Genbank accession
WEU80260.1 [GenBank]
Protein name
tail protein
RBP type
TSP
Evidence DepoScope
Probability 1,00
Protein sequence
MALVSQSIKNLKGGISQQPEILRYPEQGTLQVNGWSSETEGLQKRPPMVFIKSLGGRGYLGEDPYIHLINRDEYEQYYAVFTGNDVRVFDLSGYEYQVRGDRSYVTVNNPKDNLRMVTVADYTFIVNRTRQVRESQNLTNGGTFRDNVDALINVRGGQYGRKLEVNINGVWVSHQLPPGDNAKDDPPKVDAQAIAEALATLLRTAHPMWTFNVGTGFIHCIAPAGTTLDILETKDGYADQLINPVTHYVQSFSKLPLNAPDGYMVKIVGDTSKTADQYYVKYDKSQKVWKETVGWNISIGLDYTTMPWTLVRAADGNFDLGYHDWKDRRAGDEDTNPQPSFVNSTITDVFFFRNRLGFISGENIVMSRTSKYFEFYPPSVANYTDDDPLDVAVSHNRVSVLKYAVSFAEELLLWSDEAQFVLSANGVLSAKTAQLDLTTQFDVSDRARPYGIGRNIYYASPRSSFTSIMRYYAVQDVSSVKNAEDMTAHVPNYIPNGVYSINGSGTENFACVLTKGAPSKVFIYKFLYMDENIRQQSWSHWDFGDGVEVMAANCINSTMYLLMRNAYNVWIAAVDFKKDSTDFPFEPYRFHVDAKRSYHISETAYDIETNQTVVNIKYIYGASFYNGTVAICESDGKITEYEPTGSSWDSTPDIRISGDISGKDIVIGFLYDFQYVFSRFLIKQEQNDGTTSTMDSGRLQLRRAWVNYQDTGAFTVSVDNGNREFNYLVNARVGSTGLRLGQKATTTGQYRFPVTGNALYQKVSLSSFNASPVSIIGCGWEGNYTNRASGI
Physico‐chemical
properties
protein length:791 AA
molecular weight: 88889,18180 Da
isoelectric point:5,41979
aromaticity:0,12516
hydropathy:-0,38205

Domains

View on InterPro
WEU80260.1
1 791 aa
TTP 1–791

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.

WEU80260.1
1 791 aa
Domain Start End Length (AA) Confidence
N-terminal 1 140 140 0,9919
Central domain 141 345 206 0,1684
C-terminal 346 791 445 0,2111
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
WEU80260.1 [NCBI]
Genbank nucleotide accession
OQ579025 [NCBI]
CDS location
range 23797 -> 26172
strand +
CDS
ATGGCTCTCGTATCACAATCAATCAAGAACCTCAAGGGAGGCATTAGCCAGCAGCCTGAAATCTTACGGTATCCTGAGCAGGGTACACTTCAGGTCAACGGTTGGTCCTCCGAGACTGAGGGTCTCCAGAAGCGGCCACCCATGGTGTTCATCAAGTCCTTGGGAGGCCGTGGGTATCTTGGGGAAGACCCATACATCCACCTCATCAACCGAGATGAGTACGAGCAGTATTACGCCGTGTTCACAGGGAATGACGTTCGGGTGTTCGACCTGTCCGGCTATGAGTATCAGGTCCGTGGCGACCGCTCTTATGTGACCGTCAACAATCCTAAGGATAACTTGCGGATGGTCACAGTGGCTGACTACACGTTCATTGTGAACCGTACCAGACAGGTCCGAGAAAGTCAGAACTTGACCAACGGTGGTACCTTCAGAGATAACGTGGATGCCCTCATTAACGTTCGCGGTGGTCAGTATGGGCGTAAGCTCGAAGTGAACATTAACGGCGTGTGGGTGAGTCACCAGCTCCCTCCGGGCGACAACGCTAAGGATGACCCGCCGAAGGTAGACGCACAGGCTATCGCTGAGGCCCTAGCGACTCTTCTCAGAACGGCACACCCTATGTGGACGTTCAACGTGGGAACAGGGTTCATTCATTGCATAGCTCCGGCAGGCACCACACTTGACATATTAGAGACAAAGGATGGGTATGCGGACCAGCTAATCAATCCGGTAACCCATTACGTCCAGAGCTTCTCTAAGTTACCCCTGAACGCACCAGATGGGTACATGGTGAAGATTGTCGGGGACACATCCAAGACAGCTGACCAGTATTACGTTAAGTATGACAAGAGTCAGAAGGTCTGGAAGGAAACTGTTGGATGGAACATCTCGATAGGACTGGATTACACCACTATGCCTTGGACACTGGTTCGCGCAGCTGATGGTAACTTCGACCTCGGGTATCATGATTGGAAGGACCGACGTGCGGGCGACGAGGATACCAACCCTCAACCGTCGTTTGTGAACTCAACGATAACTGACGTGTTCTTCTTCAGGAACCGCTTAGGGTTCATCTCTGGGGAGAACATTGTGATGTCCCGTACCAGCAAATACTTCGAGTTCTACCCGCCGTCAGTGGCCAACTACACGGACGATGACCCGCTGGATGTTGCTGTAAGTCATAACCGAGTGTCGGTCCTCAAGTATGCTGTGAGCTTCGCTGAGGAGCTTCTACTGTGGTCTGATGAGGCACAGTTCGTCCTGTCGGCCAACGGGGTGTTATCCGCTAAGACCGCACAGCTAGACCTGACCACCCAGTTCGACGTGTCAGACCGCGCTCGTCCTTACGGTATCGGCAGGAATATCTACTATGCGTCTCCTCGCAGCTCCTTTACGTCCATCATGCGCTACTACGCGGTACAGGATGTAAGCTCTGTGAAGAACGCAGAGGACATGACGGCTCACGTACCAAATTACATCCCGAACGGTGTGTATAGCATCAACGGGTCTGGTACGGAGAACTTCGCGTGTGTACTGACCAAAGGTGCTCCCAGCAAGGTGTTCATCTACAAGTTCCTCTACATGGATGAGAACATTCGGCAGCAGTCGTGGTCCCACTGGGACTTCGGGGATGGTGTGGAAGTGATGGCAGCAAACTGTATCAACTCAACGATGTACCTACTGATGCGAAATGCCTACAACGTGTGGATAGCTGCGGTGGACTTTAAGAAGGACTCGACGGACTTCCCATTCGAGCCTTATAGATTCCACGTGGACGCCAAGCGGTCGTACCACATCTCAGAGACTGCGTATGACATTGAGACGAACCAGACGGTAGTGAACATCAAGTACATCTACGGTGCGTCGTTCTATAACGGTACCGTGGCAATCTGCGAGAGTGACGGTAAAATCACTGAGTACGAGCCTACTGGTAGCTCTTGGGACTCTACGCCAGACATTCGAATCAGCGGGGACATCTCTGGTAAGGATATCGTCATCGGGTTCCTGTACGACTTCCAGTACGTGTTCAGTCGGTTCCTCATCAAGCAGGAGCAGAATGACGGGACAACGTCAACTATGGACTCTGGTCGTCTACAGCTGCGTAGAGCTTGGGTGAACTATCAGGACACTGGTGCGTTCACTGTGAGCGTCGATAACGGCAACCGTGAGTTCAACTATCTGGTCAACGCTCGGGTAGGCTCTACTGGGCTCCGTCTTGGGCAGAAGGCCACAACTACTGGTCAATACCGCTTCCCTGTGACGGGTAACGCCTTGTACCAGAAGGTGTCCTTGAGTTCCTTCAACGCTTCCCCTGTGTCAATCATTGGGTGTGGCTGGGAGGGGAACTATACCAACCGCGCCAGCGGTATTTAA

Genome Context

Tertiary structure

WEU80260.1
ColabFold structure
Source ColabFold
pLDDT 30.1
Oligomeric state monomer

Literature

Title Authors Date PMID Source
A hybrid and poly-polish workflow for the complete and accurate assembly of phage genomes: a case study of ten przondoviruses Elek,C.K.A. and Adriaenssens,E.M. GenBank