Detailed information of component protein


Summary

Component ID T6CP003080
Component protein type TssB
T6SS ID (Type) T6SS00302 insolico (Type i1)
Strain Salmonella enterica subsp. enterica serovar Dublin str. CT_02021853
Replicon chromosome
Sequence Protein sequence (168 a.a.); Nucleotide sequence (504 bp)
Reference
insolico Bioinformatics investigation has been performed on this T6SS

External database links

Locus tag (Gene) SED_RS06315
Coordinate (Strand) 1225500..1226003 (-)
NCBI ID 445953397
RefSeq NC_011205
Uniprot ID -
KEGG ID -
PDB ID -

Pfam domain hit(s)

Domain Pfam ID E-value Aligned region
T6SS_VipA PF05591.14 1.5e-51 8..161

Transmembrane helices

  • Transmembrane helices are predicted using TMHMM 2.0 software.

Prediction                 Region     Sequence
Outside 1-167 MSKDYNGSVAPKERINISYIPKTDGEPSEVELPLNMLIVGDTGNSQETAPLDERQMVSIDKHSFNSVMAEASISLNFAVPASLKDDAKDGDEMNISLEIKSLNDFSPDSVAKQVPELNKLLELREALTALKGPLGNLPAFRAQLQALLENEESREQLLREISQAENQ



Signal peptides
  • Sec/SPI: "standard" secretory signal peptides transported by the Sec translocon and cleaved by Signal Peptidase I (Lep).
  • Sec/SPII: lipoprotein signal peptides transported by the Sec translocon and cleaved by Signal Peptidase II (Lsp).
  • Tat/SPI: Tat signal peptides transported by the Tat translocon and cleaved by Signal Peptidase I (Lep).
Prediction        Probability Cleavage site Signal peptide sequence
Other 0.9897 - -



  Protein sequence: 168 a.a.    

>T6CP003080 NC_011205:c1226003-1225500 [Salmonella enterica subsp. enterica serovar Dublin str. CT_02021853] [TssB]
MSKDYNGSVAPKERINISYIPKTDGEPSEVELPLNMLIVGDTGNSQETAPLDERQMVSIDKHSFNSVMAEASISLNFAVP
ASLKDDAKDGDEMNISLEIKSLNDFSPDSVAKQVPELNKLLELREALTALKGPLGNLPAFRAQLQALLENEESREQLLRE
ISQAENQ*

  Nucleotide sequence: 504 bp    

>T6CP003080 NC_011205:c1226003-1225500 [Salmonella enterica subsp. enterica serovar Dublin str. CT_02021853] [TssB]
ATGAGCAAAGATTATAACGGCAGCGTGGCACCCAAAGAACGCATTAATATTTCTTACATTCCAAAAACGGACGGTGAGCC
TTCTGAGGTGGAATTACCCCTTAATATGTTGATAGTGGGGGATACCGGAAACTCACAGGAAACAGCGCCACTTGATGAAC
GCCAGATGGTTTCTATCGACAAACATTCATTCAATTCAGTGATGGCAGAAGCGTCCATTAGCCTGAATTTTGCAGTTCCG
GCATCATTGAAGGACGACGCAAAAGATGGCGATGAGATGAATATCTCGCTGGAAATCAAATCCCTGAACGATTTTTCTCC
GGACAGCGTGGCAAAACAGGTACCGGAGTTGAACAAATTGCTGGAACTACGCGAAGCGCTGACAGCATTAAAAGGCCCGC
TCGGTAATCTGCCTGCATTTCGCGCCCAGCTTCAGGCATTGCTGGAAAATGAAGAATCCCGCGAACAGTTACTGCGGGAG
ATCAGCCAGGCAGAAAACCAGTAA