Genbank accession
QDJ97118.1 [GenBank]
Protein name
hypothetical protein
RBP type
TSP
Evidence DepoScope
Probability 1,00
TSP
Evidence RBPdetect2
Probability 0,85
Seq2Symm
C3 confidence 0,864 truncated
C3 0,864
C1 0,661
T 0,003
Predicted homo-oligomer symmetry (Seq2Symm, per-class probabilities; C1 = monomer, C2 = dimer, C3 = trimer).
Protein sequence
MYIDKDKPHQEPEPRDNPVGVVLNEFIKNDRKAQEVTGDVADTILEIVEAKTDIEKRIDEFSKDVTDKIAEHTSRVGAIHGETKVTVGLGNKDNFRMGTIAEHIAGAPDNVYAHPAGLKELVQSRVKVNPDNYIPAGIIPYAHGGMIGEVPQYEYDTSIGEMLQSALDPKDYMFETPWEFSTSSGSLVFPSLNHSPTHGIYTQLGAVTPTLNSPHGGTKIRVYNKTLDARKTRPSNIRAWSSNGLGDMAQVDSSLMDRYSVFLKEGSEWVVRSFNKNIIPVDYFKLGAFYPGKPSGMFQFSEGLMYNLVHNQSYSNPIGESSPEIHSRYDYLTFGFRINDYNAVNGGDQGAEQEGTLLGRIGSFTGTVPAHGKLKFTNDAANKQGSIVIKLSSLVQMPAGVQPELVKNMSIKEFGNKIGFAWNNRMAFHSYIRLPMGWWNKNRTKYWHAWLDFEIIDVPGTTTVASQLRINTLDPAWNNPRQVMNANYDLTGEGLFKEYAPDVRENPTHPLALGGIFESLGGHVKTHTMYGRQYVSYVHHGYGDVLSMIQGGSGKFPAATEEEHSVRSTLNSNGLFGDHLRHIPVNVNRLQGDNAGEVTYLTQVRDSRERYRWAKVVIDGQEEVQQNRAFGNYLAPTVQSFDWMDRSFEPPKPFLISNDDFQDEMGISGMVFTSENSFIGFSQYELTEATDNSFLTYKDQIRLDSKIESWVAKNTGGYTNPDMLFFYFRNTIFFVSRCTVPGEYPADGKDATCGYFADCHVVGDIFTGKRVTTVGDIGGSVTMSKFNLNKKSTLEIDDNHVFGIDQLTGRDVYIMMTNHDNTTQAQSHDVMLNMGPFKNFYIEMKLIRNGDGTFVFRPKPEAVDPIFPYVEGVGYQIDYDEHIQYGKKLPHRLHINYQSPVMLKKGMWSFRKTPNNFGVFTRRHGFFVTTGCMMSNYFGVDVYPMGSVLTVSGKNTVVDKPVSLKMKAKGYNSELYVRLEGDGPKLYGTDMNPDGYELEPHIGAAPAGWQYGTSFFYYDPNGWRNSFLPVIDGNRMSWYDYGSTFPAFLGQPGSKVPTNRYFIGANPTIMTWDTSKGRKIPTISTLPMNVMVNGVDYFTSGTEFVIPAEYTGIVNIKMFHANTLKWAPGLVSISDIGNKVTVLDFSNSEGFSISAPLPRRIKTLNQTFKGAKAAAYPGIENWDVTHIQEFVETFRGAPLFNQPLNWVCTEGRMFNGMFQDCPVFNQDISGFKPVNGTLFYNMLRDTGAFNKPINWKLNSVQSMKGFLRGAKAFNSSVTGIQIKSLAGLQEFFMETSVYNQTLDGWDWSLVSSVQDMFNGAKAFNKDINQNAPQCHTVTQMFRYNQVFNSKVNIQLPICVNFHRMFEQTKVFNQKLPNWSFSPGTSLTEMFRGAEAYNQSMDHWMMERVVSVRGMFRDAVAFNTPVKTWKFYKLRDCAYLFAAPNFNADVNDIQWPNDKTLDIDAGGIFYGALVFNKPLNKWNVSAFGQFNGMFNNAPVFNQDISMWDTSNCWRMANLFLRATAFSGDISKWDVSKVIDFSQFAANAINFKSDLSKWKVGACLNFNRMFRHALAFNSPIGDWDVSNGVDFESMFDAYHITETVTEPNYAMTFNQDISKWNVGKGVKFNAMFRKCESFNQDISNWNMGNAEETGAMFQNCYLFNADLSKWNPGRLMNIKYMFYKASSFNRSIGHWDVSRCTEFTQVFLGATEFNQNLNNWNVSNGTDFKGMFESATKFNGTIGGWDVRKGVTFNRMFWHCFALDQDISAWRVDSGQNFQDMFRDCYYYNSPMNDWGMGNAITCTDMFTGCLTFNQPLDKWNTSRVTSMQAMFYKTPKFNQNLNNWTTSSVLNMANMFKGASVYNQPMDKWDVSKVTDFTNMFGPIADTDPYAFNQPLATWNTASAVNMTAMFRMCWNFNQKLTGWNTSNVTSMAVMFYRCERLVDPDVNGWNVGKVWSFESMFQGCSLFNGSLFAWRPVEARNMASMFQGATKFNSNISSWNMTKVGTFASMFQSAEAFNQDISGWNTSAATDMSNMFYGAVVFNAPIGSWNTGNVNNMSGMFHEARIFNQPIGTWNVGKVQTMESMFENAKRFNQPLANWNVSAVTTMSHMFHGAEKFNGLLTNWSTASVTDISWMFKVANDFNQPIGHFNTSKVTKMNNMFGAFYIGTANYFNQDISGWDVSNVVTMERMFEHANSYNKPMPNWKTGKVTSMDGMFKGARVFNQDISGWDVGNVTTMAEMFRNATMFNAPIGSWNTGNVTAMNNMFDGYEPDGDIGRSMVFNQPIGDWNVSNVTDFTAMFRFCPKFNADLQYWKVDKGTLFTSMFEEATIFNADISKWNVSNATNLGWMFRKAAAFNRDLSSWNTSKVTVMRAIFDGASAFNQPLNTWDVSKVADFGYFFNGAKVFNQDLSNWNTISATNMADMFHGATAFNKPIGNWNVSNVIAMNGMFTEATAFAQDISGWNVGKVANFNSMFRAALNFNSPVNDWNVSSATQMGSMFKGCPKFNQPLNKWDVSKVTNFGYMFDGWEDYPNGTTVHDMIFNQDLSMWNVSAGTTFHYMFRNCAAYNQSMANWKVGNATTMVAMFSNCKELTDPGIGVWDVRKVTLANYMFASCYKFNSNIAPWSTLACTNMDSMFENARLFNQDLSVWNVAKVTTHVNFDTGAAAWTKPRPNFA
Physico‐chemical
properties
protein length:2676 AA
molecular weight: 302321,47520 Da
isoelectric point:6,32558
aromaticity:0,13901
hydropathy:-0,35269

Domains

View on InterPro
QDJ97118.1
1 2676 aa
STR 1163–1278 · STR 1360–1450 · STR 1499–1595 · STR 1625–1793 · STR 1890–1974 · STR 2020–2124 · STR 2168–2461 · STR 2480–2592 ·

ATT Attachment Domain STR Structural Domain RBD Receptor-Binding Domain CBM Carbohydrate-Binding Module LEC Lectin-like Domain ENZ Enzymatic Domain CHP Intramolecular Chaperone LNK Linker/Spacer Domain TAS Tail-Associated Structural TTP Tail Tubular Protein UNK Uncharacterized Domain Unmapped

Tail Spike Domain Segmentation

Segmented into three structural domains: N-terminal, central, and C-terminal.

QDJ97118.1
1 2676 aa
Domain Start End Length (AA) Confidence
N-terminal 1 40 40 0,5792
Central domain 41 2665 2626 0,9508
C-terminal 2666 2676 10 0,1762
N-terminal Central domain C-terminal

View these domains on the 3D structure via the Color by → Tail spike option in the Tertiary structure section below.

Taxonomy

Coding sequence (CDS)

Genbank protein accession
QDJ97118.1 [NCBI]
Genbank nucleotide accession
MN102098 [NCBI]
CDS location
range 119548 -> 127578
strand +
CDS
ATGTACATAGATAAGGATAAACCTCACCAGGAACCTGAACCCAGGGATAATCCTGTTGGGGTTGTGCTGAATGAGTTCATCAAGAACGACCGTAAAGCACAAGAAGTAACAGGTGATGTTGCAGACACTATCCTTGAAATAGTGGAAGCCAAAACAGACATCGAGAAACGCATTGACGAATTCTCCAAAGATGTCACAGATAAAATCGCCGAACATACCAGTCGTGTTGGTGCCATCCATGGTGAAACCAAGGTCACCGTTGGGCTCGGTAACAAAGATAACTTCAGGATGGGGACCATCGCAGAACACATTGCTGGTGCTCCCGATAACGTTTATGCTCATCCTGCTGGTTTGAAAGAACTGGTACAATCCAGAGTGAAGGTCAACCCGGACAACTACATCCCGGCAGGGATTATCCCCTACGCCCATGGCGGGATGATTGGTGAAGTTCCCCAGTACGAGTACGATACCAGCATTGGTGAAATGCTCCAAAGTGCACTTGATCCCAAAGACTACATGTTTGAGACTCCTTGGGAATTCAGCACTAGTTCTGGATCACTCGTTTTCCCATCACTCAACCACTCTCCTACCCACGGGATCTATACCCAACTGGGTGCGGTCACACCTACCCTTAACTCTCCTCACGGCGGGACCAAGATTCGTGTCTATAACAAGACGCTGGATGCTCGTAAAACTCGCCCTAGCAACATCAGGGCATGGAGTAGCAACGGGCTAGGAGATATGGCTCAAGTCGACTCCTCTTTGATGGACCGGTACTCAGTGTTCCTTAAAGAAGGTTCTGAGTGGGTGGTGCGTTCTTTTAATAAGAACATTATCCCGGTGGACTATTTCAAACTGGGTGCATTTTATCCTGGTAAGCCCTCAGGCATGTTCCAGTTCTCCGAAGGACTCATGTATAACTTGGTCCATAACCAAAGTTACAGCAATCCCATCGGTGAAAGTTCTCCTGAAATCCACAGTCGGTACGACTATCTGACTTTCGGGTTCCGCATCAATGATTACAATGCCGTTAATGGCGGTGATCAAGGTGCAGAACAAGAAGGGACATTACTCGGACGGATTGGTAGTTTCACCGGGACAGTTCCCGCACACGGTAAACTTAAGTTCACCAATGATGCTGCGAACAAACAAGGCTCTATTGTAATCAAACTCAGTTCACTGGTTCAAATGCCTGCTGGTGTCCAACCTGAACTCGTCAAGAATATGTCGATTAAAGAGTTTGGTAACAAGATCGGATTTGCTTGGAACAACCGTATGGCGTTTCATAGCTACATTCGTCTCCCTATGGGTTGGTGGAACAAGAACCGCACTAAGTACTGGCATGCTTGGCTCGACTTCGAGATTATCGATGTCCCTGGGACCACAACGGTCGCATCTCAGTTGAGAATCAATACCCTCGACCCGGCTTGGAATAATCCTCGTCAGGTGATGAACGCTAACTACGATTTGACTGGCGAAGGTCTCTTCAAGGAATACGCTCCAGATGTACGGGAGAACCCGACACATCCGCTGGCGCTTGGTGGTATCTTCGAATCACTGGGTGGTCACGTCAAAACCCACACCATGTACGGTCGTCAGTACGTAAGTTATGTTCACCACGGTTATGGCGATGTATTGTCCATGATCCAAGGTGGTTCGGGTAAATTCCCGGCAGCGACTGAAGAGGAACATAGTGTTCGTTCCACGCTGAACAGTAACGGCCTGTTTGGAGACCATCTCCGGCACATCCCTGTCAATGTAAACCGGCTCCAAGGGGATAATGCAGGTGAGGTGACGTACCTCACTCAAGTGCGAGATAGCCGTGAACGTTATCGCTGGGCCAAAGTCGTTATAGATGGACAAGAAGAAGTTCAACAGAATCGGGCTTTCGGGAACTACCTCGCTCCCACTGTTCAAAGCTTTGACTGGATGGATCGTTCATTTGAACCGCCCAAACCGTTCCTCATCTCCAATGATGACTTCCAGGACGAGATGGGCATCAGCGGTATGGTGTTTACATCAGAAAACAGTTTCATCGGGTTTAGTCAGTACGAACTGACAGAAGCGACCGATAACAGTTTCCTGACGTACAAGGATCAGATCCGTCTTGATTCTAAAATCGAGTCTTGGGTGGCTAAGAACACCGGTGGTTATACCAATCCGGACATGCTGTTCTTTTATTTCCGTAACACAATTTTCTTTGTGTCTCGTTGTACTGTTCCTGGGGAATATCCTGCTGACGGTAAGGACGCAACCTGCGGGTACTTTGCCGACTGTCATGTTGTCGGGGATATCTTTACGGGTAAACGTGTAACCACGGTGGGAGACATTGGTGGGTCTGTTACCATGTCCAAGTTCAACCTGAACAAGAAATCCACGCTCGAGATCGATGATAACCACGTTTTCGGTATAGACCAATTAACGGGTCGTGATGTTTACATCATGATGACCAACCATGATAACACAACTCAGGCTCAGAGCCATGACGTCATGTTGAATATGGGTCCGTTCAAGAACTTCTATATCGAGATGAAACTGATCCGTAATGGTGATGGCACATTCGTGTTCCGACCCAAACCGGAAGCTGTGGATCCTATCTTCCCTTATGTGGAAGGTGTCGGGTACCAGATCGATTACGACGAACATATTCAGTACGGTAAGAAACTTCCTCATCGTCTCCATATCAACTACCAATCACCGGTAATGTTGAAGAAAGGCATGTGGAGTTTCCGCAAGACCCCTAACAACTTTGGTGTCTTCACTCGACGTCACGGGTTCTTTGTGACAACGGGTTGTATGATGTCGAACTACTTCGGTGTCGATGTTTACCCTATGGGTTCTGTCCTGACTGTCAGTGGTAAAAACACCGTGGTTGATAAACCCGTTTCGCTGAAGATGAAGGCAAAGGGTTACAACTCCGAACTGTATGTGCGTCTGGAAGGTGATGGTCCGAAGCTGTACGGCACCGACATGAACCCTGACGGGTATGAGTTGGAACCCCACATTGGTGCAGCACCTGCTGGTTGGCAGTACGGAACTTCCTTCTTCTATTACGACCCCAATGGGTGGAGGAATAGTTTCCTTCCGGTGATAGATGGAAACCGTATGAGCTGGTACGACTACGGTAGTACGTTCCCGGCGTTCCTCGGTCAACCAGGAAGTAAAGTTCCTACCAACCGTTACTTCATCGGAGCCAATCCGACGATAATGACTTGGGATACTTCCAAAGGCAGGAAAATACCGACTATCAGTACGCTCCCCATGAACGTAATGGTTAACGGTGTTGATTACTTCACTAGTGGTACAGAGTTTGTCATCCCGGCAGAATACACAGGGATTGTCAATATCAAGATGTTCCACGCCAACACGTTGAAGTGGGCACCTGGTCTGGTCAGTATCTCTGATATCGGTAACAAGGTAACTGTTCTGGACTTCTCTAATTCGGAAGGGTTCAGTATATCAGCACCTCTCCCGAGACGAATCAAAACCCTGAACCAAACCTTCAAGGGTGCGAAGGCCGCCGCTTACCCAGGGATTGAGAACTGGGATGTCACACACATCCAGGAGTTCGTTGAGACTTTCCGTGGTGCACCTTTGTTCAACCAACCCTTGAACTGGGTTTGTACAGAAGGTCGGATGTTTAACGGGATGTTCCAAGATTGTCCGGTGTTCAACCAAGACATCTCTGGATTCAAACCGGTTAACGGCACGCTGTTTTACAACATGCTCCGTGACACTGGTGCGTTTAACAAGCCGATCAACTGGAAGTTGAACAGTGTGCAATCCATGAAGGGGTTCCTGAGGGGTGCGAAAGCATTCAACTCCTCTGTGACTGGTATTCAAATCAAGTCACTTGCGGGACTCCAAGAGTTCTTCATGGAAACCAGCGTGTATAACCAAACCTTGGATGGTTGGGATTGGAGTCTGGTATCTTCCGTTCAGGATATGTTCAACGGTGCGAAAGCATTCAACAAGGACATTAACCAGAACGCTCCGCAGTGTCACACAGTTACACAGATGTTCCGGTATAACCAAGTCTTCAACAGCAAGGTTAATATCCAGCTCCCGATCTGTGTTAACTTCCATCGGATGTTTGAACAAACAAAGGTGTTCAACCAGAAGTTGCCTAACTGGAGTTTCTCGCCTGGAACAAGTCTGACAGAGATGTTCAGAGGTGCCGAAGCGTACAACCAGTCTATGGACCACTGGATGATGGAGCGAGTTGTCTCTGTTCGCGGAATGTTCCGTGATGCAGTTGCGTTCAATACTCCGGTCAAGACTTGGAAGTTCTACAAGCTGAGGGATTGTGCTTATCTGTTTGCAGCACCAAACTTCAACGCTGATGTAAACGACATCCAATGGCCTAACGACAAGACCCTGGACATCGACGCCGGTGGTATTTTCTACGGTGCATTGGTATTCAACAAACCACTGAATAAGTGGAATGTAAGTGCGTTTGGTCAGTTCAACGGCATGTTCAACAACGCTCCTGTTTTTAATCAGGATATCTCCATGTGGGATACCAGCAACTGTTGGCGAATGGCGAATCTGTTCCTGAGAGCGACAGCGTTTAGCGGGGACATTTCCAAGTGGGACGTCAGTAAGGTAATTGATTTCTCGCAGTTCGCTGCCAATGCAATCAATTTCAAATCTGACCTTTCCAAATGGAAGGTGGGTGCTTGTCTGAACTTCAATCGGATGTTCCGTCACGCTCTGGCATTCAACTCACCGATAGGTGATTGGGATGTGAGCAATGGCGTTGACTTCGAAAGCATGTTCGATGCGTACCACATAACGGAGACGGTCACCGAACCCAATTACGCCATGACCTTTAACCAGGACATCAGTAAGTGGAATGTAGGTAAGGGTGTCAAGTTCAATGCGATGTTCCGTAAGTGTGAGTCCTTTAATCAGGATATCTCCAACTGGAACATGGGGAATGCAGAAGAAACTGGTGCGATGTTCCAGAACTGTTACCTCTTCAACGCAGACCTCTCCAAGTGGAACCCGGGTCGTTTGATGAACATCAAGTACATGTTCTACAAGGCCAGTTCTTTCAACAGAAGTATCGGTCATTGGGACGTGAGTCGTTGTACCGAGTTCACCCAGGTATTCCTTGGTGCAACCGAGTTCAACCAAAACCTTAATAACTGGAACGTTTCTAACGGTACAGACTTTAAGGGGATGTTTGAGAGCGCTACCAAGTTCAACGGGACTATCGGTGGATGGGACGTTCGGAAAGGTGTTACTTTCAACCGGATGTTCTGGCATTGTTTCGCATTGGATCAGGATATCTCAGCTTGGAGAGTCGACTCTGGTCAAAACTTCCAGGACATGTTCCGTGATTGTTACTACTACAACTCTCCGATGAACGATTGGGGGATGGGTAATGCGATTACTTGTACTGACATGTTCACAGGCTGTCTGACGTTTAACCAACCGTTGGATAAGTGGAACACTAGCCGTGTCACCTCGATGCAGGCGATGTTCTACAAGACACCGAAGTTCAACCAGAACCTCAATAACTGGACGACATCCAGTGTGCTGAACATGGCCAACATGTTCAAAGGTGCGAGTGTGTACAACCAACCCATGGATAAATGGGATGTGAGTAAAGTCACCGACTTTACCAACATGTTCGGTCCTATCGCCGATACTGATCCGTACGCATTTAACCAACCTCTCGCTACTTGGAATACCGCTTCTGCGGTAAACATGACTGCGATGTTCAGGATGTGTTGGAACTTCAACCAGAAACTCACTGGTTGGAATACATCCAATGTTACCAGCATGGCTGTAATGTTCTATCGTTGTGAACGTCTGGTAGACCCTGATGTTAACGGTTGGAACGTCGGTAAAGTTTGGTCCTTCGAATCCATGTTCCAAGGTTGTTCGCTGTTTAACGGATCCCTGTTCGCCTGGCGTCCGGTGGAAGCACGGAATATGGCATCCATGTTCCAGGGCGCGACCAAGTTCAATTCCAACATTAGTAGTTGGAACATGACCAAGGTCGGTACGTTTGCCAGCATGTTCCAGAGTGCTGAAGCGTTCAACCAAGACATCTCCGGTTGGAATACTAGCGCGGCCACTGACATGTCCAACATGTTCTATGGTGCGGTAGTTTTCAACGCACCCATTGGTAGTTGGAACACTGGTAACGTAAATAACATGTCTGGTATGTTCCATGAAGCCAGGATCTTTAACCAACCAATCGGTACCTGGAACGTTGGTAAAGTCCAGACAATGGAATCTATGTTCGAGAACGCCAAGCGATTTAACCAACCTCTCGCTAATTGGAATGTTAGTGCGGTAACCACCATGTCTCATATGTTCCATGGAGCTGAAAAGTTCAATGGGTTGTTGACTAACTGGAGCACTGCATCGGTAACCGACATTAGCTGGATGTTTAAAGTCGCCAACGACTTTAACCAACCTATAGGGCACTTCAACACCTCCAAGGTAACGAAGATGAACAATATGTTCGGTGCCTTCTATATCGGAACGGCTAACTACTTTAACCAGGATATCTCTGGTTGGGATGTTAGTAATGTGGTGACAATGGAGCGTATGTTCGAACACGCCAATAGTTACAACAAGCCGATGCCGAATTGGAAGACCGGTAAAGTTACCAGCATGGATGGGATGTTTAAGGGTGCACGAGTCTTTAACCAGGATATCTCTGGTTGGGATGTGGGTAACGTGACCACGATGGCAGAAATGTTCCGTAACGCGACTATGTTCAACGCACCCATTGGTAGTTGGAACACTGGTAACGTAACAGCGATGAACAATATGTTCGATGGTTATGAACCTGACGGAGATATTGGTCGTTCCATGGTGTTCAACCAGCCGATCGGAGACTGGAACGTGAGTAACGTGACAGACTTTACAGCAATGTTCAGATTCTGTCCGAAGTTCAATGCCGATCTCCAGTACTGGAAGGTTGACAAAGGTACTCTGTTCACATCCATGTTCGAAGAAGCAACGATCTTTAACGCCGACATCAGTAAGTGGAATGTTTCTAATGCCACTAACCTGGGTTGGATGTTCAGGAAAGCCGCTGCGTTCAACCGCGACCTCTCTTCTTGGAATACCTCCAAGGTGACAGTGATGCGGGCCATCTTCGACGGAGCCAGCGCCTTCAACCAACCGCTTAACACCTGGGATGTTTCCAAGGTCGCTGACTTCGGCTACTTCTTCAACGGTGCGAAAGTATTCAACCAAGATCTGTCTAATTGGAACACAATCTCCGCCACAAACATGGCCGATATGTTCCACGGCGCTACAGCCTTTAACAAGCCGATTGGAAACTGGAACGTGAGTAACGTAATAGCAATGAACGGAATGTTTACCGAGGCCACGGCGTTCGCCCAGGACATTTCCGGTTGGAATGTTGGTAAGGTGGCGAACTTCAACTCGATGTTCCGTGCTGCGTTGAACTTCAACAGTCCAGTTAATGACTGGAACGTGAGTTCTGCAACACAGATGGGTTCGATGTTCAAGGGTTGTCCTAAGTTTAACCAACCGCTGAATAAGTGGGACGTTAGCAAGGTGACAAACTTTGGTTACATGTTCGATGGTTGGGAAGATTACCCTAACGGCACCACAGTTCACGATATGATCTTTAACCAAGATCTGTCTATGTGGAACGTTAGCGCTGGCACTACTTTCCATTACATGTTCCGGAACTGTGCTGCGTACAACCAGTCCATGGCTAATTGGAAGGTTGGTAATGCAACGACTATGGTTGCCATGTTCTCCAACTGTAAGGAACTCACAGACCCGGGCATCGGTGTTTGGGATGTTCGTAAGGTTACACTGGCTAACTACATGTTTGCTAGTTGCTATAAGTTCAATTCCAATATTGCACCTTGGAGTACGTTGGCGTGTACCAACATGGATTCCATGTTTGAAAACGCCAGGTTGTTCAACCAGGATCTGAGTGTCTGGAACGTCGCCAAGGTGACGACCCATGTTAACTTCGATACTGGAGCGGCCGCTTGGACCAAACCACGTCCTAACTTCGCTTAA

Genome Context

Tertiary structure

QDJ97118.1
ColabFold structure
Source ColabFold
pLDDT 59.0
Oligomeric state monomer

Literature

Title Authors Date PMID Source
Complete genome sequence of Aeromonas hydrophila bacteriophage D3 Rai,S., Tyagi,A., Kumar,N. and Singh,N. 2020-06-10 — GenBank