Protein
- Genbank accession
- QYW05175.1 [GenBank]
- Protein name
- hypothetical protein
- RBP type
-
TF
- Seq2Symm
-
C1 confidence 0,998 truncated
Predicted homo-oligomer symmetry (Seq2Symm, per-class probabilities; C1 = monomer, C2 = dimer, C3 = trimer).C1 0,998 C2 0,005 C3 0,000 - Protein sequence
-
MSVTTIDGFAKQYIALARTRGLTPRNPITFLFRPNANDQTDVYQVVVSLTEPSFSEKPYNLIWIDANSGSPQYQYVLRRTSHVSDGNHRGSWVSVPDYASLFNSKQFFRRVVENAGDLGIEEGDLEIPHATTNRIGSVQTKTDPADAEDPIAVSGSDPRMSDPRYPTNHDHPDYPRTMIRLNSSAFVEVASSNQPQPGYVLAIVDQDPANANKYIGKWIKPVSDNVEWESPHLMNLRISLPGSASYMSDNSSVKLAIDAEWSDRIEHNPTGVVWTIQENVIGVTISEDGTVTAPDLSADVVLKVTATKIDPVYGNTVTATYDLLIKNAFIPNDELVSIAIIGSSSLLYKQKETYSVTARYKSGAVATVQPNNFTSSKTDVLSLVGLVGTAQKVATDTVSTLTATYTYNGVDFTATKDVTVKAQVMTKLEILGQDTIASQASASYTFKVTWSNGDTEMVTANSFTASPATYTAIDANVVTARKETAQDRAVTLNASYTSGSQTITGTKPITIIHEAEEIFVTALAIQGANTIRSGESANYTFLATYSDGHTRTVDPLTFTADRLDIVTIVNKTVTAGTVTADVPVVLSASYKEGTHTVNATLNLTVVNVVPVVDLTKIQIIGPSSVQEKTQTGYTVLATYSDGHTETVSPNEFRLQATNQYATFDNSTLTVGAVPVATSSVTIYASYTENGITKTATLPVSIVGNPPTVVSLEVRGADQMNENSTSPYTAWSIYSDGSEVQVASPMWSVIQGSAFASIAQTGVLTAGEVTQDSTALIRATAGGLTAQKSVLVKNVVVISLLSVQPAAPTPAYAFNDAAQTAKDLHSTLTFSDNSTREGTSAELSYTLPAATAQYFEIVAGGTTGWRIRTTKALNGFYGSLTFTINVTATVGGVTKTGTVSFTVTGPTDTVSTVDIVGPDSITEGGTAGEYYVRVTRLSGTVVEYTATNPTWTLPQGAAYAQLLSGTTASRTKVNVPANTISQNQTATLRAANVTVDGTAYTPEKTIQIINQAETITKRELVGPTAVNKGETGTYVLRLTLSGGSTVDLTPVVSRSSGSSTAFTFNGTDKIVGNTVTSAQQTIIVGTASYNSQAQTANLTVTNTPAPATPDSVTITGSDSIIGGVNTQYTGTATMSDGTTPDVTADSGSVWSVAVKSGTATGLSVVGGLLKSDKVTADAVVTITLTYTKNGVSKTATKDVTLKKEQVADLGARFGYRTKVTSVTNYDAQFVSGLQNALTLSGQQTLTCPANTSTSSNNVFFYVAWPKSLGYGYFVESAQGFAGSWDGALEFDDFNFAGPAEVQINGVDYVVYRNDFPFDNLAYTFKLTYGSSTPGSGTA
- Physico‐chemical
properties -
protein length: 1337 AA molecular weight: 141620,63500 Da isoelectric point: 4,92387 aromaticity: 0,07928 hydropathy: -0,10823
Taxonomy
Coding sequence (CDS)
Genbank protein accession
QYW05175.1
[NCBI]
Genbank nucleotide accession
MZ475897
[NCBI]
CDS location
range 127588 -> 131601
strand -
strand -
CDS
ATGAGTGTGACCACCATTGACGGATTCGCCAAGCAGTACATCGCTTTGGCCCGTACTCGCGGCCTGACTCCACGCAACCCAATCACGTTCCTGTTTCGTCCCAATGCGAACGATCAGACCGATGTGTATCAAGTTGTAGTGTCGCTGACAGAGCCGTCATTCTCTGAGAAGCCATACAATCTGATTTGGATTGATGCTAACTCAGGCAGCCCACAGTATCAGTATGTGCTGCGCCGCACCAGCCATGTGTCTGACGGCAACCACCGTGGTTCTTGGGTGTCTGTTCCTGACTACGCTTCGCTGTTTAACTCTAAGCAGTTCTTCCGCCGCGTTGTGGAGAATGCTGGTGACCTGGGCATCGAAGAAGGGGATCTCGAAATCCCTCACGCTACTACGAATCGTATCGGTAGTGTGCAGACGAAGACAGACCCTGCTGATGCAGAAGACCCGATTGCGGTATCTGGCTCTGACCCACGTATGTCAGACCCACGTTATCCGACCAACCACGATCACCCAGACTATCCTCGCACGATGATTCGTCTGAACTCCTCAGCGTTTGTTGAGGTAGCTTCTTCGAATCAACCGCAGCCTGGTTATGTTCTGGCAATCGTCGATCAGGACCCAGCCAATGCGAACAAATACATTGGTAAGTGGATTAAGCCTGTATCAGACAACGTTGAGTGGGAATCTCCTCACTTAATGAATCTGCGTATCAGCCTGCCTGGTTCAGCTTCGTACATGTCAGATAACTCTAGCGTTAAGCTGGCTATCGACGCTGAATGGTCTGACCGTATCGAGCACAATCCTACTGGCGTTGTGTGGACGATTCAAGAGAACGTTATCGGTGTGACTATCTCAGAAGACGGTACTGTTACCGCGCCTGATTTGTCTGCTGACGTAGTTCTCAAAGTGACTGCTACCAAGATTGACCCTGTGTACGGCAATACGGTAACAGCTACTTACGACCTGCTGATTAAGAACGCATTCATCCCAAATGATGAGCTGGTATCTATCGCCATCATTGGTTCTAGCAGCCTGTTGTACAAGCAGAAAGAAACATACAGCGTGACTGCTCGCTATAAGTCAGGCGCTGTTGCAACTGTTCAGCCTAACAACTTCACCTCATCTAAAACGGATGTGCTGTCGCTTGTTGGTCTGGTGGGTACTGCGCAGAAGGTTGCGACTGATACCGTTTCTACTCTGACTGCAACGTACACCTATAACGGCGTAGATTTCACAGCGACCAAAGACGTAACAGTCAAGGCGCAGGTGATGACTAAGCTGGAGATTCTCGGACAAGATACCATCGCGTCACAGGCTTCTGCCTCGTACACGTTCAAGGTAACTTGGTCGAACGGTGACACTGAAATGGTAACCGCCAATTCATTCACAGCGTCTCCTGCTACCTACACCGCTATCGATGCTAATGTCGTTACTGCACGCAAAGAGACAGCACAAGATCGCGCTGTTACGCTGAATGCAAGTTACACGTCAGGCTCGCAGACGATTACAGGCACCAAGCCTATCACAATCATCCATGAAGCAGAAGAGATCTTCGTTACTGCTCTGGCGATTCAGGGTGCGAACACGATTCGCAGCGGTGAGAGCGCGAACTACACGTTCCTCGCTACTTACTCTGATGGCCACACGCGTACCGTTGACCCTCTGACGTTTACTGCTGACCGTCTGGATATTGTGACCATCGTCAACAAGACCGTTACTGCTGGTACTGTGACTGCTGACGTTCCTGTCGTGCTGTCCGCTTCTTATAAAGAAGGTACGCACACGGTCAACGCTACGCTCAATCTGACTGTCGTCAATGTGGTGCCTGTTGTTGACCTGACGAAGATTCAGATTATCGGTCCATCATCCGTGCAGGAGAAGACGCAGACGGGTTACACCGTACTTGCTACTTACTCTGATGGTCATACCGAAACAGTTAGCCCGAATGAGTTCCGTCTGCAAGCGACTAACCAGTACGCTACATTCGATAACTCAACGTTGACTGTTGGTGCTGTTCCTGTCGCTACGTCCAGCGTGACCATCTACGCCTCGTATACTGAAAACGGTATTACGAAGACTGCAACGCTGCCTGTATCAATCGTTGGTAACCCACCGACTGTTGTTAGTCTGGAAGTGCGTGGCGCAGACCAGATGAACGAGAACTCCACCAGCCCATACACTGCCTGGTCAATCTACAGTGATGGAAGTGAAGTTCAGGTTGCATCACCTATGTGGTCTGTTATTCAGGGTAGCGCGTTCGCATCAATCGCTCAAACGGGTGTGTTGACTGCTGGCGAAGTAACTCAGGATAGCACCGCATTGATTCGTGCGACTGCTGGTGGCTTGACTGCACAGAAATCCGTGTTGGTCAAGAACGTGGTCGTTATCAGTCTGCTGTCGGTTCAGCCTGCTGCTCCTACACCTGCGTATGCATTTAACGATGCTGCACAGACTGCGAAGGACCTGCATAGCACTCTGACGTTCAGCGATAACTCTACGCGTGAAGGCACAAGTGCGGAACTCAGCTACACCTTGCCTGCTGCGACTGCTCAGTATTTCGAGATCGTTGCTGGCGGAACAACTGGCTGGCGCATTCGTACCACGAAAGCTCTTAACGGGTTCTACGGAAGTCTGACGTTCACTATCAACGTTACTGCAACTGTTGGCGGCGTGACGAAGACTGGTACTGTTAGCTTCACTGTAACTGGTCCGACTGACACCGTAAGCACTGTAGACATTGTAGGTCCTGACTCAATCACTGAGGGCGGTACTGCTGGTGAATACTATGTGCGTGTGACGCGTCTGTCCGGCACTGTGGTAGAATACACCGCTACTAACCCAACGTGGACACTGCCTCAAGGTGCTGCTTATGCTCAGTTGCTGTCTGGTACGACCGCGAGCCGCACGAAAGTTAATGTTCCTGCGAACACGATCAGCCAGAACCAAACCGCAACGCTGCGTGCTGCTAACGTCACTGTTGATGGTACTGCGTACACGCCAGAGAAAACGATTCAGATTATCAACCAAGCTGAGACCATCACTAAGCGCGAGCTGGTGGGTCCAACTGCTGTCAACAAAGGTGAGACCGGTACTTATGTCCTGCGTCTGACTCTTTCTGGCGGTAGCACGGTTGACCTGACTCCTGTTGTTAGTCGTTCAAGCGGTAGCTCTACTGCGTTTACGTTTAACGGCACGGACAAGATCGTTGGTAACACTGTGACGTCCGCGCAACAGACGATCATCGTTGGTACTGCTTCGTATAACAGCCAAGCGCAAACTGCGAACCTGACTGTAACGAACACGCCTGCTCCTGCGACACCTGATTCAGTTACTATCACTGGTAGTGATTCAATCATCGGCGGCGTGAACACTCAGTACACTGGTACTGCTACTATGTCTGATGGCACCACGCCTGACGTAACTGCTGATAGCGGTAGCGTGTGGTCTGTTGCTGTTAAGTCTGGTACTGCTACTGGCCTGAGCGTTGTAGGCGGCTTGCTCAAGTCTGACAAAGTGACTGCTGATGCTGTTGTCACAATCACTCTGACTTATACCAAGAACGGTGTAAGCAAGACTGCAACCAAAGACGTGACGTTGAAGAAAGAGCAGGTTGCTGACCTGGGTGCTCGCTTCGGCTATCGCACTAAGGTGACCTCTGTTACGAACTACGATGCACAGTTCGTTTCTGGTCTGCAAAATGCGCTGACGCTTAGCGGTCAACAGACGCTGACGTGCCCTGCTAACACCAGTACAAGTAGCAACAACGTGTTCTTCTACGTTGCGTGGCCTAAGTCTCTGGGTTACGGTTACTTCGTGGAGTCTGCACAGGGCTTTGCTGGTTCATGGGATGGCGCGTTGGAGTTTGACGACTTCAACTTTGCAGGTCCTGCGGAAGTTCAGATTAACGGCGTGGACTATGTTGTTTACCGCAACGACTTCCCGTTTGATAATCTGGCGTATACGTTCAAACTGACCTATGGTTCTTCTACCCCAGGCTCAGGTACTGCGTAA
Genome Context
Tertiary structure
QYW05175.1
ESMFold2 structure
Source
ESMFold2
pLDDT
70.3
Oligomeric state
monomer