Genbank accession
YP_004322186.1 [GenBank]
Protein name
tail fiber protein
RBP type
TF
Evidence GenBank
Probability 1,00
TF
Evidence Phold
Probability 1,00
TSP
Evidence DepoScope
Probability 1,00
TF
Evidence RBPdetect2
Probability 0,77
Protein sequence
MGLSRLDNFLKSSRGTILYVNPNDLDSTDSIENQGNSLTRPFKTIQRALIEAARFSYQRGLNNDRFGKTTILIYPGEHTVDNRPGYIPDGINNYRTRAGAITNDLPPYDLTSNLSLDSPDNELYKLNSIHGGVIVPRGTSLVGLDLRKTKIRPKYVPDPENDNIERSALFRITGACYFWQFTMFDADPNGVCYKDYTKNQFVPNFSHHKLTCFEYADGSNGVEINDTFQQYSTTRTDLDMYYEKVSLVYGQSSGRAISPDYPSSGLDIQAKIDEFRIVGSTGATVGITSIKAGDGVTSDTTITVTTATAVTGLEVDTPFRVSGITADSSIYNGQFVVSEKVSSTEIKYTVQNTPNNALPSVTGSSLQLQSDTVTSASPYIFNTSLRSVFGMCGMHADGSKATGFKSMVVAQFTGIGLQKDDKAFVKYNSDTGIYEDNTVSGNEILSTDSRAVYKPSYRNFHVKCSNNSVIQAVSIFAIGFSEHFVSESGGDQSITNSNSNFGAKALIADGFRKDAFTQDDVGYITHIIPPKEVSLTESAIEFDAIDVLKTLPSGYSSVGVGSTGNLYLYGRTNKDVPPENVLDGFRIGARTNDELKVLVSSAGSVTEYKARIVMPNSQSSAEKVFAVNRSATGINSIGTFSAGGADNVITLTADHTFLEGETVRVISDTGQLPDGLDANTVYHVRTSGLAANNIKLAKTFQDSLAGTNLLDINEKGGILKVVSRVTDKNAGDLGHPIQYDGTNGQWYVKVSTAASDNTLYPIVVGFGSTGFGVSTPRTFFNRKSDSRNANDTLYRMRYVVPASSGGTVARPPVEGFVLQESNTSIGSTNAEIQTYFGSGSISNINQQRNFRFIADATYSNGTASFVTELPHDLTVGSKVQIVNVTSANNTTGAGNSGFNYTADVTGISSAKMFTLGIGTDPGAFSNDTATRTVDLPYFKKKEYDDTLYVYRTQEVQEYRTGDQDGIYYLTVVTANEKPTVSPFNNEKYSQPVKSLFPQIQRDDPESDPDASRCFARSSLIGDIVINDPKKSITKEAANRYLKTNDVGVGITEIKSFGTAGTAHTVNTTIDHGLNRIVTLGITSAGAGYGAADSTFYNATLVGTGYSDVGKHATAKITTGSSGEITAITVMDGGSAYGIGNSMFVTGISTFAGFSSAIVTVDSIYNNVGDTVRISGVNSEGFIDYNQLYRITGIPVGGATSITVSSASSVGNYTETGIGATNATGSFLQLTGEAIGISSLTFDRVSGLGTVATSNRHGLSVDQKITISGATGAGADVYNGSFVVTEIVGTGGTGFTINLGVSTYAPEVAGTLFGFRDSLSSNGGVITIDNENLNGRMTPTYAGITTTLSAAVVNATTDEVNLTNIDKLDVRIGDFLMINDELVRVKTTVSGNPINVFRGVLGTRPTAHSLNDVVRRVKANPIELRRHSINRASGHTFEYVGFGPGNYSTALPDRHDRSISAEEELLAQSLKRQGGINFYTGMNDRGISYSGNKKLSTITGREEIFDTPFQTVEGEDISVLPSLNVINPVEAVIARSIRVEGGSDNKVSSQFNGPIIVNNKLTVNSTKGLESNNIFLQGDATISRKYTVGIATPGLAGNPGDLVYNANPTDGGYVGWIYSVQNDWRRFGAISLQTDANVMIFDRVGVGTTGPGEATFKVGAGTTQLSVDGDGVGIGTTADSRKFRVLGESLFHGNIAAGIITGTVLHGDGSNLTNINVSAAGWTNTGAVLYNTNLTSVGIGTSVSSVNLTVGDVHENTGAGRSTTLLVHGQGTFAGILTTRDAIVVGVLTASGYDLDNSTTGRINAGIVTVGTLNVGTGGTIITSTNSVGVGSIGINSTAPQATLDVDGHTFFKTYSERVKYLDISANVVTVDLSEAQTFICTATSDITQFTLTNAPIQATSFSIRVEQDSTGSRSVGIDTFKTTGGVDIPVYWPGNVVPQVTTTASRADIYSFKLFDGANPTTSGLYGVVGGQNFQN
Physico‐chemical
properties
protein length:1976 AA
molecular weight: 209774,99940 Da
isoelectric point:5,23575
aromaticity:0,08300
hydropathy:-0,17935

Domains

Domains [InterPro]

No domain annotations available.

Legend: ATT STR RBD CBM LEC ENZ CHP LNK TAS TTP UNK Unmapped

Tail Spike Domain Segmentation

Tail Spike Domain Segmentation

This protein has been segmented into three structural domains: N-terminal, central domain, and C-terminal.

Domain Layout
N-terminal
Central
C-terminal
YP_004322186.1
1 1976
Domain Start End Length (AA) Confidence
N-terminal 1 65 65 0,9770
Central domain 66 309 245 0,9428
C-terminal 310 1976 1666 0,2982
Legend: N-terminal Central domain C-terminal
3D Structure with Domain Coloring

The structure is colored according to the domain segmentation: N-terminal (blue), Central (green), C-terminal (pink).

Domain Coloring
N-terminal
1-65
Central
66-309
C-terminal
310-1976

Taxonomy

  Name Taxonomy ID Lineage
Phage Synechococcus phage S-SM2
[NCBI]
444860 Uroviricota > Caudoviricetes > Pantevenvirales > Nilusvirus > Nilusvirus ssm2
Host Synechococcus sp. WH 8017
[NCBI]
166321 Bacteria > Cyanobacteria > Oscillatoriophycideae > Chroococcales > Synechococcus >

Coding sequence (CDS)

Coding sequence (CDS)
Genbank protein accession
YP_004322186.1 [NCBI]
Genbank nucleotide accession
NC_015279.1 [NCBI]
CDS location
range 23060 -> 28990
strand +
CDS
ATGGGTCTTTCCAGATTAGATAATTTTCTGAAGTCTTCCAGAGGAACGATTCTTTACGTCAATCCAAATGATTTGGATTCTACTGATAGTATCGAAAACCAGGGTAATTCGCTGACTCGTCCGTTCAAAACTATTCAGCGTGCTTTGATTGAGGCAGCAAGATTTTCATATCAAAGGGGTCTGAATAACGATAGATTTGGTAAGACCACAATCTTGATCTATCCTGGTGAACACACTGTTGATAACAGACCAGGATATATTCCAGATGGTATAAACAACTATCGAACAAGAGCGGGTGCAATCACGAATGATCTCCCTCCGTATGACCTCACTTCAAATTTAAGTTTAGATTCTCCTGATAACGAACTCTATAAGCTTAATAGTATTCATGGTGGTGTAATTGTACCAAGAGGAACTTCATTAGTTGGTCTGGATCTTCGTAAGACAAAGATTAGACCTAAGTATGTTCCTGATCCAGAGAACGATAATATTGAAAGATCTGCACTGTTCAGAATCACTGGTGCTTGCTATTTCTGGCAGTTCACCATGTTTGATGCAGATCCAAATGGAGTCTGCTATAAGGACTATACAAAAAACCAGTTTGTTCCTAACTTCTCTCACCACAAACTCACCTGCTTTGAATATGCAGATGGATCAAACGGTGTAGAAATCAATGATACTTTCCAGCAGTATTCGACGACTCGTACTGACCTGGATATGTATTATGAAAAGGTCAGTCTTGTCTATGGACAGTCATCTGGACGTGCAATCTCTCCAGACTATCCAAGTTCTGGTCTTGATATTCAGGCAAAGATTGATGAATTCCGTATTGTTGGTTCTACAGGTGCTACCGTTGGAATCACAAGTATTAAGGCAGGAGATGGTGTAACTTCAGACACCACGATCACCGTCACCACTGCAACTGCCGTAACTGGTCTTGAGGTTGACACTCCTTTCCGTGTTTCTGGTATTACCGCAGATAGTTCAATATATAATGGTCAGTTTGTTGTATCTGAAAAGGTAAGTAGCACTGAAATCAAATATACAGTTCAAAATACTCCTAATAATGCACTACCATCAGTAACTGGATCATCTCTGCAACTGCAATCTGATACTGTTACCTCTGCATCACCTTACATCTTTAACACATCCTTGAGATCTGTGTTTGGTATGTGCGGTATGCACGCAGACGGATCTAAGGCAACTGGATTTAAGTCAATGGTCGTGGCACAGTTCACGGGTATTGGTCTGCAGAAAGATGACAAGGCATTTGTCAAATATAATTCTGATACTGGAATCTATGAAGACAACACAGTATCTGGAAATGAAATCTTAAGTACAGATTCAAGAGCTGTATATAAACCATCATATAGAAACTTCCACGTTAAGTGTTCTAATAACTCTGTTATTCAGGCAGTTTCTATCTTTGCTATTGGTTTCTCTGAGCACTTTGTTTCTGAAAGTGGTGGTGACCAATCTATCACCAACTCTAACTCCAACTTCGGTGCAAAAGCACTGATTGCAGATGGATTTAGAAAGGATGCATTTACTCAGGACGATGTTGGATACATTACTCACATTATTCCACCAAAAGAAGTTTCACTTACAGAGTCTGCAATTGAATTTGATGCTATTGACGTTCTGAAGACTCTCCCCTCAGGATATTCTTCTGTTGGTGTTGGTTCCACAGGTAACCTTTATCTTTATGGTAGAACTAACAAGGACGTTCCGCCCGAGAACGTACTTGATGGATTTAGAATTGGTGCAAGAACAAATGATGAACTTAAAGTTCTTGTATCATCTGCTGGATCTGTAACAGAGTACAAGGCACGTATTGTGATGCCAAATTCTCAGTCAAGTGCTGAGAAAGTATTTGCCGTTAATAGAAGTGCTACTGGTATTAACAGTATTGGTACGTTTAGTGCTGGTGGTGCAGACAATGTTATTACTCTGACAGCAGATCATACCTTCTTAGAGGGTGAAACTGTTCGTGTCATCAGTGACACTGGTCAACTTCCAGATGGTCTTGATGCAAATACCGTATATCACGTTAGAACCTCTGGGCTTGCTGCCAACAACATCAAACTCGCAAAAACTTTCCAAGATTCTCTTGCTGGAACAAATCTCCTTGATATCAACGAAAAAGGTGGAATTCTCAAGGTTGTAAGTAGAGTAACTGATAAGAACGCAGGTGATCTTGGTCACCCAATTCAATATGATGGTACAAATGGTCAGTGGTATGTAAAAGTATCCACCGCAGCAAGTGACAACACCTTATATCCTATCGTAGTTGGATTTGGATCAACTGGATTTGGTGTATCTACCCCAAGAACATTCTTCAACAGAAAGAGTGATAGTAGAAATGCTAACGACACTCTCTATAGAATGAGATATGTTGTTCCAGCATCTTCTGGTGGAACTGTAGCAAGACCCCCTGTTGAGGGATTTGTTCTCCAAGAATCAAACACTTCAATTGGTTCAACTAATGCTGAGATTCAGACTTACTTTGGATCTGGATCAATCTCTAACATCAACCAACAGAGAAACTTTAGATTCATTGCGGATGCAACATACTCTAATGGCACTGCAAGTTTCGTAACTGAACTTCCTCACGATCTGACTGTTGGATCAAAAGTTCAAATTGTAAATGTAACCAGTGCTAATAATACCACTGGTGCAGGTAATTCTGGATTTAACTATACTGCTGATGTTACTGGAATCTCCAGTGCTAAGATGTTCACTCTTGGTATTGGAACAGATCCAGGTGCTTTCAGTAATGATACTGCGACAAGAACTGTCGATCTCCCATACTTCAAGAAGAAAGAGTATGATGATACCCTTTATGTCTATAGAACACAAGAGGTACAAGAGTACAGAACTGGAGATCAAGATGGTATCTACTATCTGACTGTTGTAACTGCAAACGAAAAACCAACAGTATCACCATTTAATAACGAGAAGTATTCTCAACCAGTTAAGTCACTCTTCCCACAGATTCAAAGAGATGATCCTGAATCTGATCCAGATGCATCTCGCTGTTTTGCAAGATCTTCTCTGATTGGTGATATTGTCATTAACGATCCCAAGAAGAGTATCACTAAGGAAGCAGCTAACAGATACTTAAAGACTAATGATGTTGGTGTCGGTATCACTGAAATCAAGTCATTTGGAACTGCTGGAACAGCACACACTGTCAACACTACGATTGATCACGGTCTGAATAGAATCGTAACCCTTGGCATCACAAGTGCTGGTGCAGGTTATGGGGCTGCTGATTCTACTTTCTATAATGCAACCTTAGTTGGTACAGGTTACTCTGATGTAGGTAAGCACGCTACTGCTAAGATTACTACTGGTTCAAGTGGTGAGATTACCGCAATCACTGTTATGGATGGTGGTAGTGCATATGGTATCGGTAACTCTATGTTTGTTACTGGTATCTCCACTTTTGCTGGATTTAGTTCTGCTATCGTCACTGTTGACAGCATCTACAACAACGTTGGTGATACTGTAAGAATTAGTGGAGTCAACTCTGAAGGATTTATTGACTATAACCAACTCTACAGAATCACTGGTATTCCTGTTGGTGGTGCTACTTCTATCACTGTTTCATCTGCATCCTCTGTTGGTAACTACACCGAGACTGGTATCGGTGCAACCAATGCAACTGGATCCTTCTTACAATTGACTGGTGAGGCAATCGGAATCTCAAGTCTGACGTTTGATAGAGTTTCTGGACTTGGAACGGTCGCTACGAGCAACCGTCACGGTCTGTCGGTTGACCAGAAGATCACAATTTCTGGAGCAACTGGTGCAGGTGCTGATGTTTACAACGGATCCTTCGTTGTCACAGAGATTGTCGGAACTGGCGGAACTGGATTCACAATCAACCTTGGAGTAAGCACATATGCACCAGAGGTTGCAGGAACACTCTTCGGATTTAGAGATAGTCTGTCTTCTAACGGTGGTGTCATCACAATTGATAATGAGAATCTGAATGGTAGGATGACTCCTACCTATGCAGGTATCACAACCACGTTGTCAGCAGCAGTCGTCAACGCAACCACTGATGAAGTCAATCTTACTAATATAGACAAACTGGATGTAAGAATCGGTGATTTCTTGATGATCAATGATGAATTGGTCAGAGTCAAGACAACTGTTTCTGGTAACCCAATCAATGTCTTCCGTGGTGTCCTTGGAACAAGACCAACTGCACACTCACTTAATGATGTTGTAAGAAGAGTTAAAGCTAATCCAATTGAACTTAGAAGACACTCAATCAACAGAGCATCTGGTCACACATTTGAATATGTTGGTTTTGGTCCTGGTAACTACTCTACTGCACTGCCAGATAGACACGATCGTTCTATCTCAGCAGAAGAAGAACTCCTTGCACAATCACTTAAGCGTCAGGGTGGAATTAACTTCTACACTGGTATGAATGACAGAGGTATTTCATACTCTGGTAACAAGAAACTCAGTACGATTACTGGTCGCGAAGAAATCTTTGATACTCCATTCCAGACTGTTGAGGGTGAGGACATCAGTGTTCTGCCAAGTCTGAACGTTATCAACCCAGTTGAAGCTGTCATTGCAAGATCTATTCGTGTTGAGGGTGGTTCAGATAACAAGGTTTCATCACAGTTCAATGGTCCAATCATTGTCAACAACAAACTGACTGTCAACTCCACTAAGGGTCTTGAATCAAACAACATCTTCCTTCAGGGTGATGCTACGATTTCCAGAAAGTATACTGTTGGAATCGCAACTCCAGGACTTGCAGGTAACCCAGGTGACTTAGTTTATAATGCTAACCCAACTGACGGTGGATATGTTGGTTGGATCTATAGTGTTCAGAATGATTGGAGACGCTTCGGTGCAATCAGTCTTCAGACCGATGCAAATGTAATGATCTTTGATAGGGTCGGAGTGGGAACCACTGGACCTGGTGAAGCAACATTTAAGGTTGGTGCAGGAACAACTCAACTGTCAGTTGATGGTGATGGAGTTGGTATCGGAACAACAGCAGATAGCAGAAAGTTCCGCGTTCTTGGTGAGTCCTTGTTCCATGGAAATATCGCTGCTGGTATTATTACTGGTACAGTCCTTCATGGTGATGGATCAAACCTGACCAACATCAACGTTTCTGCTGCTGGTTGGACAAACACTGGTGCAGTTCTCTATAACACTAATCTCACATCAGTTGGTATCGGAACTTCAGTAAGTTCTGTCAACTTGACTGTTGGTGATGTTCATGAGAACACTGGTGCTGGTAGAAGTACAACCTTACTGGTTCACGGACAAGGTACGTTCGCAGGCATTCTTACCACCAGAGATGCGATTGTTGTTGGTGTTCTCACTGCATCAGGTTATGATCTTGACAACAGCACAACTGGCAGAATTAATGCTGGTATTGTTACCGTCGGAACTCTGAATGTTGGAACTGGTGGAACAATCATCACATCAACTAACTCGGTTGGTGTTGGTTCTATCGGTATCAACTCCACCGCACCTCAAGCAACACTTGATGTTGATGGACATACATTCTTCAAGACATACTCTGAAAGAGTTAAGTATCTTGATATTTCTGCAAATGTGGTCACTGTTGATCTCTCTGAGGCACAAACCTTCATCTGTACCGCAACTTCTGATATCACGCAGTTTACCTTAACTAATGCACCTATTCAAGCAACTTCATTCTCTATTAGAGTTGAGCAAGATTCAACAGGCAGTCGTTCTGTTGGTATAGATACATTTAAGACTACAGGTGGTGTTGACATCCCTGTTTACTGGCCAGGTAACGTTGTACCTCAGGTTACAACAACGGCAAGCAGAGCAGACATTTATTCATTCAAACTCTTTGACGGTGCAAACCCAACAACATCTGGTCTCTACGGTGTCGTAGGCGGTCAAAACTTCCAGAACTGA

Genome Context

Genome Context

Tertiary structure

PDB ID
2f142a0e2d421f8b8dd0d38731241afadf9fcce1bd42156cf42a863f40a14a90
ColabFold
Source ColabFold
Method ColabFold
Resolution 0,8521
Oligomeric State monomer
Model Confidence
Very high
pLDDT > 90
High
90 > pLDDT > 70
Low
70 > pLDDT > 50
Very low
pLDDT < 50

Literature

Title Authors Date PMID Source
The Genome Sequence of Cyanophage 8017-1 Henn,M.R., Sullivan,M.S., Osburne,M.S., Levin,J., Malboeuf,C., Casali,M., Russ,C., Lennon,N., Erlich,R., Young,S.K., Koehrsen,M., Yandava,C., Zeng,Q., Alvarado,L., Anderson,S., Berlin,A., Borenstein,D., Chen,Z., Engels,R., Freedman,E., Gellesch,M., Goldberg,J., Green,L., Griggs,A., Gujja,S., Heiman,D., Hepburn,T., Howarth,C., Jen,D., Larson,L., Lewis,B., Mehta,T., Park,D., Pearson,M., Roberts,A., Ryan,E., Saif,S., Shea,T., Shenoy,N., Sisk,P., Stolte,C., Sykes,S., Walk,T., White,J., Yu,Q., Coleman,M.L., Huang,K.H., Weigele,P.R., DeFrancesco,A.S., Kern,S.E., Thompson,L.R., Fu,R., Hombeck,B., Chisholm,S.W., Haas,B., Nusbaum,C., Galagan,J. and Birren,B. 2011-09-23 — GenBank