Genbank accession
XPP58160.1 [GenBank]
Protein name
hypothetical protein
RBP type
TSP
Evidence DepoScope
Probability 1,00
Protein sequence
MNKDFFFAVHFIKNFCFRHTWLAYESSIKDVVIEEGITNIRQGSFYDLSNAVSLSIPSTVNEMDAYGNNYFAEFKLAEGNSTYALIDGVLFNADKTELVMYPVRKADETYTVPAGVLILGNDSFSSSENLKTINISDDVTTMNESCFFYSSVETVHFGKNVNFIDYNAFSCSEIKNIVLPEKLTEIISSMFYSCSYLENLVIGSNVISIENDVINYCDALEAVHFTGTEAQWEAITKPENETDRINTIPVHFGALEEKTARDATCGADGHTAGLYCAQCDAYLSGEVIPATGEHESYTDGVCDVCDYECTHESYTDSKCDACGYECTHESYTDSKCDACGYECPHESYTDGVCDVCDYECPHEGYTNSICDVCGYECPHEGYTNSICDVCGYECHHEGQNGSCQVCGANLDKLVIDVTDELTVDIGKGYPYYDEDGYIITGTNPDAMVYVREETDLILSNLTTGRLVFQYAPDNSVINITLDGTTEVEFVDVYKSHIIFDGGETDTLKTSSFNTAGHPGSVTVNGGNIILDCVTEDTLPTIICAGGFIINGGTVTASNNYYYVVLDPVTLNGGELNMISTSTDYEAILGGIIIEKGALLTVSATKGILDMYSDIVMADDAEENDYFFVRYDTESEFAPVSDMKAALDGKTYAEIKIDTHEHSFENGKCVCGYECPHEGQNGSCQVCGANLGKLVIDVTDESYVSIDSSNYDEDGIILTGTTSGEVSVYEACDLTFNNVTVSGLNIAVADNAVINIAFEGTNEIAGRVALYKQHLVFEGSDDATFKAARFYNGGNSDSSVTVNGGNMVLETVGQSIYTINCGNFIINDGTVTASNDSYEVIGSPVKLNGGTLNVISTSGEYKAIRNEITIDKGALLTVSGAYKLIDKDNGDILKADGLTESDYFFVRYDTESEFTPVSDMKAALDGKTYAEIKIDTHEHSLDYIGKCICGYECTHESITGNKCDGCGTEGTIVTIEMTDSYGDGWNGNAVVIKLLVDGVNTEVGTATIEYGENGSLTVFLPKDSIYTFNWVAGNYSEECNFAVVVDGETVYSCADGSTLTDGQIIYTTCQHDLSNKDGICAKGCGYSCPHENVTNGKCGVCGYECPHIDDVEKHFCTECGITVSKCADENGDNICDICNALIGAPGIYVGGIYVDGSNYTDILGDADEGATVYYVPDTNTLVLDGFSYEGADCGIICDGSLNIEVKGENKIVAVDGLCIYAEDDTVINIGGTGKLDIEAIDNGIYADSANDSDENIEINVKDSVTLNVNSETDGVDIDSNNDIKLTVNENSTLNIKAISEGVVVSSDSNSVEILVKDNGILTVDGEDECIYIVDTAKATVTFTDHAKVSLVNNDEEGIYISANESETVIVSGNADVYIAVDEESIEADVVTVDGGSLKAHGGNGYPGIYVAEVTVNAGKLIVSSEYEKAISADSIKITGGTLVAGNNTAEYPVFDVAPDFSEYNSEYMVLASEKADATYLVEYDSANAKNYRVITIQCKHELDGKVCKKCGFECGVDCGHYLEEGAVCAICGSFVYAITHQPTETAPYVGLSNDTDASYQWYEIEYKTIEITEENAGTVSYDWGDSSYDAEAGWTGVPCNEGDYGHDFFTLALEAGDTVIIELTGDFYDWVGLYDYAADEDFGEEVESGVNTYEITVTADGNYTFYTYVNSGVVTVKAYMDDLVCSAIEGETGAALSNPAYGNHYLCEVTFADGTTEVSDSFEYKYAITHQPTEEEPYVELNDNTDASYQWYTVEGGIVEITDEEATGSWGLLGAPSEIYGEYDSEIGWTSPEGYYFVIELQEGETVELEASESVSKWWIAYVQNPGMFTDEWTVEQYGTTISFTAPADGYYGFSIPNVSGVAVRAYMDGSVYTAIDGQTTDTLTPDTIGQYACEVTFADGTTEMSDTFEVTSVHTCDFSGEWKNDAEKHWKECDCGLISEESGHTWKFGECTECGKACEHSFTSFVETKAPTCTEAGQETSPCDYCDAVNPREIPATNHKDTLVQVEAQAPTCTEIGWEAYEYCTACDYTTYKEIPVAEHTEETVKGYAATCEKAGLTDGVKCAICGAVITAQQTIDKLTHKDDNGDYKCDHGCGYEFEKPVEPEQPEDPSENCDHLCHKSGIMSIFWKIIRFFYRLFNIQQYCDCGVIHYDAPVFG
Physico‐chemical
properties
protein length:2157 AA
molecular weight: 234399,79590 Da
isoelectric point:4,06805
aromaticity:0,10153
hydropathy:-0,20742

Domains

Domains [InterPro]
SSF52058
STR
120–228
XPP58160.1
1 2157
Architecture
STR
STR
STR
STR
STR 8-262 | STR 325-361 | STR 377-926 | STR 1443-2157
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
XPP58160.1
1 2157
Domain Start End Length (AA) Confidence
N-terminal 1 10 10 0,0081
Central domain 11 2146 2137 0,9574
C-terminal 2147 2157 10 0,0885
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
1-10
Central
11-2146
C-terminal
2147-2157

Taxonomy

  Name Taxonomy ID Lineage
Phage Oscillospirales phage IMGVR 15609780
[NCBI]
3403686 Viruses > Duplodnaviria > Heunggongvirae > Uroviricota > Caudoviricetes
Host Oscillospirales
[NCBI]
186802 cellular organisms > Bacteria > Bacillati > Bacillota > Clostridia >

Coding sequence (CDS)

Coding sequence (CDS)
Genbank protein accession
XPP58160.1 [NCBI]
Genbank nucleotide accession
PV036458 [NCBI]
CDS location
range 64252 -> 70725
strand +
CDS
GTGAACAAGGATTTCTTCTTTGCTGTTCATTTCATAAAGAATTTTTGTTTTCGGCACACCTGGCTGGCTTATGAAAGCAGCATTAAAGATGTTGTAATTGAGGAAGGTATAACGAATATTCGACAGGGATCTTTTTATGATTTGTCCAATGCTGTTTCTCTGTCAATCCCTTCAACTGTGAATGAGATGGATGCTTATGGCAATAACTATTTTGCCGAGTTTAAGCTCGCGGAAGGAAATTCCACCTACGCTCTTATTGACGGTGTTCTTTTCAATGCCGATAAAACTGAGCTTGTTATGTATCCTGTAAGAAAGGCAGACGAAACCTATACCGTTCCGGCAGGTGTTCTGATCTTAGGCAATGATTCATTTTCGTCTTCTGAAAACCTTAAAACAATAAACATTTCTGACGATGTTACTACAATGAATGAGTCTTGTTTTTTTTATTCTTCGGTTGAAACAGTTCATTTCGGAAAAAATGTAAATTTTATAGACTATAACGCTTTCAGTTGTTCAGAAATTAAAAATATAGTTTTACCTGAAAAGCTTACTGAAATTATCTCCAGTATGTTTTATAGCTGCAGTTATCTTGAAAACCTTGTAATCGGCAGTAATGTAATTTCAATCGAAAATGATGTAATAAACTATTGTGATGCGCTTGAAGCAGTGCACTTCACGGGAACTGAAGCACAGTGGGAAGCAATCACGAAGCCCGAAAACGAAACAGATAGAATTAACACAATTCCCGTTCATTTCGGTGCATTGGAGGAAAAGACAGCCCGAGATGCAACTTGCGGGGCTGACGGACACACAGCCGGTCTTTACTGTGCACAATGTGATGCTTATTTATCAGGTGAAGTGATTCCTGCAACCGGTGAACACGAAAGCTACACAGACGGTGTTTGTGATGTTTGCGACTATGAATGCACCCACGAAAGCTACACCGACAGCAAATGTGATGCTTGCGGCTATGAATGCACCCACGAAAGCTACACCGACAGCAAATGTGATGCTTGCGGCTACGAATGTCCCCACGAAAGCTACACAGACGGTGTTTGCGATGTTTGCGACTACGAATGTCCCCACGAAGGCTACACAAACAGCATTTGCGATGTTTGCGGCTATGAATGTCCCCACGAAGGCTACACAAACAGCATTTGCGATGTTTGCGGCTACGAATGTCACCACGAAGGACAGAACGGCTCCTGTCAAGTCTGCGGTGCAAATCTTGACAAGCTGGTCATTGATGTTACCGACGAATTAACTGTGGATATCGGTAAGGGTTATCCGTATTATGACGAGGACGGCTATATTATCACAGGAACAAATCCGGATGCAATGGTTTATGTTCGTGAAGAAACAGATCTGATACTTAGCAATCTTACTACAGGACGTCTTGTTTTTCAGTATGCACCTGATAATTCCGTGATTAATATAACCCTTGACGGAACAACAGAGGTAGAATTCGTAGATGTATATAAATCACATATTATCTTTGACGGTGGCGAAACGGATACATTAAAGACCTCGAGTTTTAATACCGCTGGTCACCCCGGCTCCGTTACCGTAAACGGCGGTAATATCATTCTTGACTGCGTTACAGAAGACACTTTACCTACAATAATCTGTGCAGGCGGATTTATAATCAACGGCGGAACGGTTACCGCTTCTAACAATTATTATTATGTGGTACTTGACCCCGTTACGCTTAACGGCGGTGAGCTGAATATGATAAGTACATCGACCGATTATGAAGCTATCTTGGGTGGTATCATTATAGAAAAAGGCGCTTTGCTTACCGTAAGTGCCACAAAGGGAATACTTGATATGTATTCAGATATCGTTATGGCTGACGATGCAGAAGAAAACGATTACTTCTTTGTGAGATATGACACAGAAAGTGAATTTGCACCTGTTTCTGACATGAAAGCAGCTCTTGACGGCAAGACCTATGCAGAAATCAAAATTGACACACATGAGCATAGCTTTGAAAACGGCAAGTGTGTTTGCGGCTATGAATGTCCTCACGAAGGACAGAACGGCTCCTGTCAAGTCTGCGGTGCAAATCTCGGCAAGCTTGTTATTGATGTAACAGATGAATCATATGTGTCCATCGACTCATCCAATTACGATGAAGACGGCATTATTTTAACCGGCACGACTTCGGGTGAGGTTTCTGTTTATGAAGCCTGTGACTTGACATTCAATAATGTTACAGTTTCCGGTTTAAATATAGCTGTTGCTGATAACGCAGTGATAAATATAGCATTTGAAGGAACGAACGAGATTGCAGGCAGGGTAGCTCTTTACAAACAACATCTTGTTTTTGAAGGAAGTGATGATGCCACATTCAAGGCTGCCCGCTTTTATAACGGTGGTAACAGCGACAGCTCCGTTACAGTAAACGGCGGCAATATGGTTCTTGAAACTGTTGGCCAAAGCATTTATACTATAAACTGCGGTAATTTTATAATCAATGATGGCACGGTAACTGCTTCAAATGATTCTTACGAAGTAATCGGCTCACCGGTTAAACTCAACGGCGGTACACTGAATGTTATCAGCACTTCGGGAGAATATAAAGCTATACGCAATGAAATAACAATAGATAAGGGTGCTTTGCTTACTGTAAGCGGTGCATACAAACTTATTGATAAGGACAATGGTGATATTTTAAAAGCAGACGGGCTTACTGAAAGTGATTATTTCTTTGTAAGATATGACACAGAAAGTGAATTTACACCTGTTTCTGACATGAAAGCAGCCCTTGACGGCAAGACCTATGCGGAAATCAAAATTGATACACACGAGCATAGCTTGGATTATATCGGCAAGTGCATCTGCGGTTATGAATGTACTCATGAAAGTATCACAGGCAACAAGTGTGATGGCTGCGGCACAGAAGGTACAATCGTTACAATTGAAATGACCGACAGCTACGGTGACGGTTGGAACGGAAATGCCGTTGTAATTAAGCTTCTTGTTGACGGAGTAAATACGGAAGTGGGAACAGCAACCATTGAATACGGCGAAAACGGAAGCCTGACAGTATTTCTCCCCAAAGACAGTATTTATACCTTCAATTGGGTTGCAGGAAATTATTCCGAAGAGTGTAACTTTGCCGTTGTAGTTGACGGTGAAACGGTTTACAGCTGTGCAGACGGAAGCACTCTTACAGACGGACAGATTATTTATACAACTTGTCAGCATGACTTGTCAAATAAAGACGGTATCTGCGCAAAGGGCTGTGGTTACAGCTGTCCTCACGAAAATGTAACAAACGGCAAATGTGGTGTTTGCGGCTATGAATGTCCTCACATCGATGATGTAGAAAAACATTTTTGTACAGAATGCGGAATAACAGTAAGCAAATGCGCAGACGAAAACGGCGACAATATCTGTGATATTTGCAATGCTCTGATTGGTGCACCCGGGATTTACGTTGGCGGAATCTATGTAGACGGCAGTAATTACACCGATATTCTCGGTGATGCAGATGAGGGTGCAACGGTATATTATGTTCCGGATACAAATACTCTTGTTCTTGACGGCTTCAGCTATGAGGGAGCGGACTGCGGCATTATTTGTGACGGCTCTCTGAATATTGAAGTGAAGGGCGAAAACAAAATTGTTGCCGTTGACGGTCTGTGTATATATGCAGAGGATGACACTGTTATCAATATCGGCGGAACAGGTAAATTAGACATAGAAGCTATCGATAACGGAATATATGCTGACTCTGCAAATGATTCTGATGAAAACATTGAAATAAACGTCAAGGACAGCGTAACACTTAATGTAAACTCCGAAACTGACGGTGTGGATATTGATTCCAATAATGATATCAAGCTTACTGTAAACGAAAACAGTACATTGAACATAAAAGCAATTTCAGAAGGTGTTGTTGTGTCGAGCGATTCCAACAGCGTTGAAATTCTTGTTAAGGATAACGGCATATTAACAGTAGACGGCGAAGATGAATGTATCTATATCGTCGATACTGCCAAAGCGACTGTAACCTTTACTGATCATGCAAAGGTTTCGCTTGTAAATAACGACGAAGAAGGTATTTATATCTCTGCAAATGAAAGCGAAACAGTCATTGTAAGCGGCAATGCTGATGTTTATATTGCCGTTGATGAAGAAAGCATTGAAGCAGATGTGGTTACTGTTGACGGCGGAAGCCTGAAAGCCCACGGCGGAAACGGTTATCCGGGAATTTATGTCGCAGAGGTTACTGTCAATGCGGGCAAGTTAATTGTAAGCAGTGAATATGAAAAAGCAATTTCAGCTGACTCAATAAAGATTACCGGCGGTACTCTTGTTGCAGGTAACAATACAGCGGAATATCCCGTTTTCGATGTTGCTCCCGATTTCAGCGAATACAACTCTGAGTACATGGTTCTCGCAAGTGAAAAGGCTGACGCAACTTATCTTGTCGAATACGACAGTGCCAATGCGAAAAACTACAGAGTTATAACAATTCAATGCAAGCATGAGCTTGACGGAAAAGTCTGCAAAAAGTGCGGCTTTGAATGCGGCGTTGATTGCGGTCATTATTTAGAAGAAGGTGCTGTATGCGCAATTTGCGGAAGCTTTGTTTATGCAATTACTCATCAGCCCACAGAAACAGCGCCTTATGTAGGACTCAGCAATGATACCGATGCTTCTTATCAGTGGTATGAGATCGAATACAAAACGATTGAGATCACAGAAGAAAATGCCGGCACTGTTTCTTACGATTGGGGCGATAGCTCTTATGATGCAGAAGCGGGTTGGACCGGTGTGCCGTGTAATGAAGGTGATTACGGACATGACTTCTTTACGCTTGCACTTGAAGCGGGAGATACGGTAATAATCGAACTTACGGGAGATTTCTATGACTGGGTCGGTCTTTATGATTACGCGGCCGACGAGGATTTCGGTGAAGAAGTCGAATCCGGTGTCAATACATATGAAATAACGGTAACAGCCGATGGCAATTATACGTTCTATACTTATGTAAACAGTGGTGTTGTCACCGTCAAAGCTTACATGGACGATTTGGTCTGTAGTGCAATTGAAGGTGAGACCGGGGCTGCACTCAGCAATCCTGCATACGGGAACCATTATCTCTGCGAAGTCACCTTTGCAGACGGCACAACCGAAGTATCCGATTCCTTTGAATACAAGTATGCCATCACCCATCAGCCTACCGAAGAAGAACCCTATGTGGAACTCAATGACAACACCGATGCTTCTTATCAGTGGTACACAGTTGAAGGCGGCATAGTCGAAATTACGGATGAAGAAGCAACCGGCTCCTGGGGTTTGCTGGGTGCTCCCTCCGAGATTTACGGTGAGTATGATTCCGAAATCGGTTGGACCAGCCCCGAAGGTTATTATTTCGTCATTGAATTGCAGGAAGGCGAAACGGTTGAACTTGAAGCCTCCGAATCGGTTTCCAAATGGTGGATCGCCTATGTACAGAATCCGGGTATGTTCACGGATGAGTGGACTGTTGAGCAGTACGGCACAACGATTTCGTTTACCGCACCGGCAGACGGTTATTACGGTTTTTCAATCCCCAACGTTTCCGGCGTAGCAGTCAGAGCCTACATGGACGGCAGTGTTTACACCGCAATTGACGGTCAGACCACCGACACCCTCACACCCGATACAATCGGTCAGTATGCCTGTGAAGTCACCTTTGCGGACGGCACCACCGAAATGTCGGATACATTTGAGGTCACATCCGTTCACACCTGCGATTTCAGCGGCGAATGGAAGAATGATGCAGAAAAGCACTGGAAGGAATGTGACTGCGGTCTTATCAGTGAAGAATCCGGACATACATGGAAATTCGGTGAATGTACTGAATGTGGTAAAGCTTGCGAACACTCTTTCACAAGCTTTGTCGAAACAAAGGCTCCCACTTGCACCGAAGCAGGTCAGGAAACATCACCTTGCGACTACTGTGATGCTGTGAACCCAAGAGAAATCCCTGCGACCAACCACAAGGATACTCTTGTGCAGGTAGAAGCACAGGCACCTACTTGCACAGAAATCGGTTGGGAAGCTTACGAATACTGCACCGCCTGTGACTACACAACTTATAAGGAAATCCCCGTGGCAGAGCACACCGAAGAAACTGTAAAGGGCTATGCCGCAACTTGCGAAAAGGCAGGTCTTACAGACGGTGTCAAGTGTGCAATATGCGGTGCCGTTATTACCGCACAACAGACGATTGATAAGCTCACCCATAAGGACGACAACGGCGACTATAAGTGTGACCACGGCTGCGGATATGAGTTCGAGAAACCCGTTGAACCCGAACAGCCTGAAGATCCTTCCGAAAATTGCGATCACCTTTGCCACAAGTCAGGCATTATGAGCATCTTCTGGAAGATTATCAGATTCTTCTACAGACTCTTTAACATCCAGCAGTATTGCGATTGCGGTGTGATTCACTACGATGCACCCGTTTTCGGATAA

Genome Context

Genome Context

Tertiary structure

PDB ID
87e4b48a0fa79924e03109420ac254f0465caccfe452e415fea8533fe3eccab8
ColabFold
Source ColabFold
Method ColabFold
Resolution 0,4560
Oligomeric State monomer
Model Confidence
Very high
pLDDT > 90
High
90 > pLDDT > 70
Low
70 > pLDDT > 50
Very low
pLDDT < 50