Osyl009760.1
Basic Information
- Insect
- Ochlodes sylvanus
- Gene Symbol
- -
- Assembly
- GCA_905404295.1
- Location
- FR990124.1:1-32573[-]
Transcription Factor Domain
- TF Family
- TF_bZIP
- Domain
- bZIP domain
- PFAM
- AnimalTFDB
- TF Group
- Basic Domians group
- Description
- bZIP proteins are homo- or heterodimers that contain highly basic DNA binding regions adjacent to regions of α-helix that fold together as coiled coils
- 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 6 0.86 6.6e+02 0.9 1.6 22 63 74 117 70 119 0.85 2 6 7.3e-06 0.0056 17.2 0.6 33 62 124 153 120 156 0.92 3 6 2.4e-05 0.018 15.5 1.4 31 62 391 422 363 425 0.91 4 6 0.095 73 4.0 0.1 31 57 644 670 631 674 0.79 5 6 0.073 56 4.4 0.0 37 53 851 867 847 880 0.55 6 6 0.065 50 4.5 0.1 31 55 1122 1146 1109 1151 0.78
Sequence Information
- Coding Sequence
- ATGCGATTTGTGGAGGAGACACATGGAGCCGCGGAGGAGTCTGACTCGTCCGTGGCGACCATGGTGTCTGTGTCGTCTGCGGACGACGCAACGGGGGGATTCTGGCGCTCTGCGCGAAAACGCGGGCCCCCAGCGCCCCAAAAGGGTGACGAGGAGGAGGCGGAGTCCGAGTCGTCGTCGCTGCCAGGCGGCGAACTCGGGGACTCGACATCGGAGCTCAAAAAGAAGGCGGCAGACAGCGTGCTCCTAATTCAGGCGGTTGCCAGGAAGTCGAAAAACCTGAAGGGCACGCTGCAGAAGGAGCTCAAGGAGGCCTCTGCCAACCTAGGGGCGATCGTGGCGGAGCTGGCAGAGCGCTCCGCCTCGGAGGAGACGGCTCGGCTCGAAAGGGCCAATGCCCGCCTGCAAGGCGAGGTCGCTGAGCTCCGCAAGGAGGTCGCGGACCTGCGGGCGAGCCTTGTGGGCTTGCCCAAAGAGCCGAGCGGAGCCGTCGGAGCCGTCAGCGATGTCTCGTCGCTGACGCGTTCGATCATGAAGGAAGTGGGGGACATGATCGGCGCTAGGCTCGAGGCACTCGAGAGGCGGCTCCCTCCCCAGCCGATCGTCCGGCCGCCTTTGGCTGCCGACAGGGCGAGGGATGCGGTTGCGCCCCCCGCCGCCGCTCCTGCGGCCGGTGAGGCTGGGCCAGGCAGCCGGAAAAGGAAGGAGAAGGCGCCTCCTAAGGCTTACGCCGAGGCGGCAGCGCCGAAAGCCGGCGCCCCGAAGCCCCCGACGGCCCCCTCCGAGGAGTGGAGCACGGTGGTCAAGCGGGGCAAGCGGGGCAAGGTAAAGAAGGGCAGCGCACCGCCGGACAGGGCAAGGAGCTCTCGTCGGCAACCCGCCGGCCTTCGTCAACACGACCAACGCACACCCATACCGGATACCGATGTCCTGCGAACGGAGGAGGAGACACATGGAGCCGCGGAAGAGTCTGACTCGTCCGTGGCCACCATGGTGTCTGTGTCGTCTGCGGACGATAGCACGGGGGGATTTTGGCGCTCTGCGCGAAAACGCGGGCCCCCAGCACCCCAAAAGGGTGACGAGGAGGAGGCGGAGTCGGCCAAGAGAGACTTGAAAGAGGCCTCCGCCAACCTGGCGGCGATCGTGGCGGAGCTGGCGGAGCGCTCCGCTACCGAGGAGACAGCTCGGCTCCAAAGGGCCAATGCCCGCCTACAGGGCGAGGTCGGCGAGCTTCGTAAGGAGGTCGCAGACCTGCGGGCGAGCATGGCAAGCCTGCCCAAGGAGTCGAGCGGAGCCGTCGGAGACGACGTAGCCTCGCTGACGCGCTCGATCATGAAGCAAGTGGGCGACATGGTCGGCGCTAGGCTCGAGGCGCTCGAGAGGCGGCTCCCTCCCCAGCCGATCCTCCGGCCGCTTTTGGCCGCGGACAGGGCGAGGGATGCGGCTGCGCCCCCCGCCGGCGCTCCTGCGGCCGGTGAGGCCGGGCCAGGCAGAAAGAAGAAGGAGAAGGCGCCTCCTAAGGCTTACGCCGAGGTGGCAGCGCCGAAAGCCGGCGCCCCGAAGCCCCCGACGGCCCCCTCCGAGGAGTGGAGCACGGTCAAGCGGGGCAAGCGGGACAAAGTGAAGAAGGGCAGCGCACCGCCGGACAGGCCGGCAAAGTTGGAGGAGACCCCCGATACGGCTGGCGTGTTGAGTGTTCCGGCACGCCAGGTGAAAGGTCGGCAAACCGCCGACCTTCGTCAACACGACTTAAGCACACCCATACCGGATACCGATAGCATGCGATTTGTGGAGGAGACACATGGAGCCGCGGAGGAGTCTGACTCGTCCGTGGCGACCATGGTGTCTGTTTCGTCTGCGGACGACGCCACGGGGGGATTTTGGCGCTCTGCGCGAAAACGCGGGCCCCCAGCACCCCAAAAGGGTGACGAGGAGGAGGCGGAGTCGGCCAAGGGCGAGGTCGGCGAGCTTCGTAAGGAGGTCGCAGACCTGCGGGCGAGCATGGCAAGCCTGCCCAAGGAGTCGAGCGGAGCCGTCGGAGATGACGTAGCCTCGCTGACGCGCTCGATAATGAAGCAAGTGGGCGACATGGTCGGCGCTAGGCTCGAGGCGCTCGAGAGGCGGCTCCCTCCCCCGCCGATCGTCCGGCCTTCTTTGGCTGCCGACAGGGCGAGGGATGCGGCTGCGCCCCCCGCCGCCGCTCCTGCGGCCGGTGAGGCCGAGCGAGGCGGCCGGAAGAAAGAAAAGGCACCTCCCAAGGCTTACGCTGAGGGCCGGCCCGCGCGGATAGGTGGTTGCGGGCTGGCGAGGTGGTCGCTCCCAGCAGGCTTGGCGCGACAAGCCTGCTTGGGATGCGCAAGGTGGGGACCGCAGAGGAAGGTTGTCCTTCCTCTGCGGCCGAGGCGGAGCCGCTCCGATTCGCGGCCGGAGCGGCATTGGTGGGGCCGCAGGGGAAGAGGAATGCCGGTATTACGGTGCGCCGCTTTCCCTGTCCTCTGCGGCCGAGGTGTGGTTGGCGGTGGAGCCACAGATCTGATCCACCGCCGGGTGCTGGAGGGCGAGGTTGCCGAGCTTCGGAAGGAGGTCGCTGACCTGCGGGCGAGCATGGTTAGCCTGCCCAAGGAGTCGAGTGGAGCCGTCGGAGCCGTCAACGATGTCGCCTCGCTGACGCGTGCGATCATGAAGGAAGTGGGGGACATGGTCGGCGCTAAGCTCGAGGCACTCGAGAGGCGGCTCCCTCCCGCGCCGATCCTCCGGCCGCCTTTGGCCGCCGACAGGGCGAGGGATGCGGCTGCGCCCCCCGCCGCCGCTCCTGCGGCCGGTGAGGCCGGGCCAGGCAGCCGAAAGAAGAAGGAGAAGGCGCCTCCTAAGGCTTACGCCGAGGTGACAGCGCCGAAAGCCGGCGCCCCGAAGCCCCCGACGGCCCCCTCCGAGGAGTGGAGCACGGTCAAGCGGGGCAAGCGGGGAAAGCCGGATAAGAAGAAGGGCAGCGCACCGCCGGACAGGCCGGCAGCGCCCAAGAAGAGGGACCCGGCGGCGAAGCTTCGCCCCCCGCGCTCGGCTGCGGTTACAATAACCATCCAGCCGGGCGCCACCTTGGAGGAGACCCCCGAGACGGCTGGCGTGTTTGGTGTTCCGGCACGCCAGGTGAAAGGTCGGCAAACCGCCGACCTTCGTCAACACGACCAATGCGAACGCTTAACGGATTCCGATAGCATACGATTTGAGGAGACACATGGAGCCGCGGAGGAGTCTGACTCGTCCGTGGCCACCATGGTGTCTGTTTCGTCTGCGGACGACGCCACGGGGGGATTTTGGCGCTCTGCGCGAAAACGCGGGCCCCCAGCACCCCAAAAGGGTGACGAGGAGGAGGCGGAGTCGGCCAAGGGTGAGGTCGCTGAGCTCCGCAAGGAGATCGCGGACCTGCGGGCGAGCCTTGTGGGCTTGCCCAAAGAGCCGAGTGGAGCCGTCGGAGCCGTCAACGATGTCGCCTCGCTGACGCGCTCGATCATGAAGGAAGTGGGGAACATGATCGGCGCTAGGCTCGAGGCACTCGAGAGGCGGCTCCCTCCCCAGCCGATCGTCCGGCCGCCTTTGGCTGCCGACAGGGCGAGGGATGCGGCTGCGCCCCCCGCCGCCGCTCCTGCGGCCGGTGAGGCCGGGCCAGGCAGCCAAAAGAAGAAGGAGAAGGCGCCTCCTAAGGCTTACGCCGAGGTGGCAGCGCCGAAAGCCGGCGCCCCGAAGCCCCCGACGGCCCCCTCCGAGGAGTGGAGCACGGTGCTCAAGCGGGGCAAGCGGGACAAAGTAAAGAAGGGCAGCGCACCGCCGGACAGGCCGGCAAAG
- Protein Sequence
- MRFVEETHGAAEESDSSVATMVSVSSADDATGGFWRSARKRGPPAPQKGDEEEAESESSSLPGGELGDSTSELKKKAADSVLLIQAVARKSKNLKGTLQKELKEASANLGAIVAELAERSASEETARLERANARLQGEVAELRKEVADLRASLVGLPKEPSGAVGAVSDVSSLTRSIMKEVGDMIGARLEALERRLPPQPIVRPPLAADRARDAVAPPAAAPAAGEAGPGSRKRKEKAPPKAYAEAAAPKAGAPKPPTAPSEEWSTVVKRGKRGKVKKGSAPPDRARSSRRQPAGLRQHDQRTPIPDTDVLRTEEETHGAAEESDSSVATMVSVSSADDSTGGFWRSARKRGPPAPQKGDEEEAESAKRDLKEASANLAAIVAELAERSATEETARLQRANARLQGEVGELRKEVADLRASMASLPKESSGAVGDDVASLTRSIMKQVGDMVGARLEALERRLPPQPILRPLLAADRARDAAAPPAGAPAAGEAGPGRKKKEKAPPKAYAEVAAPKAGAPKPPTAPSEEWSTVKRGKRDKVKKGSAPPDRPAKLEETPDTAGVLSVPARQVKGRQTADLRQHDLSTPIPDTDSMRFVEETHGAAEESDSSVATMVSVSSADDATGGFWRSARKRGPPAPQKGDEEEAESAKGEVGELRKEVADLRASMASLPKESSGAVGDDVASLTRSIMKQVGDMVGARLEALERRLPPPPIVRPSLAADRARDAAAPPAAAPAAGEAERGGRKKEKAPPKAYAEGRPARIGGCGLARWSLPAGLARQACLGCARWGPQRKVVLPLRPRRSRSDSRPERHWWGRRGRGMPVLRCAAFPVLCGRGVVGGGATDLIHRRVLEGEVAELRKEVADLRASMVSLPKESSGAVGAVNDVASLTRAIMKEVGDMVGAKLEALERRLPPAPILRPPLAADRARDAAAPPAAAPAAGEAGPGSRKKKEKAPPKAYAEVTAPKAGAPKPPTAPSEEWSTVKRGKRGKPDKKKGSAPPDRPAAPKKRDPAAKLRPPRSAAVTITIQPGATLEETPETAGVFGVPARQVKGRQTADLRQHDQCERLTDSDSIRFEETHGAAEESDSSVATMVSVSSADDATGGFWRSARKRGPPAPQKGDEEEAESAKGEVAELRKEIADLRASLVGLPKEPSGAVGAVNDVASLTRSIMKEVGNMIGARLEALERRLPPQPIVRPPLAADRARDAAAPPAAAPAAGEAGPGSQKKKEKAPPKAYAEVAAPKAGAPKPPTAPSEEWSTVLKRGKRDKVKKGSAPPDRPAK
Similar Transcription Factors
Sequence clustering based on sequence similarity using MMseqs2
- 100% Identity
- iTF_01082193;
- 90% Identity
- iTF_01082193;
- 80% Identity
- iTF_01082193;