Lstr012835.1
Basic Information
- Insect
- Laodelphax striatellus
- Gene Symbol
- -
- Assembly
- GCA_014465815.1
- Location
- CM025335.1:15056971-15079466[+]
Transcription Factor Domain
- TF Family
- zf-C2H2
- Domain
- zf-C2H2 domain
- PFAM
- PF00096
- TF Group
- Zinc-Coordinating Group
- Description
- The C2H2 zinc finger is the classical zinc finger domain. The two conserved cysteines and histidines co-ordinate a zinc ion. The following pattern describes the zinc finger. #-X-C-X(1-5)-C-X3-#-X5-#-X2-H-X(3-6)-[H/C] Where X can be any amino acid, and numbers in brackets indicate the number of residues. The positions marked # are those that are important for the stable fold of the zinc finger. The final position can be either his or cys. The C2H2 zinc finger is composed of two short beta strands followed by an alpha helix. The amino terminal part of the helix binds the major groove in DNA binding zinc fingers. The accepted consensus binding sequence for Sp1 is usually defined by the asymmetric hexanucleotide core GGGCGG but this sequence does not include, among others, the GAG (=CTC) repeat that constitutes a high-affinity site for Sp1 binding to the wt1 promoter [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 12 0.18 22 7.1 0.1 2 20 1620 1638 1619 1640 0.93 2 12 1.2e-05 0.0014 20.3 1.7 2 23 1918 1939 1917 1939 0.96 3 12 0.00078 0.093 14.5 0.6 1 23 2076 2098 2076 2098 0.97 4 12 3.8e-07 4.5e-05 25.0 0.2 1 23 2104 2126 2104 2126 0.98 5 12 7.7e-07 9.1e-05 24.0 1.2 3 23 2134 2154 2132 2154 0.97 6 12 0.00043 0.051 15.3 1.4 1 23 2160 2182 2160 2182 0.97 7 12 0.00025 0.03 16.1 3.5 1 23 2188 2211 2188 2211 0.97 8 12 5.9 7e+02 2.3 6.2 2 20 2219 2237 2218 2240 0.92 9 12 0.0034 0.4 12.5 1.4 1 23 2246 2270 2246 2270 0.98 10 12 0.034 4 9.4 1.6 1 23 2515 2538 2515 2538 0.95 11 12 0.012 1.4 10.8 1.3 3 23 2702 2723 2700 2723 0.93 12 12 0.0019 0.22 13.3 1.6 1 23 2739 2761 2739 2761 0.98
Sequence Information
- Coding Sequence
- ATGGAGGGTGCGGAATTGCCGAGGCCTGAGGCCAGTCCTCAATTATCTCCTTCCACAGGAGACAATTCTCCTCTACCTGCTTCAGGGAGTTTGATGACTGCGAAAGACAATCCCGCAGAAGGAAAATTTGCGAAGGAAACCACGTGTACAGAAAACGGCACAGGGACGACGTCAGACGTCTCCAACACTGGAGGAACTGCCAACACTGCTTGTTCAGAGGATGGGTCAGTTTCTGACCTTGATCAGCCGACTCCTGCCAAAAAGCCTAAGTTGCAGGAAAGTGCGCCGGCCACTTCAACCACCGACATGGTGAAAGGCGAAAATCCAACAATTGAACATGTAGTCCAAGTTGGTGAAGCTGGCGGCGAGCCGTCCTCAACCGAGCAATCGTCGAACGACGAAGAACAACCACCCAATGACGAACAGACGTCTGACGAACCTAATGACAGTAATGGAGATCCTAATGGAAGCGACGGCAGTGGAGGAGCAGAGCCACCTACTGAAGATGATGGAGAAGAAGACGAAGAGGGTGACGACGAAGAGGGCGATGGTGAAGAGGTTGAAGAGGAGCAGAACAATGAGGAAGAGAACGCTGAAGAAGAAGAGAGTTCTGACGAGATGGTGGATAACGAAGACAGTGAAACTCCGCCTTTAGTAATCAATCAGTTTGGTACAGATTTTGAAGAAACCGACTCTAGTAACTCGGTTAATTCAGAACCAGCGCCAGCTGTTCACGAAGAAGAACAAGAAACAAAAAGAACTGAACAACAAGTTGAGAAAGAACTGGATGCCTCGTCTGCTGTTGTACACGCAGGTGGCCCCGCAGGAGTTCAAGACCAGCCGGGCCCAAGTGGCGACAGAGGTCAGGGAGATACACCAGCTGGCAATGATCCGCTTGGGGACGACCATGAAGAAGACGAGCCTCCTGAACAGGAGGAGGAAGGGGGTCCCGGAGAGGATCTCAATGCTCAGCAGCCTCCGGAGCAACAAGCTCCGAACGATGATGGTCCAGAGGATCCACCTAATGAAGAAGAAGAAGATGACGAAGACGAGGCCGAAGATGAGTTAGACGATGGTGGAGGGGACAACAACGGTGATGATGGAGGAGAGAACAACGGTGGGGGTGGTGGAGGATTTGGACATCCGCCTGCGCCGGGACCTCCGTTTCTCGATTTGGGTGGCGGTGGAGATAGGCCAATACGTCGTGAACGTGGAAGGGGAGGGCACGTTCCAGGACCAGGCGGAGACCAACCGACTGATGCTATAGGTCAAGGACGCGGACATGGTCAAGCAGCCGCTCTGCAAGCCTCCTCCTCTAGCCAGCTCCTAGAACAACCAGCCGATGATGGGCTTTGTGAACTCCCATCATCCAATCCAGTAGTTGAACCTTTGGAAAGTATGACAAGCTCACTTTTGGAAGACAAAGTAGATTCCATTGATAATGTCGTGCGTACCAACAAAGTACCTGATAATAATTGTGAAACTTCCGCTAATGGCAGCTCGTCACTAAAAACCGATACAAGTTCGAAAACTCCTGTAGCTACAACGGAAATTAATAGTATTGAAGTACCCGAAACAAATGCGAGCTCTCAAATCGAGTCTAAACTTGACAGTTCATTTCTAGAAAATCGTGAAGTCGACAAACTCGTCGCGAAGGATGAGAATCAATCTGTCATGGCGGCAAAGACTTCGTTCGAGAAGTTTGTTGAAAATTCTGTTTCAAACGAGCAACAGACCATTTCAAATTCTTCAATAGATGAAAAAATATCAATTTCTGATAAAACTCAGGGCGTCGAAAACTCAGAATCAAATGATGAAGCATCTGACACTGATGTAAAAAATATTCAGGTCGAAACACCATCAATTGAAAATTTTCTGAAAGATGAGAAAGCTTCTAAAACCCAAACTGTTAATAAGCTCACAGTTAACGAAAGCAATACTTCTGAACCACCTAATGTTGAATCGAAAGATGAACCCAAGTCCTTGGAAAATCAAGTAGATAAATGGCCTTCTAACGATGATTCTATGAATCCCGTTAGTGAAATCGTTGACAATCCTCCTGTACCAACATTTTCCATTTCTGATAGTGACTCTAAAGACGGAATTCAATCTGTTAATGATCCAGTGGTAGATGTAAAAATTCCTGCCGACAATGAGCCTATAAAGTGTGACAATCCTGCGGAAGATGAAAACCTCGATGAAAACATGAAAACTTCCAGCGTTGAATCTAAAGATGAAGCTGAAATATGTTCGACTAATGATGATATCAAGTTGAAGTCAGAAGATCAACCTATGGTAAAGACTGAACAGAGTTCAATTGATAACTCTGGAAACGATTGTGATGAGCACAAATCAATCAGTGAAGTCGATAAGACTTTGGAAAGTGTTTTGGAAGACCAAACTGATGACAAGAATTTTGAAGATGAAAACGAATCTAAAATTGACAAAGAATCTCAAAATATTGAAGATGAAAACGAATCTAAAATTGACACAGAATCTCAAAATATTGAACGCGATGCAACCGCGGAGAAACCTGAACTTGATGTTATTCTGAAAACCCCCGGACAGAATACTATTGATTCTAAGAGCATAGCTGGCGTGTTGGTCACTTCGGAAATTAAACCTGCAGAAGCGTTGCCAATTGATAGTCCAAACAATGTGGTGGATAATGTAGAAGGCAATCTCCAAAGCCTGTGCGCCACTACTGGAAACGTTACTGAAACAAACACCCAATCCATTAGTGATGAAAAATACGAAGGCGATGAAGTACAGGAGACAAGCGATCCTGAGAAATCTTCATCCACTGAAGAACCTGACGGCAATGCAGAGAACGCTGGTTATACCGTATCGAAAGATACCCCGACTTCTAGCGACCAGGAGAGTGACCGTAATACAGAGAAGATTGGCGAAACCGTATCGGAAGACATCATGGCTTCTAGTGACCAGGAGGGTGACCGTAATGGAGAGAAGACTGACGAGACCGTAACGAAAGATACAACGACTTCTAGCGCCCAGGAGGATGACGGTAATGCACAGAAAACTGGCGACACCGTAACGATAGATACAACGACTTCTAGCGCCCAGGAGGGTGACAGTAATGCAGAGAAGACTGGCGAGACCGTATCGAAAGATACCACGACGTTTAGCGATCAGGAGTGTGACGGTAATGCAGAGAAGATTGGAGAGACCGTATCGAAAGATACCACGACGTCTAGCGATCAGGAGGGTGACGGTAATGCAGAGAGGACTGATGAGACCGTATCGAAAGATACCATGACGTCTAGAGACCAGGAAGGTGGCCGTAATGCAGAGAAGACTGGCGAGAACGTATCGAATGATACCACGATGTCTAGCGACCAGGAAGTTGACCGTAATGCAGAGAAGATTGGAGTGACCGTATCGAAAGATACCACGGCGTCTAGCGACCAGGAGGGTGACCGTAATGCAGAAAAGACTGGCGAGACCGTATTGATAGATACCACGACTTCTAGTGCCCAGGAGGATGACGGTAATGCAGAGACAACTGACGACACCGTAACGAAAGATACCTCGAATTCTAACGCCCAGGAGGGTGACCGTAATGCAGAGAAGATTGGAGAGACCGTATCGATAGATACCACGACTTCTAGCGATCAGGAGGGTGACCTTAATGCAGAGAAGATTGGCGAGACCGTATCGAAAGATAGCGTCCAGGAGGGTGACAGTAATGCAGAGAAGACTGATGAGATCGTATCGAAAGATACCACGACGTCTAGCGACCAGGAAGTTGACCGCAATGCAGAGAAGACTGGCGAGACCGTATCGGAAGATACCACGACGTCTAGCGACCAGGAGGGTGACAGTAATGCAGAGAAGACTGGCGAGACCGTATCGAAAGATAGCGCCCAGGAGGGTGACGGTAATGCAGAGAAGACTGAAGAGACCGTATCGAAAGATACCACGACGTCTAGCGATCAGGAGGGTGACCTTAATGCAGAGAAGATTGGCGAGACCGTATCGAAAGATATCCTGGCTTCTAGTGACCAGGAAGGTGACGGTAATGCAGAGAAGACTGGCGAGACCGTATCGAAAGATACCACGACGTCTAGTGATCTGGAGGGTGACCGTAATGCAGAGAAGACTGATGAGACTGTATCGAAAGATACCACGACGTCTAGCGACCGGGAGGGTGACGGTAATGCAGAGAAAACTGGCGACACTGTAATGAAAGATACCACGACATCTAGCGACCTGGAAGGTGACGGTAATGCAGAGAAGATTGGCGAGACCGTATCAAAAGATACCACGACGTCTAGTGACCAGGAGGGTGACCGTAATGCAGAAAAGACTGGCGAGACCGTATCGAAAGATACCACGACGTCTAGTGACCAGGAAGGTGACCGTAATGCAGAGACGACTGGCGAGACCGTATCGAAAGATACCACGACGTCTAGTGACCAGGCAGGTGACCGTAATGCAGAAAAGACTGGCGAGACCGTATCGAAAGATACCACGATTTCTAACACCCAGGAGGTTGATGATAATACTGGATCCCAGACAGGCGAGAACGGAGAGGATCTCCAACCGATTGTGAACTTGGAGAAACTTCAGTCTCCTCTGGTGGAACGCACCTCGGTGTCACTTGCCACTTGCGAGCTGTGCGGCGGCGCTTGCCCAACTCAGCAATGCCTTCGCTTGCGGCGAAACAGTGTTAGTGGCAGAGTGACTAGGCGTGGCCGCGGTCGGCCTAGGATTAGCGAGACCATGGCTGAAGCTTCTAACGCAATCGAAAACGCAACCTACACTTGCCTGTTATGTAGAAAAGTGATGCCCGATCGAGACAGTAGCCGTGAACATGTCCTCACGTCTCATGAAATTGTTTGCCCGACTTGCAGCGGCGTTTTCCGAGACTACGATGCTCTGACAGAGCATCGTACACATGACAAATGTGGAAACGAGAATGAAACCGAAGAGTGTAATGCCGAAATTGAGAACACAGAGGATGCAGTAAGCAGCGAGTGGAAGCTACCTAAGCGAGCTTCGAAGTCATTCGATTTCCTGGGAACTCTGTTCGCCAGCGACAACGACGACGACTCTCCTTCCGACGACGAGGATTCGGATTTTACTTGCGACGACCACGAGATCGAGGAAGCTGAAAAAGAAGAAGATCTTCTTGTCAAGAAGAGTGAGACTCGCCGGAAGTCTCTCCGAAACTTCCGCGGACGACAAGGTAAACAAGATAAACAAGATGAAACATTAGTTGTTGGTAAGAGATCATTCAGGTTAACCAAAAATTCAACTATTCAAAAGTCACTTGCAGGTTCCAAAAATTTTGCACAACGTAATAAATGTATTGGAAATCTAGAATCAACCGTAGCATTGACCAAACGCGGAACCCCTATCCCATTGAGAGTACTTAGAAAATCATTATTAGAAAACAATGGCAACCTTTCCGCATTTGGTAGGGGTAGAAATGCAGCTAGTATTGGCAGTAGTGTTTTGGTAACATGCTCATCCTCCAAAGAAGATGATAACGATTCTCAGTCAAAAGATCCATCTTTTGATGATGATACGATTTCACTACGAAGTGGTAATTCGGTTTCTCGGGGTGAAAACTCTATATCATTGCGTAGTAGTATGCGTATCAGTGGCAAATCTAATGATGATATTGACAACGAAGATGATGAAGATGACGATTCAGGGCTGTGCGATAATGTATCTCAGCTAGGCAGCAACTCAGAGTTGAATCAGAGCCAGCAAGCTGGTCGTGTCAAATGTGACCATTGTGGCAGCACTTATTCGACCAAGTCAAACCTGCAGCGTCACATTGCCAACCATTGCAGGGCTTTGAATGGCGTCGATAAGGATTCAAGGAGAAAGAAAGCCGATGACTTGAAGCGCAAAAAGTTGCGAAAGTATTACAATACAGGCAGCTGTGCGAAACGAAGGCGCCGCAGCTTTGAAGGTGCCGGATCATCTTCGTTGGAGGAGGAGGAGGAGTCTGAGACATCAGACAACGAGTACTCTGAGGAAGCAAACTCCTCCAAAACACAGAGAGACAAGGGTACTTCCACCACTGGCCTAGTCTACTCACCACGATTGATTCTTCATAGAATTGACAATGGAAAAATAGACTCCATCACCGGAGATAAAAAATCGGAAAGTGAGGAAATTGTAAATATTAGTGAAACAGACAAGTCGATACAGGTGGGACAAGGAGAATGCAACATAAAAAGTGCGAAAAATTTCAGGTGTACTGATTGTAGGCGAAGTTTCTACACTGAAGATGATCTATCCCTTCATGGCATGATTCATACCAATCGCACCGATTTTCCTTGTCCTCGCTGCGGGAAAGTTTTCCCAACTTTCCCGAATCTAAGAGTGCACATGCGCACTCACGCTACGGGACCACCTTGTTTATGTGACGTGTGTGGAAAAGCTTTCAATACACCATCCAGTCTCAAAGTTCACATGAAGACGCACGATGATGACGAAAAATTCAATTGCAGCTATTGTAATCGTACTTTTAATTTTGTTGGCAACTTAAAAGTGCACGAACGTTTGCACACCGGTGAGAAGCCGTACAAATGCAGTCTGTGCGAGCGCTGTTTCACCCAAAGCACAAGTCTCAAGCTCCATGTGCAATCATTGCACATGCAACAACGTATCCCCTTACCTTGTGATAAGTGTTGTAGAAAGTTCAGGTCGAAAGAAACGTTGGAACGGCATAAACTTTGTCATGTTGACTATAGAAGGTTCAAGTGCGATATATGCGATTCAGTATCATTCAACAATAGAGCTGGATTAAAGCATCACATGGAAACAAAGCATTTATGTACTGACGGAGGAGCTGTCGATTTAATTGGTAACAAGTCACCAAACGATCTGATTAATCAACAGTCGAGCACTAACCAAGATCACAATCTAACTGCTAATCAAAACTGTGTTGCTAAACTTCCTTCAATTTCTGTGCTAGGAGTTAAGAGTTCAATAACTAGTGTAGCAGACACGGGACAAATGATGGGGCTTAGTCCATTGCAGAATCTGGTTCAAAGTACACGGTTCAATCCTCATTTAGGGGGGATAAATGAACAAAATTCAACCAATCTGCCAAGTACAGCTTCAAAAAGCACTAGCAGCGGTCCTCAGTTCTGTATTAATGGTCATAATTTGAGTATTACTCCTAGAGAATGTAATGATTATTGCCAAGTTCCTGTTTTGAATCAAGGTGGTTTCAATATGGATGCAAACAGAGGCACAGCCACATCGGATGCTTGTAATTTCAATAATTCAACGCCATTGAAAGATAAATTGGATACTGCATCGAGTGATTTATCATCTGGAACTGTTGGCGACAATCGTAATCATTTAATAGTGAATAAGACTGGATTTGGAGACCTTTCACCCATAAATTCATCCATGACAGGTATTAAGAACAACATTTGTCCTCCACAGTACAATGTTGCGATGAGTAGTAGAGGAGGCATGGGTAGAGGCGGCAGAGGATCGAGAGGGGGAAGAGGTAGAGGCGGCGGATCGTTCAATTTCCAAAATTTTCCACCGCACAAATGTGGAGCTTGTTCTGCCAGGTTTGACAAGAAAGTTTCTCTGAGACGACATATAAAGGAGTCTCACTCTGGCCCGTTCGGTGATGTTAATGAAACATTAATGCAGCTGCAAAACGATCTGGAAGATTTGCAAAGGATCTATGGAAATAAAAAGGTTGAGAATAATCGGCGAGGTGCGGGAGCGGGTAGAAGGAAGAGTGTGGAAGGACGCAAGCAGTCCACCGATTTAGAGTCAGGCTTTGATGAGAGCGGAGCAACTGAAGGACCTCAACCTGGCACTTTCAATGACAGTAACAAACCAGAAACAACTTTCACGAGTTCATTTAACGTGGAATCATTATTGAGCAAGTCGTCTGGTGATGCTGATGCTAGGACGGGGACGGGTGGTGAAAGCTCAGTGGAAAGTGGCGAAGGAGCTTTTCCTCAATCGAATCAAACGAAAAATGCCGATCTTGACAGCTCCTCCAATACCGACAATTTCAATGAGCTTGAAGGCGGTAATCTTGACGACGAATCTGCTAAAGCCGGAAAGTCGAGAACAAAATATGAATTCGGATGTCATCTATGTGATAAGTCATTTCCGACTACTATGGGCCTTGTTCGCCACAAAAACTTTGTGCATAAGGTTCCCAGCGAAAGGTGCAGATTGCCAATGAGAGATAAGCCGTTCGAATGCGAGTATTGTACGAAACGGTTCACGTTTGAGACAGGTGCGCAGAAGCATATTCAACGGCACATAGAGAAGGGCCATTCTAAACGAGTTAAAAAAGAGAAAGTTATTCGGAAGCCAAGTGGCAGTCAGTTGAACTATCCGAGTACATCAGGTGTGAATTCGTCGTCATATTCGGCTCCGCCGTCAGTTGACTCGGCTTACGTGGTCAGCGCCAGTGCACAAGCCACAAGCACACTTCAGCGCACTGCCGACTCAACTGCTGATATCTCCGACTTGAACCGTCCCACAAGCTTGCCCAGTTTCAAATGGAATGACTACCGAAGCCCTCTAGTCAACCCTAACGACACTAGCACTCTAGCCATCAATCAAAACCATCTGTATGATCCATACCATAATAATCCTAATTCTTGGGCCGCCATCAATCAAAAGCCAAACTTTTACAAAAACCATACTTACGATAAAACTATCTACCCAATTAGTACATCTTCGACTACGCATAATGAATTTGGCTATGTGGGCAATGATGCATTCAGTAAACCTCTTGGTATGACCCCGTCTTTGTTCAGTCATAACAATACTAATCTGTATCCGGGAGCAACAAGCTACAGTGAGGCAGCTGCTAGTAAAAGTAGTAGCTCTTTTAGTGTGCCTGCAAGTTATAGTGACGTCACTAGTTCCACGTACGCTCAACCGGCACCGTCTACTTCAACCTCTACTTACGTTACGCAAGAGTTCATGCCTAAAACATCAACAGAGAACGATTATACGTACAGTAGTAATGCTTTCATTGGCAGTAGTCTTCAGCCCATTTATTCAGGAGAGAAGACAGAACCGAGTGCTAGTGATGCATTCAATGATAATCAAGCGGGAAGCTATTTCAAGTCCGATCCCGATTACAGTAATGCACCGCCAGCAAACTATGAGGCGAAAATTGCGCCAACTTTCGAGCCGAAAATGCCGCAGAATGTTGGCAACGATCAGTTCATGTTCAATAATGCTGCAACTGATGACAGTTCTTACATGAAGAACGCTTTCCATGCCGCTCACTTGCTCGACGCTTCCAACTACGAGAAGACCTACTACAATTTGGACTCGAATAAGTTCAAAAATGATAGCGCTTACAGCCAATCGACAGCTGCTGAATCGTCTTACAGTTTGACGCGGCTGGATGGCTATGCCACCTCCCCCACTCCTTCAGTGTCGAAGCCCGCCTCGCCATACTACGACACGCAGTTGAAGCCGCAGCTACTCCCCCCACCTGCCACCAAGGAAGAGCATTTCGTCAACTATTACAAGAGTTACCAATACCCTGAAATGCCGCCGCCACCGCCTGTTGCTGGCCAAATGGATCGTACAGATACCAATAATGACAGAAATTATGGTGCAAATGAATGGGGAGGAATGATGTACAACAATTTGTAG
- Protein Sequence
- MEGAELPRPEASPQLSPSTGDNSPLPASGSLMTAKDNPAEGKFAKETTCTENGTGTTSDVSNTGGTANTACSEDGSVSDLDQPTPAKKPKLQESAPATSTTDMVKGENPTIEHVVQVGEAGGEPSSTEQSSNDEEQPPNDEQTSDEPNDSNGDPNGSDGSGGAEPPTEDDGEEDEEGDDEEGDGEEVEEEQNNEEENAEEEESSDEMVDNEDSETPPLVINQFGTDFEETDSSNSVNSEPAPAVHEEEQETKRTEQQVEKELDASSAVVHAGGPAGVQDQPGPSGDRGQGDTPAGNDPLGDDHEEDEPPEQEEEGGPGEDLNAQQPPEQQAPNDDGPEDPPNEEEEDDEDEAEDELDDGGGDNNGDDGGENNGGGGGGFGHPPAPGPPFLDLGGGGDRPIRRERGRGGHVPGPGGDQPTDAIGQGRGHGQAAALQASSSSQLLEQPADDGLCELPSSNPVVEPLESMTSSLLEDKVDSIDNVVRTNKVPDNNCETSANGSSSLKTDTSSKTPVATTEINSIEVPETNASSQIESKLDSSFLENREVDKLVAKDENQSVMAAKTSFEKFVENSVSNEQQTISNSSIDEKISISDKTQGVENSESNDEASDTDVKNIQVETPSIENFLKDEKASKTQTVNKLTVNESNTSEPPNVESKDEPKSLENQVDKWPSNDDSMNPVSEIVDNPPVPTFSISDSDSKDGIQSVNDPVVDVKIPADNEPIKCDNPAEDENLDENMKTSSVESKDEAEICSTNDDIKLKSEDQPMVKTEQSSIDNSGNDCDEHKSISEVDKTLESVLEDQTDDKNFEDENESKIDKESQNIEDENESKIDTESQNIERDATAEKPELDVILKTPGQNTIDSKSIAGVLVTSEIKPAEALPIDSPNNVVDNVEGNLQSLCATTGNVTETNTQSISDEKYEGDEVQETSDPEKSSSTEEPDGNAENAGYTVSKDTPTSSDQESDRNTEKIGETVSEDIMASSDQEGDRNGEKTDETVTKDTTTSSAQEDDGNAQKTGDTVTIDTTTSSAQEGDSNAEKTGETVSKDTTTFSDQECDGNAEKIGETVSKDTTTSSDQEGDGNAERTDETVSKDTMTSRDQEGGRNAEKTGENVSNDTTMSSDQEVDRNAEKIGVTVSKDTTASSDQEGDRNAEKTGETVLIDTTTSSAQEDDGNAETTDDTVTKDTSNSNAQEGDRNAEKIGETVSIDTTTSSDQEGDLNAEKIGETVSKDSVQEGDSNAEKTDEIVSKDTTTSSDQEVDRNAEKTGETVSEDTTTSSDQEGDSNAEKTGETVSKDSAQEGDGNAEKTEETVSKDTTTSSDQEGDLNAEKIGETVSKDILASSDQEGDGNAEKTGETVSKDTTTSSDLEGDRNAEKTDETVSKDTTTSSDREGDGNAEKTGDTVMKDTTTSSDLEGDGNAEKIGETVSKDTTTSSDQEGDRNAEKTGETVSKDTTTSSDQEGDRNAETTGETVSKDTTTSSDQAGDRNAEKTGETVSKDTTISNTQEVDDNTGSQTGENGEDLQPIVNLEKLQSPLVERTSVSLATCELCGGACPTQQCLRLRRNSVSGRVTRRGRGRPRISETMAEASNAIENATYTCLLCRKVMPDRDSSREHVLTSHEIVCPTCSGVFRDYDALTEHRTHDKCGNENETEECNAEIENTEDAVSSEWKLPKRASKSFDFLGTLFASDNDDDSPSDDEDSDFTCDDHEIEEAEKEEDLLVKKSETRRKSLRNFRGRQGKQDKQDETLVVGKRSFRLTKNSTIQKSLAGSKNFAQRNKCIGNLESTVALTKRGTPIPLRVLRKSLLENNGNLSAFGRGRNAASIGSSVLVTCSSSKEDDNDSQSKDPSFDDDTISLRSGNSVSRGENSISLRSSMRISGKSNDDIDNEDDEDDDSGLCDNVSQLGSNSELNQSQQAGRVKCDHCGSTYSTKSNLQRHIANHCRALNGVDKDSRRKKADDLKRKKLRKYYNTGSCAKRRRRSFEGAGSSSLEEEEESETSDNEYSEEANSSKTQRDKGTSTTGLVYSPRLILHRIDNGKIDSITGDKKSESEEIVNISETDKSIQVGQGECNIKSAKNFRCTDCRRSFYTEDDLSLHGMIHTNRTDFPCPRCGKVFPTFPNLRVHMRTHATGPPCLCDVCGKAFNTPSSLKVHMKTHDDDEKFNCSYCNRTFNFVGNLKVHERLHTGEKPYKCSLCERCFTQSTSLKLHVQSLHMQQRIPLPCDKCCRKFRSKETLERHKLCHVDYRRFKCDICDSVSFNNRAGLKHHMETKHLCTDGGAVDLIGNKSPNDLINQQSSTNQDHNLTANQNCVAKLPSISVLGVKSSITSVADTGQMMGLSPLQNLVQSTRFNPHLGGINEQNSTNLPSTASKSTSSGPQFCINGHNLSITPRECNDYCQVPVLNQGGFNMDANRGTATSDACNFNNSTPLKDKLDTASSDLSSGTVGDNRNHLIVNKTGFGDLSPINSSMTGIKNNICPPQYNVAMSSRGGMGRGGRGSRGGRGRGGGSFNFQNFPPHKCGACSARFDKKVSLRRHIKESHSGPFGDVNETLMQLQNDLEDLQRIYGNKKVENNRRGAGAGRRKSVEGRKQSTDLESGFDESGATEGPQPGTFNDSNKPETTFTSSFNVESLLSKSSGDADARTGTGGESSVESGEGAFPQSNQTKNADLDSSSNTDNFNELEGGNLDDESAKAGKSRTKYEFGCHLCDKSFPTTMGLVRHKNFVHKVPSERCRLPMRDKPFECEYCTKRFTFETGAQKHIQRHIEKGHSKRVKKEKVIRKPSGSQLNYPSTSGVNSSSYSAPPSVDSAYVVSASAQATSTLQRTADSTADISDLNRPTSLPSFKWNDYRSPLVNPNDTSTLAINQNHLYDPYHNNPNSWAAINQKPNFYKNHTYDKTIYPISTSSTTHNEFGYVGNDAFSKPLGMTPSLFSHNNTNLYPGATSYSEAAASKSSSSFSVPASYSDVTSSTYAQPAPSTSTSTYVTQEFMPKTSTENDYTYSSNAFIGSSLQPIYSGEKTEPSASDAFNDNQAGSYFKSDPDYSNAPPANYEAKIAPTFEPKMPQNVGNDQFMFNNAATDDSSYMKNAFHAAHLLDASNYEKTYYNLDSNKFKNDSAYSQSTAAESSYSLTRLDGYATSPTPSVSKPASPYYDTQLKPQLLPPPATKEEHFVNYYKSYQYPEMPPPPPVAGQMDRTDTNNDRNYGANEWGGMMYNNL
Similar Transcription Factors
Sequence clustering based on sequence similarity using MMseqs2
- 100% Identity
- -
- 90% Identity
- -
- 80% Identity
- -