UniProt accession
A0A6J5KUM5 [UniProt]
Protein name
Bacteriophage T7 tail fibre protein
RBP type
TF
Evidence UniProt/TrEMBL
Probability 1,00
TF
Evidence Phold
Probability 1,00
TF
Evidence RBPdetect
Probability 0,90
TF
Evidence RBPdetect2
Probability 0,95
Protein sequence
MTFYNTYVYYSGNGTTTDYSVPFSYLNPSEVIVTRAGGSVSYTFLSSGVIRLSTPLAVGDSLKISRATGIATPAVVYRNGGNFTGTQLNTTINQLLNAMQDANDTAGQALLPDASSNWDAKSKKIKNLAAPSASTDAATKQYVDSLAMTPGPTGATGSVGPVGAVGPVGPFGPSGPIGPTGLQGPQGIAGAVGPQGLTGPQGPTGPTGPQGPTGAVGAQGATGLTGSTGATGANGSTGPTGSQGPTGPQGPTGSTGPTGPAGPTGPQGIQGATGAQGQSFSPTYIANSSVRSTYNTAATGTSFLATDLGSISFKNSATSGDWGDWIPFGRGATGATGSAGPTGPAGPTGATGATGAQGIQGVTGVTGPTGAAGSAGAAGPANTLTIGTVGTGASGSSASASISGTSPNQVLSLTLPQGATGPTGPTGPTGPTGPQGVQGVAGANGAKGAQWRGTYSYSTTYVVDDIVQYNGAAYICILSGTNITPPTSPTTSNTYWNLFVSGTITSAVNILYDTFSGNGANTAFTLNSAPGTGAVNVFIDGVYQQKSQYVISGTTITFSSPPSTGTSNIEVSTLVSSGVTGGVVDNSISTASLQSNAVTSAKIADSAVTSSKLVDGSITNAKLAFDGGALAGFRNKIINGGFDIWQRGGSINVSSHLQRVADRWNIDWTSGGTLGTLGVSYIKTAGWQAELLDGAPQICFISRSVAGSGNGFLDLSTQIENVSTLSNKTVTISAWVYGTSGKPLIVKTEQFFGSNGTPSSPVFNTSSTFTMNGAWQKITWTTSLASVDGKTLGTLGDDTLNVIFSLPPNDVFDFAITNAQIEAGTVATPFERRNPAIELLMCQRYYQKSYSITTTPGTVSYAGGYAANLVVAASVLPIHFFTPMRVAPSVTLYNTATGGTGTWRSGAANVSVTAGDIGSNGFYAATSGGTPGNSITGHWVADAEV
Physico‐chemical
properties
protein length:945 AA
molecular weight: 94103,52960 Da
isoelectric point:5,71911
aromaticity:0,07725
hydropathy:-0,04984

Domains

Domains [InterPro]
IPR050149
Unmapped
150–448
A0A6J5KUM5
1 945
Architecture
ATT
STR
STR
ATT
STR
ATT 1-166 | STR 167-203 | STR 207-453 | ATT 454-498 | STR 563-945
Legend: ATT STR RBD CBM LEC ENZ CHP LNK TAS TTP UNK Unmapped

Taxonomy

  Name Taxonomy ID Lineage
Phage uncultured Caudovirales phage
[NCBI]
2100421 Uroviricota > Caudoviricetes > Peduoviridae > Maltschvirus maltsch >
Host No host information

Coding sequence (CDS)

Coding sequence (CDS)
Genbank protein accession
CAB4124825.1 [NCBI]
Genbank nucleotide accession
LR796183 [NCBI]
CDS location
range 29257 -> 32094
strand +
CDS
ATGACCTTTTACAATACTTATGTTTATTATTCTGGAAATGGAACGACGACAGATTACTCTGTCCCATTCAGCTACCTGAACCCGTCTGAGGTCATCGTAACCCGTGCTGGTGGTTCTGTTTCCTATACCTTCCTCTCCTCTGGAGTGATCCGGCTGTCAACCCCGTTGGCAGTCGGTGACTCTCTCAAGATTTCTCGTGCTACTGGTATAGCGACTCCTGCGGTTGTATACCGTAATGGTGGTAACTTTACGGGGACACAACTCAACACAACTATTAATCAGCTCCTGAACGCTATGCAGGATGCTAATGACACAGCCGGTCAGGCTCTTCTTCCTGATGCGTCCTCAAACTGGGATGCTAAGTCAAAGAAGATCAAAAACCTTGCTGCACCATCAGCATCGACGGATGCAGCCACCAAACAATACGTTGACAGCCTTGCGATGACTCCCGGCCCTACAGGAGCTACCGGCTCTGTAGGCCCTGTTGGTGCTGTTGGTCCCGTTGGACCGTTTGGCCCAAGTGGACCCATTGGACCAACAGGTTTACAAGGACCGCAGGGCATTGCTGGCGCTGTGGGTCCGCAAGGATTGACTGGTCCCCAAGGCCCAACTGGCCCTACTGGCCCACAAGGCCCTACGGGTGCGGTTGGGGCGCAGGGGGCCACAGGCCTGACCGGTTCGACCGGAGCTACGGGTGCGAACGGAAGCACAGGACCTACAGGTTCACAAGGCCCGACTGGGCCACAAGGGCCTACAGGCTCTACTGGTCCGACAGGCCCTGCTGGCCCTACTGGCCCACAGGGCATTCAGGGTGCGACGGGCGCACAGGGGCAATCATTCTCGCCAACCTACATCGCCAACAGCTCTGTCAGATCAACATACAACACCGCTGCAACTGGAACATCTTTCCTCGCCACTGATCTTGGTTCGATCTCTTTTAAAAACTCAGCTACCTCTGGTGATTGGGGTGATTGGATTCCGTTTGGCCGTGGCGCAACAGGCGCTACTGGTTCTGCTGGTCCGACAGGCCCTGCTGGCCCTACTGGCGCAACAGGTGCAACGGGAGCGCAGGGTATTCAAGGTGTCACAGGTGTCACTGGTCCCACGGGTGCGGCGGGTTCAGCCGGTGCTGCTGGTCCCGCTAACACTCTCACCATTGGGACTGTGGGAACTGGGGCTTCTGGATCATCCGCATCTGCTAGCATCTCTGGAACATCCCCTAACCAAGTCCTGAGCCTTACCCTTCCCCAAGGCGCTACTGGCCCCACAGGGCCTACAGGGCCAACGGGTCCGACTGGTCCGCAGGGTGTTCAAGGCGTTGCGGGTGCTAACGGTGCTAAAGGCGCTCAGTGGAGAGGCACTTACTCCTACAGTACCACATACGTCGTCGATGACATCGTGCAGTACAATGGTGCGGCTTACATATGTATACTGAGTGGAACCAACATAACTCCACCAACGTCTCCAACCACGTCGAACACCTACTGGAACCTCTTCGTCTCTGGTACGATCACATCAGCCGTAAACATCCTATACGATACATTCTCTGGGAACGGTGCGAACACTGCCTTCACTCTTAACTCCGCTCCCGGCACTGGTGCTGTGAACGTGTTTATAGATGGTGTGTATCAGCAGAAGAGCCAGTATGTTATCAGCGGCACAACCATTACCTTCAGCTCTCCACCTTCAACAGGTACGAGCAATATTGAAGTGTCAACTCTGGTGTCGTCTGGGGTGACTGGAGGTGTTGTTGACAACAGCATCAGCACAGCTTCTTTACAGTCCAATGCAGTAACGTCTGCTAAGATTGCTGACAGTGCGGTTACTTCCTCCAAACTTGTTGATGGATCAATCACGAATGCTAAACTAGCGTTTGATGGAGGAGCGTTAGCTGGCTTCAGAAACAAAATTATTAACGGTGGTTTTGATATTTGGCAAAGAGGCGGATCAATCAACGTGTCTTCCCACCTTCAGCGTGTAGCCGACAGGTGGAACATTGATTGGACTTCTGGAGGGACGCTTGGAACGCTGGGCGTTTCATACATTAAAACTGCTGGTTGGCAGGCTGAGTTACTAGATGGCGCTCCTCAGATTTGTTTTATTTCAAGATCGGTTGCTGGATCTGGAAATGGTTTTCTCGATCTGTCTACACAGATTGAAAACGTATCAACTCTGTCGAATAAAACCGTAACCATCAGTGCTTGGGTTTATGGAACTTCTGGAAAACCGTTAATTGTAAAGACGGAGCAGTTTTTCGGAAGTAACGGCACTCCTTCTTCTCCTGTATTCAACACCAGTTCCACCTTCACTATGAATGGAGCGTGGCAAAAAATAACGTGGACCACGTCTCTTGCTTCTGTGGATGGAAAAACACTTGGTACGCTTGGAGATGACACTCTCAATGTCATTTTCAGTCTTCCTCCAAATGATGTGTTTGATTTCGCTATCACCAATGCTCAGATTGAGGCTGGAACAGTAGCAACTCCATTTGAACGAAGAAACCCAGCAATAGAGCTTCTTATGTGCCAGCGATACTACCAGAAGAGCTATAGTATTACCACAACGCCGGGAACTGTTTCATATGCAGGAGGTTACGCTGCCAATTTGGTTGTTGCGGCAAGTGTTCTTCCAATTCACTTCTTCACCCCCATGCGGGTTGCACCAAGCGTCACACTTTACAATACAGCAACGGGTGGGACAGGAACGTGGAGAAGCGGGGCTGCAAACGTATCTGTTACAGCAGGCGACATTGGGTCTAACGGGTTCTATGCGGCGACCTCTGGAGGTACTCCAGGAAACTCCATCACTGGACATTGGGTTGCTGACGCAGAGGTATGA

Genome Context

Genome Context

Gene Ontology

Description Category Evidence (source)
GO:0031012 extracellular matrix Cellular Component IEA:TreeGrafter (UniProt)
GO:0005615 extracellular space Cellular Component IEA:TreeGrafter (UniProt)
GO:0098015 virus tail Cellular Component IEA:UniProtKB-KW (UniProt)
GO:0030020 extracellular matrix structural constituent conferring tensile strength Molecular Function IEA:TreeGrafter (UniProt)
GO:0030198 extracellular matrix organization Biological Process IEA:TreeGrafter (UniProt)

Tertiary structure

PDB ID
3ed18b247db8c263481a686a043ca29900112b5d3d9f6147d6073bff0e68dc51
ESMFold
Source ESMFold
Method ESMFold
Resolution 0,7536
Oligomeric State monomer
Model Confidence
Very high
pLDDT > 90
High
90 > pLDDT > 70
Low
70 > pLDDT > 50
Very low
pLDDT < 50