Genbank accession
YP_009152863.1 [GenBank]
Protein name
tail fiber protein
RBP type
TF
Evidence GenBank
Probability 1,00
TF
Evidence Phold
Probability 1,00
TF
Evidence RBPdetect
Probability 0,89
TF
Evidence RBPdetect2
Probability 0,55
Protein sequence
MIVYNNQAPDAVNNVGQFGATEGSIGAYKQAAEYAADSKYWALLAESKFGTIDDLIAEVERLYQQGVLMKQDIEDLKQDFKDQDARLMSLIAQTNAAVSDANNAVALINQKLIEVQNQLDVLLGMSVDVTTLPPGTPATGSFNPNTGVISLGIPEGEPGKDGSVKDLDTAPTGVPELGDLGFYVDKDDNTVHKTTLENIANLTPSVRSVSVNGGPALDGEVALTINKETVGLGNVLNVAQYSRQEINDKFDKTTKTYQSKAEAYADAQYRQVGEKVLVWEATKYEFYTVAANKTLTPVKTEGRILTVNSRSPDSSGNIDITIPTGNPSLYLGEMVMFPYDPSKNISYPGVLPADGRLVSKESASDLGPSLVSGQLPVVSETEWQSGAKQYFSWGKLADGITDADSTNFINIRLPDWTGGEAIRAPDSDKDSQYNGSVQAQKPYVVTVNNQAPDEITGNVNISRSILGAASSGANSDITSLSGLTTPLSISQGGTGAKDAASARSNLGLGSVSTLDNVPIASGGTGAGDAAGARFNLGLGNSATMNTGTNSDNVLKVGDFGIGRPDGALVFDTTSQDQLLAGLDTYGLCVFRNNQQIAAPWDIWNYSSNLFFRAGDTYSMISIPFESAGKIKVFGGASGSGWKTSRTVYDTVNTTVDVNGFIKAASPIVKVFHDGSFETNEQSDGVSVKKISTGVYLISGCLGLNSDAGWGGVDGGFEIPIDRNKQPRVWLDYEVKEDGSLLIKTYHRTHSTSPAFARNELEGFSDGDPVDIPKDAFISVRVEMPSK
Physico‐chemical
properties
protein length:786 AA
molecular weight: 83491,62540 Da
isoelectric point:4,56436
aromaticity:0,07634
hydropathy:-0,27990

Domains

Domains [InterPro]
Coil
Unmapped
73–93
IPR058008
RBD
652–785
YP_009152863.1
1 786
Architecture
STR
STR
STR 183-485 | STR 513-786
Legend: ATT STR RBD CBM LEC ENZ CHP LNK TAS TTP UNK Unmapped

Taxonomy

  Name Taxonomy ID Lineage
Phage Escherichia phage vB_EcoP_SU10
[NCBI]
1519788 Uroviricota > Caudoviricetes > Mktvariviridae > Kuravirus > Kuravirus CHD5UKE1
Host Escherichia coli
[NCBI]
562 cellular organisms > Bacteria > Pseudomonadati > Pseudomonadota > Gammaproteobacteria > Enterobacterales

Coding sequence (CDS)

Coding sequence (CDS)
Genbank protein accession
YP_009152863.1 [NCBI]
Genbank nucleotide accession
NC_027395.1 [NCBI]
CDS location
range 9797 -> 12157
strand +
CDS
ATGATCGTTTATAATAACCAAGCACCTGATGCAGTGAATAACGTTGGGCAGTTTGGTGCTACTGAAGGCTCTATTGGAGCTTATAAGCAAGCCGCAGAATATGCAGCTGACTCCAAATATTGGGCACTGTTAGCAGAGTCTAAGTTTGGTACAATTGATGACCTGATCGCTGAAGTAGAACGTTTGTATCAGCAAGGTGTTCTGATGAAGCAGGATATCGAAGATCTTAAGCAGGACTTTAAAGATCAAGATGCTCGTCTGATGAGTTTGATTGCTCAAACTAACGCAGCGGTATCAGATGCGAATAATGCTGTAGCTCTAATTAATCAGAAACTTATTGAAGTCCAGAACCAGCTTGACGTTCTGTTAGGAATGTCCGTTGATGTAACCACACTTCCTCCGGGAACTCCGGCTACTGGTTCTTTTAATCCTAACACTGGTGTAATTTCTTTAGGTATCCCAGAAGGCGAACCCGGAAAGGATGGTTCTGTTAAGGATTTAGACACAGCTCCTACTGGTGTTCCAGAGCTAGGTGACTTGGGTTTCTATGTTGATAAAGATGACAATACCGTCCATAAAACTACTCTAGAGAATATTGCTAACTTAACCCCATCTGTTCGTTCTGTTTCTGTTAATGGGGGACCAGCTCTTGATGGAGAGGTTGCTCTAACAATCAACAAAGAGACAGTAGGTTTAGGAAATGTTCTGAATGTTGCTCAGTACAGTCGTCAAGAGATTAATGACAAATTTGACAAGACTACCAAGACATACCAATCAAAAGCAGAAGCTTATGCTGATGCTCAGTATCGTCAAGTAGGTGAGAAAGTTTTAGTTTGGGAAGCTACTAAGTATGAATTCTATACTGTTGCTGCTAACAAAACATTGACTCCAGTTAAAACTGAAGGTAGAATTCTTACCGTTAACTCCCGTTCTCCAGATTCCAGTGGTAACATTGACATTACCATTCCAACAGGAAACCCTTCTCTGTATCTTGGTGAGATGGTGATGTTCCCTTACGACCCATCTAAGAATATCTCCTACCCAGGAGTTCTTCCTGCTGATGGTCGTCTGGTATCAAAAGAATCTGCTTCAGATTTAGGCCCATCCCTTGTCAGCGGACAGCTCCCTGTTGTTTCAGAAACTGAATGGCAATCGGGGGCTAAACAGTACTTCTCTTGGGGCAAGTTAGCAGACGGTATTACCGATGCGGATTCTACTAATTTTATCAACATTCGACTCCCTGATTGGACTGGAGGGGAGGCAATAAGAGCACCAGATTCTGATAAAGACTCTCAGTACAATGGGTCTGTACAGGCTCAGAAACCTTATGTTGTTACTGTAAATAACCAAGCTCCTGATGAGATTACTGGTAATGTGAACATCTCCAGATCAATTTTAGGTGCTGCTTCTTCTGGAGCAAACTCTGACATTACATCTTTATCTGGACTCACAACACCGCTATCCATCTCTCAAGGTGGTACTGGAGCTAAAGATGCTGCTAGTGCCCGATCTAACTTGGGGTTGGGGAGTGTTTCCACTCTAGATAACGTCCCTATCGCTAGTGGTGGGACAGGGGCTGGAGATGCTGCTGGTGCAAGGTTTAATCTTGGGTTAGGTAACTCAGCCACAATGAATACCGGAACTAACAGTGATAATGTTCTTAAGGTTGGTGATTTTGGAATTGGAAGACCTGACGGCGCTCTTGTTTTTGATACTACTTCACAAGACCAACTTCTTGCTGGACTTGACACTTATGGGCTGTGTGTGTTTAGGAATAACCAACAAATAGCAGCACCTTGGGACATATGGAACTACTCCTCAAACCTTTTCTTTAGGGCGGGTGACACATACAGTATGATAAGTATTCCGTTTGAGTCTGCTGGTAAGATAAAAGTTTTTGGTGGTGCATCGGGCAGTGGGTGGAAAACCTCAAGGACGGTATATGATACTGTAAATACAACTGTTGACGTCAATGGCTTTATCAAAGCAGCGTCACCAATAGTTAAGGTATTCCATGACGGAAGTTTTGAAACAAACGAACAATCTGATGGAGTTAGTGTTAAGAAAATCTCCACCGGGGTTTATTTAATTTCAGGGTGTCTTGGTCTTAATTCTGATGCAGGATGGGGTGGTGTAGATGGAGGTTTTGAAATCCCAATAGACCGAAACAAACAACCTAGAGTTTGGCTTGACTATGAGGTTAAAGAGGATGGTTCTCTTTTAATTAAAACTTATCATAGAACCCATTCAACATCCCCAGCTTTTGCTAGAAACGAGTTGGAAGGTTTTTCTGACGGAGACCCTGTTGACATTCCTAAGGATGCGTTCATTTCGGTTCGTGTTGAAATGCCTTCTAAGTAA

Genome Context

Genome Context

Tertiary structure

1 / 5
PDB ID
Source
Method
Resolution
Oligomeric State