Acam001743.1
Basic Information
- Insect
- Andrena camellia
- Gene Symbol
- stc
- Assembly
- GCA_029448645.1
- Location
- CM055676.1:37100357-37107998[-]
Transcription Factor Domain
- TF Family
- zf-NF-X1
- Domain
- zf-NF-X1 domain
- PFAM
- PF01422
- TF Group
- Zinc-Coordinating Group
- Description
- This domain is presumed to be a zinc binding domain. The following pattern describes the zinc finger. C-X(1-6)-H-X-C-X3-C(H/C)-X(3-4)-(H/C)-X(1-10)-C Where X can be any amino acid, and numbers in brackets indicate the number of residues. Two position can be either his or cys. This family includes Swiss:P40798, Swiss:Q12986 and Swiss:P53971. The zinc fingers in Swiss:Q12986 bind to DNA [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 13 1.6 2.1e+04 -3.8 1.0 15 19 578 582 577 582 0.82 2 13 0.085 1.1e+03 0.3 0.4 4 10 611 617 610 617 0.95 3 13 1.1e-05 0.14 12.6 15.7 4 19 628 643 626 643 0.93 4 13 8e-07 0.01 16.3 16.2 1 18 679 696 679 697 0.97 5 13 3.9e-08 0.00049 20.5 9.0 1 19 735 753 735 753 0.98 6 13 3.4e-05 0.43 11.1 12.0 4 18 800 814 793 815 0.86 7 13 0.00063 7.9 7.1 8.1 1 11 855 865 855 866 0.97 8 13 1.5 1.9e+04 -3.7 0.6 4 10 870 876 869 876 0.86 9 13 2e-10 2.5e-06 27.8 13.8 1 19 882 900 882 900 0.98 10 13 2 2.5e+04 -6.3 9.3 10 19 947 957 936 957 0.76 11 13 4.3e-08 0.00054 20.4 9.2 1 16 993 1008 993 1010 0.95 12 13 0.085 1.1e+03 0.3 2.5 2 10 1011 1018 1011 1018 0.92 13 13 8.2e-06 0.1 13.1 13.6 1 19 1025 1044 1025 1044 0.97
Sequence Information
- Coding Sequence
- ATGGCCACTTGGGATGGCTCTTATTCTGGGCCGGAGGATCAAAATTATTACATGTACTCCGACCAAAGTGTTTCTGGCCCGGCAGCAGGGAACTGGCCGTACTTTCCCAACAATGTAAATAATGATTATTTAAGAAACAATCGAGAGTTTTACGGGCAAGAGGATGCCGCTTTCAACCAGAACTGCCCGAGCACTTTCTATCGGGCGAGCGCTAACGTCGCGCCGAACCAGCTGCCTACGAGCAATAATTATCAGGAGCATTTAACGAGCGCCGCTGGTAGCTCCCAAATGCCGAATAACTCGGAGTATTTTCCAACAGCGGTCAATCCCCAACGGTGCTACGCGCCCGCAGATTATTGGAGGAACGATTACGATTCAAAAGCGACTAAGGGCAGGCACAATTTCACGAGGAAAGCGGACGAAGGTGCGACCGGCGTCAAGAGACAGTCGAGTTTGCACGCGACGGCTGAGGAGTTCGTTCCGAACAGCACCAAGGTGGATGACGGGAAGCCCGAAGCGCAGTACGCGAATGCTCCTTCGTCGATCGATAGCACGGATTCCCATGCCAGGAATGCGAAGTCGTTTCCTAGAGCGTCGGACAAATATTCGTCGTACGACGTAAACAAGTACGAAAGGAGGTATGATAATAAAAGAAGCGCGAATTATAAGCCCAAAGAGGGACACCAGGATCAATTGCACAAAAGAAACGCGTATAGAAACTCTTATCAGCAACAAGGCAGGGGTTCCAATAAATTTCAAGGGAATAAGTATTATACTAGTAAGCATTATTCGGATAAATTGCAAGTAGATGCGAAAGACGCGGGTTCGGGTGCTTCGGGCAGGGATACGACGGATAATGATAATGCTTGTAACGACGAAGAAAACTCCGCGCCGAATGTAATTGCAGAAGAAGCTTCTACGGGTATGAATGCGAGGTATCCAAGCAGAAGTAGGAGATTACCGAACGAGAATAGCAACAAAGGGTGTGCTGTCGCGAAAGAGGACAACGTACAAGCTAACGGATCGAAACAGAGTAGTAATCAATTCGGCTATTACAATTCCGGTCCGAAGCAAGCGTATAATCATCGTAAGAATCCGAGGACGTACCCGTACAGCGATAGGCACAACAGAGAGGAGACTGGTTACAGAGAGAAAAGGCGCAATTATCAGGGATATAACGGGACTTGGGAGAACTCTAGCATAGAAAACAATTCCGAAGCGAAAGAACAGATGCACGGGCAGGACGATCGCAACGAGTCTAGGGATCCTTCCAGCTTCGGAATCGATGATACGAGTTTAGGAAACTCGCTGGAAGTTAGACTCGGAGCGAAGGAGACGAAAGAGAAGAGGTATAACTATCAAGGGCATAATGGATTTAGGGAGCAGAATAAGGGAGATAGGACCGAAGCTTTCAAGGAGAAAGATAGAAGCAAGAGTTACGTATTCGAGAACAAAGAAAGGGGAAATGAGAATTGGAGGAACAAGAGAGAGATTAACGAGAGGAGTGTTCAGAAGCGGGGACAGAATAAGAAGCCTTCGATCGATGATGACGCGAGCCAGAGAGAGAGATTAACGGACCAATTGAATAGAGGACAGCTGGAATGTTTAGTGTGTTGCGAGTACATCAGGGAGCTGAATTATACTTGGTCTTGTTCCAATTGCCATCATGTTTTGCATCTGAAATGCGTGAAGAAATGGGCTAAATCATCGCAAGCGGAGAATGGTTGGAGGTGCCCCGCGTGTCGGAATGTGAGCTTAACGATTCCGGAGGATTACCTTTGCTTCTGTGGTAAGACGGTAGCGCCTGAATGGAATCGTAGAGACGTTGCGCACTCTTGTGGCGAAGTCTGCGGTAGAACATTATCGAAAGACACCTGCCCTCATAGGTGTACACTCCTGTGCCATCCAGGGCCTTGCCCGCAATGCACAGCGATGGTGGCACGGTACTGCGGTTGTGGCAAAACATCGCAAACGGTGCAGTGTTGCACTCGTAAATTATTACAGTGCGATGCTGTGTGCGGTAAGGATCTGAATTGCGGCGAGCATAAATGCGAAAGCAAGTGCCATCATGGAGAATGCGCGAATTGTGAGAAGACGATAGAGCAAGCGTGTTACTGTGGTAAAAACAAAAGGGAAGTAACATGCCAGAAAAATGTCCCACTCGTGTACTCGTGCGAGACAACTTGCGATAAATTGTTAGAGTGCGGTAATCATACCTGCGCTAAGTTGTGCCACGCAGATTCCTGCGAGTCTTGCTCTCTGACGCCGCAGAAAATTACAACCTGCTGTTGCGGGCAAACGCCGTTAACAGAGGACAGGCAGACGTGTTTAGATCCGGTTCCTGTCTGCAACAAGATATGCTCTAAGAATCTAAAATGTGGTCAACCTAATGATCCTCACATGTGCAAGGCGAAGTGTCATCAAGGTGAATGTCCTGTTTGCGATCTGACCACTGACGTTAAGTGCCGTTGCGGGAATATGGACAGAGAATTGGACTGTAAAGACTTAACGACGAAAGCTGATGACGCCAGGTGTGAGAAGAGATGCATAAAGAAGAGGTCTTGTGGCAAGCACAGATGTAATCAACTGTGCTGTATAGAGGTGGAACATATTTGCCCTTTGGTGTGCTCCAAGACATTGAGCTGTGGAAGACATAAGTGCGAGCAAAGTTGTCATAAAGGAAGGTGTCAGCCCTGCTGGCGCAGTAGCTTCGACGAGCTCTACTGCGAATGTGGAGCGGCCGTGATAGTTCCTCCAGTTCCCTGCGGCACCAGAAGACCTGTCTGCGACAGGCCCTGCTCTCGCCAGCACTCTTGCGGGCACGAAGTATTGCACAATTGTCACAGCGAAGCTACGTGCCCTCCGTGCACCGTTCTTACTCAGAGATGGTGTCATGGCAAGCACGAGCTGCGAAAAGCAGTGCCGTGTTACGTTACCGAAATTTCATGTGGTTTACCATGTAACAAGCCTATATCGTGCGGGCGACATAAGTGTATCACAATTTGCCACTCTGGACCGTGCGAGAAGCCAGGACACCAGTGTACTCAACCGTGCGCCACCCCGAGAGAGATGTGTGGGCATATCTGTGCTGCCCCGTGTCACGAGGGCAAATGTCCAGACACACCGTGCAAGGAAATGGTGAAGGTCACCTGCCAGTGCGGACACAGGACTATGTCCCGGGTTTGTGCAGAGAATTCGAAAGAGTATCAGAGGATAGCGAGCTGTATATTAGCCAGTAAAATGGCCGATATGCAACTGGGTCATTCGGTGAATTTGGAAGAAGTCTTCGGTCAAGGGGCGAAGAAGCAGAATCAGTTGAAGACTCTGGAATGCAACGACGAGTGCAAGATAATAGAACGCAATAGGAAATTGGCGCTGGGTCTGCAAATCGTGAATCCGGACCTGAGCGCGAAATTGATGCCTAGATACAGCGATTTCATGAAACAATGGGCTAAGAAGGACCCGCATTTCTGCCAGATGGTGCACGATAAGCTGACAGAGCTGGTTCAGCTGGCGAAGACCTCGAAGCAGAAGTCACGCAGCTACTCTTTTGATAGTATGAACAAGGATAAGCGTCATTTAATCCATGAGTCCTGCGAGCATTTTGGTTGCGAGAGTCAGGCGTACGATCAAGAGCCAAAGAGGAATGTTGTCGCCACTGCCGTGAAGAATAAGTGCTGGTTGCCAAGCTACAGTCTGCTAGAAATTGTACAGAGAGAGAACGGTCAGAGGAAAGTTCCAGGCCCGATGCTGAGTACCACGAAACCCAGTGGATCCGTAAAGACGATACTATCACTGCCTCCAAAAAAGAACCAAACACAATCAAGCACAAAGATGCCAGAACCAGAAATAGATTATTTTGATTATCAAGGGTAA
- Protein Sequence
- MATWDGSYSGPEDQNYYMYSDQSVSGPAAGNWPYFPNNVNNDYLRNNREFYGQEDAAFNQNCPSTFYRASANVAPNQLPTSNNYQEHLTSAAGSSQMPNNSEYFPTAVNPQRCYAPADYWRNDYDSKATKGRHNFTRKADEGATGVKRQSSLHATAEEFVPNSTKVDDGKPEAQYANAPSSIDSTDSHARNAKSFPRASDKYSSYDVNKYERRYDNKRSANYKPKEGHQDQLHKRNAYRNSYQQQGRGSNKFQGNKYYTSKHYSDKLQVDAKDAGSGASGRDTTDNDNACNDEENSAPNVIAEEASTGMNARYPSRSRRLPNENSNKGCAVAKEDNVQANGSKQSSNQFGYYNSGPKQAYNHRKNPRTYPYSDRHNREETGYREKRRNYQGYNGTWENSSIENNSEAKEQMHGQDDRNESRDPSSFGIDDTSLGNSLEVRLGAKETKEKRYNYQGHNGFREQNKGDRTEAFKEKDRSKSYVFENKERGNENWRNKREINERSVQKRGQNKKPSIDDDASQRERLTDQLNRGQLECLVCCEYIRELNYTWSCSNCHHVLHLKCVKKWAKSSQAENGWRCPACRNVSLTIPEDYLCFCGKTVAPEWNRRDVAHSCGEVCGRTLSKDTCPHRCTLLCHPGPCPQCTAMVARYCGCGKTSQTVQCCTRKLLQCDAVCGKDLNCGEHKCESKCHHGECANCEKTIEQACYCGKNKREVTCQKNVPLVYSCETTCDKLLECGNHTCAKLCHADSCESCSLTPQKITTCCCGQTPLTEDRQTCLDPVPVCNKICSKNLKCGQPNDPHMCKAKCHQGECPVCDLTTDVKCRCGNMDRELDCKDLTTKADDARCEKRCIKKRSCGKHRCNQLCCIEVEHICPLVCSKTLSCGRHKCEQSCHKGRCQPCWRSSFDELYCECGAAVIVPPVPCGTRRPVCDRPCSRQHSCGHEVLHNCHSEATCPPCTVLTQRWCHGKHELRKAVPCYVTEISCGLPCNKPISCGRHKCITICHSGPCEKPGHQCTQPCATPREMCGHICAAPCHEGKCPDTPCKEMVKVTCQCGHRTMSRVCAENSKEYQRIASCILASKMADMQLGHSVNLEEVFGQGAKKQNQLKTLECNDECKIIERNRKLALGLQIVNPDLSAKLMPRYSDFMKQWAKKDPHFCQMVHDKLTELVQLAKTSKQKSRSYSFDSMNKDKRHLIHESCEHFGCESQAYDQEPKRNVVATAVKNKCWLPSYSLLEIVQRENGQRKVPGPMLSTTKPSGSVKTILSLPPKKNQTQSSTKMPEPEIDYFDYQG
Similar Transcription Factors
Sequence clustering based on sequence similarity using MMseqs2
- 100% Identity
- iTF_00088472;
- 90% Identity
- iTF_00086789; iTF_00084974; iTF_00089242; iTF_00087615; iTF_00088472;
- 80% Identity
- -