Dpla000282.1
Basic Information
- Insect
- Drepanosiphum platanoidis
- Gene Symbol
- -
- Assembly
- GCA_948098885.1
- Location
- OX402533.1:6708475-6726787[+]
Transcription Factor Domain
- TF Family
- THAP
- Domain
- THAP domain
- PFAM
- PF05485
- TF Group
- Zinc-Coordinating Group
- Description
- The THAP domain is a putative DNA-binding domain (DBD) and probably also binds a zinc ion. It features the conserved C2CH architecture (consensus sequence: Cys - 2-4 residues - Cys - 35-50 residues - Cys - 2 residues - His). Other universal features include the location of the domain at the N-termini of proteins, its size of about 90 residues, a C-terminal AVPTIF box and several other conserved residues. Orthologues of the human THAP domain have been identified in other vertebrates and probably worms and flies, but not in other eukaryotes or any prokaryotes [1].
- 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 2.1e-11 5.6e-09 36.4 0.4 1 85 6 78 6 80 0.79 2 3 3.8e-09 1e-06 29.2 0.5 1 85 401 483 401 485 0.68 3 3 4.6e-15 1.3e-12 48.1 1.2 1 86 506 582 506 583 0.85
Sequence Information
- Coding Sequence
- ATGAATTTGCTCCGTTGTAACGTTTACAAGTGTAAAACCACTGCCAACGACGGGATCGAGTTGTACAAGTTCCCGTTCCACAGCAGAGCGTTAATGATCACTTGGAACATGGCGGTGAACCGTGTGAATTGGAAAGCGGATAACAACAGTCGGATTTGCAGCCTTCACTTTAGCGACAACGACTATGAATACATTGCCACAAAAAGAGTGCTCAAGAAGCGTGCTTCTCCCTTCTACAATGGTTCTGATAAGCCCTGTTATAATAACAATGACCTCTGTGAAACTAATTTGGACAATGTCTCGTCTGCCAGTGACATGCACCGTTCTGATATACAAACCATCAATTTACAGAATTGTCCTGGTGATATTGATAACATTAATACTACAACTATTTACCCTACTTCACATGAAGCTCCGGGTCCAAGTAACCATATATTACAAAATTCCAACTCTGATAATAACGAAGATATAGTTATGATTGATGATGATTTCTCAACTGAAATAGATATTGAGTCTTCAACTGCAACTAATGCTAAAGCTATAAAACAGTTGAATGATAACAAATGTGCTGTACCGGGTCCAAGTAACCATATATTACAAAATTCCAACTCTGATAATAATGAAGATATAGTTATGATTGATGATGATTTCTCAACTGAAATAGATATTGAGTCTTCAACTGCAACTAATGCTAAAGCTATAAAACAGTTGAATGATAACAAATGTGCTGTACCGGGTCCAAGTAACCATATATTACAAAATTCCAACTCTGATAATAACGAAGATATAGTTATGATTGATGATGATTTCTCAACTGAAATAGATATTGAGTCTTCAACTGCAACTAATGCTAAAGCTATAAAACAGCTGAATGATAACAAATGTGCTGTACCGGGTCCAAGTAACCATATATTACAAAATTCCAACTCTGATAATAACGAAGATATAGTTATGATTGATGATGATTTCTCAACTGAAATAGATATTGAGTCTTCAACTGCAACTAATGCTAAAGCTATAAAACAGCTGAATGATAACAAATGTGCTGTACCGGGTCCAAGTAACCATATATTACAAAATTCCAACTCTGATAATAACGAAGATATAGTTATGATTGATGATGATTTCTCAACTGAAATAGATATTGAGTCTTCAACTGCAACTAATGCTAAAGCTATAAAACAGTTGAATGATAACAAATGTGCTGTACCGTTGTGTCATGAAGGAGCTAGAAATATGTTTGACAGATTGTTTTTCATTCAATTTCCAAATAATTATGAATTGTCTCTTAAATGGTGGAAAATTTGTGGACGTGACGATCCATTTGATCCGTCATCGAAAATCTGTTCAATTCATTTTTTCGACTTTAACTTTTTCAATAGTCTGGTAGAAATAAATGGCAAAATTAGATCACAAACAATTTTAAAAACGAATAATATTGTTCCAACTCGCTTTTTAACTCAAAATGAGTACACGCTTTTTCAAAGAGAACACAGAAGAACTGATGGTGACAAATGCATTGTGAAAGACTGTAATAACACATTTTTAAAAGATGGCAAACAAATAAAATTTTTCAGATTTCCATTTGAAAACAAACCTTTACTTAAAATATGGTTAGATAATATTAAGTTATCTAATTTCCAGCCAACAGAAAGTGATACAATATGCTCTAATCATTTTGAATCTAATTGTATTGTGTGGAATAATAATATTTTGGAATTAATTAAGAATGCAACTCCATCGCTTACTCCAATGAACCCGTATGTTAAAAATTCTACAAATGTCCCTCTTCGAGACTCGCGCCTTAATTTGGATTTAAATCAAATTAAATTGACTAATTCAAATGAAAATGTGGCCAAAAAACGAAAGATTGAAAACAAAACGGTTGTACAAAGCGATTCACATAATAGCTTTGCCAACGTTCAACGACCAACACAATTGTTAATACCAATAACCTCTCTAATAAATTCAGCTGACTCGAATGTTAATAATGAAAATTCTAACACATCAGATGTTGACCGTATCCTTTCTGAAAATTTGGATAATAATGATGGCATTCAAGAATCGCAATCTGAACAGAATACCACACATGCTACAAAACAATCTCTTGAATCGTCTGATCAGGAAATTGTAGATGAAAATTCTAACACATCAGATGTTGACCGTATCCTTTCTGAAAATTTGGATAATAATGATGGCATTCAAGAATCGCAATCTGAACAGAATACCACACATGCTACAAAACAATCTCTTGAATCGTCTGATCAAACGATCAGAAAAATGTCTGACGATTCAAACGATATGAACTCGTCTTCCGATGATTACGATGATTACGATGATTACAGTCAATGTTCTTGTTGTGGAGAACATGAAGGGGTACAATATCTTAGAGAACATGGTGGAGAATATCATTATAATGACATTAGTGACGATGAGGAAGAAAGCCCAGAACAGGCAGAAAATATACAAAATGGATCTGATCTCTGGCATGATGATAAGTACATGGCACAACCCATACCTTTTACTGGTACAACAGGTCTTATCGTTTCACCTGCAGTAAAAGAGATGGACGCCACGTCAGCAAAAAATCATCTGGAAAGTGTTTGTATGAGCGAAAATCTGTCAAGTGATAAAGATGTTGGAGAACCTTCGCAATCTATAATGAAGGATACACCAAACAATTCCGAAAATATCAAATTATCAGAAAGCAATACTGAAAATGTGTTAAGGAAACGTATAAAACGGGATCCTCCACGTATCATTATGTGTATCGATTTGACAAGTGATCATGATGATGAAGGACCTTCTGATAATGTAAAAGAGATTGACTCCACATCAGCAAATAATCATTTGGAAAGTGTTTGTATGAGGGAAAAGTTGTCAAGTGATAAAGATGTTGGAGAACCTTCGAAACCAAACAATTCCGAAAATATCAAATTATCAGAAAGCAATACTGATAATGAAAATTCTAACACATCAGATGTTGACCGTATCCTTTCTGAAAATTTGGATAATAATGATGGCATTCAAGAATCGCAATCTGAACAGAATACCACACATGCTACAAAACAATCTCTTGAATCGTCTGATCAGGAAATTGTAGATGACAGGAGGATGGCTAGAAAAGCAAAAGATGTTATTTTAATTAATTTAATTGATGAAGAAGACATTGGAGAACATTCGCAATTTATAATGAAAGATCAACCAAAAAATTTTGAAACAATAAAATTGTCAGAAAGCAACACTGAAAATGCTGTAGTAGAAAAGATGATCCCTATGTTAGCAAAAAAACAATGTAAAGACGATTGTGTGTGTAAAGGGGCTTTGAGTTTTGATGATTTTGCACAATATGCAGAAACTAGAGTAAAAAACCAACCAAAAACTACAAAAACAATCAAATTATCGGAAAACAACACTAAAGATGTAAAAGAGATGGACTCCACGTCAGCAAAAAATCATTTGGAAAATGTTTGCATGAGTGAAAAGTTGTCAAGTGATAAAGATGCTGGAGAACCTTCGCAATCTATAATGAAGGGCACACCAAACAATTCCGAAAATATCAAATTATCAGAAAGCAATACTGATAATGTAAAAGAGATGGACTCCACGTCAGCAAAAAATCATTTGGAAAATGTTTGCATGAGTGAAAAGTTGTCAAGTGATAAAGATGCTGGAGAACCTTCGCAATCTATAATGAAGGGCACACCAAACAATTCCGAAAATATCAAATTATCAGAAAGCAATACTGATAATGTAAAAGAGATGGACTCCACGTCAGCAAAAAATCATTTGGAAAATGTTTGCATGAGTGAAAAGTTGTCAAGTGATAAAGATGCTGGAGAACCTTCGCAATCTATAATGAAGGGCACACCAAACAATTCCGAAAATATCAAATTATCAGAAAGCAATACTGATAATGTAAAAGAGATGGACTCCACGTCAGCAAAAAATCATTTGGAAAATGTTTGCATGAGTGAAAAGTTGTCAAGTGATAAAGATGCTGGAGAACCTTCGCAATCTATAATGAAGGGCACACCAAACAATTCCGAAAATATCAAATTATCAGAAAGCAATACTGATAATGTAAAAGAGATGGACTCCACGTCAGCAAAAAATCATTTGGAAAATGTTTGCATGAGTGAAAAGTTGTCAAGTGATAAAGATGCTGGAGAACCTTCGCAATCTATAATGACGGGCACACCAAACAATTCCGAACTTACCGAAATAACTATGTTCAAGAATCCATATGCGTTTAGGAAACTTAGAAAACGGGGTCCTCCACGTATCGCTATGTGTATCGATTTGACAAGTGAGCCTGATGATGAAGGACCTTCTGATAATGTAAAAGAGATGGACTCCACGTCAGCAAAAAATCATCTGGAAAGTGTTTGTATGAATGAAAAGTTGTCTAATAATGATGATGAAGGACCTTCACAATCTATAGTGAAAGGCCAACTAAAATGTTCCAATGAATTAAAATTAACAGAACCCGTCACTGAAAATGTGTTAAGGAAACGTATAAAACGGGATCCTCCACTTATCATTATGTGTATCGATTTGACAAGTGATCATGATGATGAAGGACCTTCTGATAATGTAAAAGAGATGGACTCCACGTCAGCAAATAATCATTTGGAAAGTGTTTGTATGAGTGAAAAGTTGTCAAGTGATAAAGATGTTGGAGAACCTTCGCAACCAAATAATTCCGAAAATATAAAATTATCGGAAAACAACACTAAAGATGAAAATTCTAACACATCAGATGTTGACCGTATCCTTTCTGAAAATTTGGATAATAATGATGGCATTCAAGAATCGCAATCTGAACAGAATACCACACATGCTACAAAACAATCTCTTGAATCGTCTGATCAAACGATCAGAAAAATGTCTGACGATTCAAACGATATGAACTCGTCTTCCGATGATTACGATGATTACGATGATTACAGTCAATGTTCTTGTTGTGGAGAACATGAAGGGGTACAATATCTTAGAGAACATGGTGGAGAATATCATTATAATGACATTAGTGACGATGAGGAAGAAAGCCCAGAACAGGCAGAAAATATACAAAATGGATCTGATCTCTGGCATGATGATAAGTACATGGCACAACCCATACCTTTTACTGGTACAACAGGTCTTATCGTTTCACCTGCAGTAAAAGAGATGGACGCCACGTCAGCAAAAAATCATCTGGAAAGTGTTTGTATGAGCGAAAATCTGTCAAGTGATAAAGATGTTGGAGAACCTTCGCAATCTATAATGAAGGATACACCAAACAATTCCGAAAATATCAAATTATCAGAAAGCAATACTGAAAATGTGTTAAGGAAACGTATAAAACGGGATCCTCCACGTATCATTATGTGTATCGATTTGACAAGTGATCATGATGATGAAGGACCTTCTGATAATGTAAAAGAGATTGACTCCACGTCAGCAAAAAATCATCTGGAAAGTGTTTGTATGAGTGAAAAGTTGTCAAGTGATAAAGATGTTGGAGAACCTTCGCAACCAAACAATTCCGAAAATATAAAATTATCGGAAAACAACACTAAAGATGTAAAAGAGATGGACTCCACGTCAGCAAAAAATCATCTGGAAAGTGTTTGTATGAGCGAAAATTTATCAAGTGATAAAGATGTTGGAGAACCTTCGCAATCTATAATGAAGGGCACACCAATCAATTCCGAAAATATCAAATTATCAGAAAGCAATACTGATAATGTAAAAGAGATGGACTCCACGTCAGCAAAAAATCATCTGGAAAGTGTTTGTACGAATGAAAATTTGTCAAATGATGATGATGAAGGACCTTCACAATTTATAGTGAAAGGCCAACTAAAATGTTCCAAAGAATTAAAATTAACAGAACCCATCACTGAAAATGTAACTAAGATATTTCCAAAATCAGGGAAAGATCACTGTAAAGGTGATTGTTTGTGTGAAGGAACGTTGAGTTTTGATAATTTTGCACCATTTCCGCAAATGAGAGCAAAAGGCAAACCAAAAAATTCAAAAAAAAACAAATTATCAGAAAACCCCACTGTAAATGTAAAAGAGACGATCCCTCAGTTAGCAAAACATCCCCGTGAAGGTGAATGTATTTGTGAAGGGATTTTGAGTTTTGATGATTTTGCAACAGTTTCGAAAACTAAATTAGATGGCCAACCAAAAAATGCAAAAGAAATCAAATTATCAAAGAACAACACTAAAAATGTAAAGAAGATGGTTACCAATTCAGCAAAAAATCACTGTGAATGTAATTATATGAGTGAAGAGGAGTGGTCGAGTGATGAAAACGTTGGAGAACTTTCGCTATCTATTCTGAAAGGCCAACGAAAAAGTTCCAAAGAAATGAAATCATCTGAAAGCAACACTGAAAATGTAAAAAAGATGGTTCCCAAGTCAGCAAAAAATCATAAAGAATGTGTTTGTACGAGTGTAAAATCGTCGAGTGTTAAGATAGAAGAACTTTTACAATCTGTAATGAAGGAGGAACAAATAAAAGCAAGAAAACTCCAAATATCTGATAGCAACTTTGAAAATGTGAAAAATATGGCATTCAAGTCAGCACTAGATCAAGTCAATCGTATGGGCTCTAAGTTGTCTTCTGATGCAGACGATTGTGATAATTCAGATGACGATGATCTTGTAGAAGCTATGGTTAGAGTAACTGCAGGATGTTTTTTGGATAATCAGGAGTTGAGAGAATGCCGCGGTGAAATGCTTCCTGCTTATTGTGAATGTGAATCTCAATGCTATACCCATCTATCTGGCCCGGAGCGGATTGAAATATATAATGAATTTAATAAATTGCCCAATGTGTCTGAACAAAACTGTAGGATTGCTGAGTTAGTATCATTAAGCACAGTTAAAAAGCAAGATGATTCGTCGCATAATATTACTACGTATCATTTGAAAAGAAAAGACGAATTGATAACGGTGTGCCATGTGTTTTTCATAAACACATTAGGTATCACAAAAAAACGAATTGATGCTATTCTGCAACCAGATATTTATAGTTGGTATTCTACCAAAACTTTAGCATTGCAAGACATTCATTTGAATCAGTCTGTTGTTGTTGAAGAAGAGACTGACACGACAGATTTTATTCAAAATTCTTTCGAATTGTTAGAAAAGGACTACGATTTGTTTTTGCCCGATGTCGATCAAAAGATTCCCATAGAGAATGTACCTGTAGAAGAATTTAAAAACGTGATTTCGTTCATCAAAAATATTCCTAGATTAGTAACTTCATGCGATGTACCCGGAAGTGATAAAAAAAAATTTTTCGAAGTATCTTTGGATGTGAATTTTATGTATAAGTTCTATTCCGAAACTTTTTTGGGAAAAAAGGCTAATCCTCCGTATACATGTAATCAATTTAAAAAAATATATAATATTTACATGAAATTGTTTATAAAAAAGCAATAA
- Protein Sequence
- MNLLRCNVYKCKTTANDGIELYKFPFHSRALMITWNMAVNRVNWKADNNSRICSLHFSDNDYEYIATKRVLKKRASPFYNGSDKPCYNNNDLCETNLDNVSSASDMHRSDIQTINLQNCPGDIDNINTTTIYPTSHEAPGPSNHILQNSNSDNNEDIVMIDDDFSTEIDIESSTATNAKAIKQLNDNKCAVPGPSNHILQNSNSDNNEDIVMIDDDFSTEIDIESSTATNAKAIKQLNDNKCAVPGPSNHILQNSNSDNNEDIVMIDDDFSTEIDIESSTATNAKAIKQLNDNKCAVPGPSNHILQNSNSDNNEDIVMIDDDFSTEIDIESSTATNAKAIKQLNDNKCAVPGPSNHILQNSNSDNNEDIVMIDDDFSTEIDIESSTATNAKAIKQLNDNKCAVPLCHEGARNMFDRLFFIQFPNNYELSLKWWKICGRDDPFDPSSKICSIHFFDFNFFNSLVEINGKIRSQTILKTNNIVPTRFLTQNEYTLFQREHRRTDGDKCIVKDCNNTFLKDGKQIKFFRFPFENKPLLKIWLDNIKLSNFQPTESDTICSNHFESNCIVWNNNILELIKNATPSLTPMNPYVKNSTNVPLRDSRLNLDLNQIKLTNSNENVAKKRKIENKTVVQSDSHNSFANVQRPTQLLIPITSLINSADSNVNNENSNTSDVDRILSENLDNNDGIQESQSEQNTTHATKQSLESSDQEIVDENSNTSDVDRILSENLDNNDGIQESQSEQNTTHATKQSLESSDQTIRKMSDDSNDMNSSSDDYDDYDDYSQCSCCGEHEGVQYLREHGGEYHYNDISDDEEESPEQAENIQNGSDLWHDDKYMAQPIPFTGTTGLIVSPAVKEMDATSAKNHLESVCMSENLSSDKDVGEPSQSIMKDTPNNSENIKLSESNTENVLRKRIKRDPPRIIMCIDLTSDHDDEGPSDNVKEIDSTSANNHLESVCMREKLSSDKDVGEPSKPNNSENIKLSESNTDNENSNTSDVDRILSENLDNNDGIQESQSEQNTTHATKQSLESSDQEIVDDRRMARKAKDVILINLIDEEDIGEHSQFIMKDQPKNFETIKLSESNTENAVVEKMIPMLAKKQCKDDCVCKGALSFDDFAQYAETRVKNQPKTTKTIKLSENNTKDVKEMDSTSAKNHLENVCMSEKLSSDKDAGEPSQSIMKGTPNNSENIKLSESNTDNVKEMDSTSAKNHLENVCMSEKLSSDKDAGEPSQSIMKGTPNNSENIKLSESNTDNVKEMDSTSAKNHLENVCMSEKLSSDKDAGEPSQSIMKGTPNNSENIKLSESNTDNVKEMDSTSAKNHLENVCMSEKLSSDKDAGEPSQSIMKGTPNNSENIKLSESNTDNVKEMDSTSAKNHLENVCMSEKLSSDKDAGEPSQSIMTGTPNNSELTEITMFKNPYAFRKLRKRGPPRIAMCIDLTSEPDDEGPSDNVKEMDSTSAKNHLESVCMNEKLSNNDDEGPSQSIVKGQLKCSNELKLTEPVTENVLRKRIKRDPPLIIMCIDLTSDHDDEGPSDNVKEMDSTSANNHLESVCMSEKLSSDKDVGEPSQPNNSENIKLSENNTKDENSNTSDVDRILSENLDNNDGIQESQSEQNTTHATKQSLESSDQTIRKMSDDSNDMNSSSDDYDDYDDYSQCSCCGEHEGVQYLREHGGEYHYNDISDDEEESPEQAENIQNGSDLWHDDKYMAQPIPFTGTTGLIVSPAVKEMDATSAKNHLESVCMSENLSSDKDVGEPSQSIMKDTPNNSENIKLSESNTENVLRKRIKRDPPRIIMCIDLTSDHDDEGPSDNVKEIDSTSAKNHLESVCMSEKLSSDKDVGEPSQPNNSENIKLSENNTKDVKEMDSTSAKNHLESVCMSENLSSDKDVGEPSQSIMKGTPINSENIKLSESNTDNVKEMDSTSAKNHLESVCTNENLSNDDDEGPSQFIVKGQLKCSKELKLTEPITENVTKIFPKSGKDHCKGDCLCEGTLSFDNFAPFPQMRAKGKPKNSKKNKLSENPTVNVKETIPQLAKHPREGECICEGILSFDDFATVSKTKLDGQPKNAKEIKLSKNNTKNVKKMVTNSAKNHCECNYMSEEEWSSDENVGELSLSILKGQRKSSKEMKSSESNTENVKKMVPKSAKNHKECVCTSVKSSSVKIEELLQSVMKEEQIKARKLQISDSNFENVKNMAFKSALDQVNRMGSKLSSDADDCDNSDDDDLVEAMVRVTAGCFLDNQELRECRGEMLPAYCECESQCYTHLSGPERIEIYNEFNKLPNVSEQNCRIAELVSLSTVKKQDDSSHNITTYHLKRKDELITVCHVFFINTLGITKKRIDAILQPDIYSWYSTKTLALQDIHLNQSVVVEEETDTTDFIQNSFELLEKDYDLFLPDVDQKIPIENVPVEEFKNVISFIKNIPRLVTSCDVPGSDKKKFFEVSLDVNFMYKFYSETFLGKKANPPYTCNQFKKIYNIYMKLFIKKQ
Similar Transcription Factors
Sequence clustering based on sequence similarity using MMseqs2
- 100% Identity
- -
- 90% Identity
- -
- 80% Identity
- -