Protein

Genbank accession
YP_009790473.1 [GenBank]
Protein name
tail protein
RBP type
TSP
Evidence DepoScope
Probability 1,00
TSP
Evidence RBPdetect2
Probability 0,61
Protein sequence
MGLVSQSVKNLKGGISQQPDILRFSNQGALQINGWSSETQGLQKRPPTTFTKRLQNKGFLGTKPLVHLINRDAQEQYFVGFSGTGLAVWDLKGNNYTVRGYNGYANCANPRTDLRLITVADYTFVVNRNTVCQMGSTLTNPSYPRLDGRAIINVRGGQYGRTLSITINGDGTGSSPQASIKMPNGSAEKVPAGDPYAGMNQVDMTDASWIAAELARQLTVSLGGSGWSFQAGTGWILINAPANDNIRQIATKDGYADTLLSGFIYQVQTFTKLPANAPPGYLVEITGESARSGDNYWVQYDASGKVWKETAKPKIIAGFNNATLPHALVRAADGQFDWTPLTWDGRNAGDDDTNPMPSFVGAAINDVFFFRNRLGFLSGENVVMSRTSKYFNFFPSSVATLSDDDPIDVAISHNRISILKYAVPFSEQLLLWSDQAQFVLSSNGILSSKTIELDLTTEFDVSDGARPYGIGRGVYFAAPRASFTSLKRYYAIQDVSDVKSAEDVSAHVPSYITNTVHAIHGSGTENFVSILSDGSPNKVFIYKFLYLDEILQQQSFSHWEFGDAATTRVLAASCIGSYCYLMIDRPEGLCLERMEFTQHTIDYSIEPYRTYMDMKKTIVLGAYNIDTNLTSFDVRTAYGGTPGPESTFYTIDQQGVLIEHEARDWATNPYISFVGNRAGEQMVIGKQYTFQYEFSKFLIKQTADDGSTSTEDIGRLQLRRAWLNYEESGAFEINVNNGSSEFVYVMTGGRLGIQRVLGELSVGTGQFKFPVTGNAVNQRVTITSSNPNPLNVIGCGWEGNYIRRSSGI
Physico‐chemical
properties
protein length:808 AA
molecular weight: 88870,44600 Da
isoelectric point:5,65528
aromaticity:0,11139
hydropathy:-0,26869

Domains

Domains [InterPro]
YP_009790473.1
1 808
Legend: Pfam SMART CDD TIGRFAM HAMAP SUPFAM PRINTS Gene3D PANTHER Other

Taxonomy

  Name Taxonomy ID Lineage
Phage Pseudomonas phage WRT
[NCBI]
2783803 Viruses > Duplodnaviria > Heunggongvirae > Uroviricota > Caudoviricetes
Host No host information

Coding sequence (CDS)

Coding sequence (CDS)
Genbank protein accession
YP_009790473.1 [NCBI]
Genbank nucleotide accession
NC_047826 [NCBI]
CDS location
range 24504 -> 26930
strand +
CDS
ATGGGACTCGTTTCGCAATCCGTCAAGAACCTCAAAGGAGGTATCTCGCAACAACCAGACATCCTTCGGTTCTCCAACCAAGGCGCTCTGCAAATCAACGGGTGGTCCTCGGAGACTCAAGGTCTTCAGAAGCGTCCACCGACCACCTTCACCAAGCGACTCCAGAACAAGGGTTTCCTCGGCACCAAGCCGCTGGTTCACCTCATCAACCGGGACGCCCAAGAGCAATACTTTGTGGGCTTCTCTGGGACCGGTCTGGCAGTCTGGGACCTGAAGGGCAACAACTACACCGTGCGTGGCTACAACGGTTACGCCAACTGCGCCAACCCTCGGACTGACCTGCGCCTCATCACCGTGGCCGACTACACCTTCGTGGTGAACCGGAACACCGTGTGCCAGATGGGATCGACCCTGACCAACCCTTCGTATCCACGGCTGGACGGTCGAGCGATCATCAACGTGCGTGGTGGTCAGTATGGACGAACACTGTCGATCACCATCAACGGTGACGGAACTGGGTCCAGTCCACAAGCGTCCATTAAGATGCCCAACGGGTCTGCCGAGAAGGTGCCCGCTGGTGACCCATACGCTGGCATGAACCAAGTGGACATGACAGATGCCTCATGGATCGCCGCTGAGCTGGCTCGGCAACTGACAGTCTCTCTGGGAGGCTCTGGGTGGTCGTTCCAAGCAGGCACCGGGTGGATTCTCATCAATGCCCCTGCCAACGACAACATCCGCCAGATCGCAACCAAGGACGGCTACGCTGACACCCTGCTCAGTGGGTTCATCTATCAGGTCCAGACCTTCACGAAGCTCCCTGCGAACGCCCCACCGGGTTACCTCGTGGAGATCACTGGTGAGTCTGCCCGTTCGGGTGACAACTACTGGGTCCAATATGACGCCTCTGGGAAGGTCTGGAAGGAGACAGCGAAGCCCAAGATCATCGCAGGGTTCAACAACGCAACGCTCCCACACGCGCTCGTGAGGGCCGCTGACGGGCAGTTCGACTGGACTCCCCTGACGTGGGATGGCCGGAACGCTGGTGACGATGACACGAACCCAATGCCGTCCTTCGTAGGCGCTGCGATCAACGACGTGTTCTTCTTCAGGAACCGTTTGGGTTTCCTCTCGGGTGAGAACGTCGTGATGTCTCGGACCTCGAAGTATTTCAACTTCTTCCCGAGCAGCGTGGCGACCCTGAGTGATGACGACCCAATCGACGTGGCTATCTCGCACAACCGTATCTCGATCCTGAAGTACGCTGTGCCGTTCTCTGAGCAGCTCCTGCTGTGGTCCGACCAAGCTCAGTTCGTTCTGTCGAGCAACGGTATCCTGTCGAGCAAGACCATCGAGCTGGACCTGACCACTGAGTTCGACGTGAGCGATGGTGCCCGTCCCTATGGGATTGGTCGCGGGGTCTACTTCGCAGCTCCACGGGCCTCCTTCACGTCCCTCAAACGGTACTACGCGATTCAGGATGTCTCTGACGTGAAGTCCGCTGAGGATGTCTCTGCGCACGTTCCGAGCTACATCACGAACACCGTCCACGCGATCCACGGGTCTGGTACTGAGAACTTTGTGAGCATCCTTTCGGACGGATCGCCAAACAAGGTCTTCATCTACAAGTTCCTGTACCTCGACGAGATTCTCCAGCAGCAGTCCTTCAGTCACTGGGAGTTCGGTGATGCGGCCACAACCCGTGTCCTCGCAGCCTCGTGCATTGGCTCCTACTGCTACCTGATGATCGACCGACCAGAGGGCCTGTGCCTTGAGCGCATGGAGTTCACGCAACACACCATCGACTATTCCATCGAGCCTTACCGGACCTACATGGACATGAAGAAGACCATCGTCCTCGGTGCCTACAACATCGACACGAACCTGACTTCATTCGACGTTCGGACTGCCTATGGTGGGACACCGGGTCCTGAGTCCACGTTCTACACCATCGACCAGCAAGGGGTTCTCATCGAACACGAGGCGCGGGACTGGGCGACCAATCCGTACATCTCGTTCGTGGGCAACCGGGCTGGTGAGCAGATGGTGATCGGCAAGCAGTACACCTTCCAGTATGAGTTCAGCAAGTTCCTCATCAAGCAGACCGCTGACGATGGGTCCACCTCGACCGAGGACATTGGACGCTTGCAGCTTCGTCGTGCGTGGCTGAACTACGAGGAATCTGGTGCCTTCGAGATCAACGTCAACAACGGCTCCAGTGAGTTCGTCTACGTGATGACTGGTGGTCGCCTCGGGATTCAACGAGTCCTCGGTGAGTTGTCCGTGGGTACTGGTCAGTTCAAGTTCCCTGTGACCGGCAATGCCGTCAACCAACGAGTCACCATCACCAGCTCCAACCCGAACCCACTCAACGTGATCGGATGCGGCTGGGAAGGTAACTACATCCGCCGTTCTTCCGGCATCTAA

Gene Ontology

No Gene Ontology terms available.

Enzymatic activity

No enzymatic activity data available.

Tertiary structure

PDB ID
92658674267306065557b624a1a03bf74f0e3043e0ee8c66254a869b057391cd
ESMFold
Source ESMFold
Method ESMFold
Resolution 0,8971
Evidence 0,8971

Literature

Title Authors Date PMID Source
Complete genome sequence of two novel autographiviruses infecting bacterium from Pseudomonas fluorescens group Barylski,J., Nowicki,G. and Walkowiak-Nowicka,K. 2017-05-27 GenBank