Detailed information of component protein


Summary

Component ID T6CP000460
Component protein type TssB
T6SS ID (Type) T6SS00052 insolico (Type i2)
Strain Photorhabdus laumondii subsp. laumondii TTO1
Replicon chromosome
Sequence Protein sequence (166 a.a.); Nucleotide sequence (498 bp)
Reference
insolico Bioinformatics investigation has been performed on this T6SS

External database links

Locus tag (Gene) PLU_RS16250
Coordinate (Strand) 3863474..3863971 (-)
NCBI ID WP_011147462.1
RefSeq NC_005126
Uniprot ID -
KEGG ID -
PDB ID -

Pfam domain hit(s)

Domain Pfam ID E-value Aligned region
T6SS_VipA PF05591.14 3.6e-54 7..157

Transmembrane helices

  • Transmembrane helices are predicted using TMHMM 2.0 software.

Prediction                 Region     Sequence
Outside 1-165 MTHSFQNEIPKSRINIKLDLHTGGAQKKVELPLKLLVMGDYSNGQEHLPLGERKKVAINKNNFDSVLAEFSPAINLTVKNTLAGDGSEENIALIFRQIKDFEPEQIARQIPQLRALLSMRHLLRDLRSNLLDNTTFRRELEHILQDQALSDELRAELAALAPKTI



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 0.9956 - -



  Protein sequence: 166 a.a.    

>T6CP000460 NC_005126:c3863971-3863474 [Photorhabdus laumondii subsp. laumondii TTO1] [TssB]
MTHSFQNEIPKSRINIKLDLHTGGAQKKVELPLKLLVMGDYSNGQEHLPLGERKKVAINKNNFDSVLAEFSPAINLTVKN
TLAGDGSEENIALIFRQIKDFEPEQIARQIPQLRALLSMRHLLRDLRSNLLDNTTFRRELEHILQDQALSDELRAELAAL
APKTI*

  Nucleotide sequence: 498 bp    

>T6CP000460 NC_005126:c3863971-3863474 [Photorhabdus laumondii subsp. laumondii TTO1] [TssB]
ATGACCCATAGTTTTCAAAACGAGATCCCTAAATCGCGTATTAATATCAAGTTAGATTTACATACAGGAGGTGCGCAGAA
AAAAGTTGAGCTGCCGCTGAAATTATTGGTCATGGGGGATTATAGCAACGGGCAGGAACATCTCCCTCTTGGGGAAAGAA
AAAAAGTGGCTATCAATAAAAACAATTTTGATAGCGTACTGGCTGAATTCAGTCCCGCGATTAACTTGACGGTCAAAAAT
ACCTTGGCCGGAGATGGCAGCGAGGAGAATATCGCCCTTATTTTTCGGCAAATAAAAGACTTCGAGCCTGAACAAATTGC
TCGTCAAATCCCGCAACTGCGGGCCCTGCTTTCTATGCGCCATCTATTGCGCGATCTGAGATCTAACCTGCTCGATAACA
CCACCTTTCGCCGGGAACTGGAACATATCCTCCAGGATCAAGCGTTAAGCGATGAGTTACGGGCTGAACTGGCCGCACTG
GCACCAAAAACGATTTGA