTYVPQNQSVLPNCAPLQQSMNQIINQVPQYYNSPSVQTQNVSSEPSSVSMSNQHITPQQFQSIPMQTQSLQNHVQLQQNQQQLPPVQQIQQQTSQQQPIVPQNQMNPQIVQQNPQLTHQSSISQPSQSQSVPQQVSQQHIQQSPQTQQTHVQQVSSSQQQQQGPQQIQQVNQQNQSPQISQIHQQLPQQTHHMTQISQMTNQSQSMPQTNQMQQISLQTQQIPQAQLQQHSKQIQQAQIQSQSQQINQQQISQQQINQITSQNQIIHQNNQQIPHPSQMMSQGQPLNPQNQQVQQQQSQQQIQLTQTSQSGQSMSQQILQSNPNMPQQNQVITQPQQLGMTQSNTTMVSPSQNQQVVQTQHMQQSNQQYQQAQQIMQSQGQQIPIQSNQSIMHQPTYSQAQSLNAIQLQQAVMQIPPNTVTSSQMHVQQQPQLVQSMLQQSQMSMSQNNMQSPIPPMSQQQMTYSLQQHVPINSSYVDSIQHCYIPSQQQMSTYKPLVTTVEAINPQQEDNINEDVDSASHNAATTVAIDNKIEQAMDLVKSHLMYAVREEVEVLKEKIAELMDKVGLLETENSNLRMLVPPEILDQYNREKQKPTNSQSTHN

Similar Transcription Factors

Sequence clustering based on sequence similarity using MMseqs2

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