Type III Secretion Needle Proteins Induce Cell Signaling and Cytokine Secretion via Toll-Like Receptors
Author(s) -
Danielle L. Jessen,
Patrick OseiOwusu,
Melody Toosky,
William Roughead,
David S. Bradley,
Matthew L. Nilles
Publication year - 2014
Publication title -
infection and immunity
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.508
H-Index - 220
eISSN - 1070-6313
pISSN - 0019-9567
DOI - 10.1128/iai.01705-14
Subject(s) - biology , tlr5 , flagellin , proinflammatory cytokine , secretion , inflammasome , pattern recognition receptor , innate immune system , tlr2 , receptor , nlrc4 , toll like receptor , microbiology and biotechnology , yersinia pestis , immune system , immunology , caspase 1 , inflammation , biochemistry , virulence , gene
Pathogens are recognized by hosts by use of various receptors, including the Toll-like receptor (TLR) and Nod-like receptor (NLR) families. Ligands for these varied receptors, including bacterial products, are identified by the immune system, resulting in development of innate immune responses. Only a couple of components from type III secretion (T3S) systems are known to be recognized by TLR or NLR family members. Known T3S components that are detected by pattern recognition receptors (PRRs) are (i) flagellin, detected by TLR5 and NLRC4 (Ipaf); and (ii) T3S rod proteins (PrgJ and homologs) and needle proteins (PrgI and homologs), detected by NAIP and the NLRC4 inflammasome. In this report, we characterize the induction of proinflammatory responses through TLRs by theYersinia pestis T3S needle protein, YscF, theSalmonella enterica needle proteins PrgI and SsaG, and theShigella needle protein, MxiH. More specifically, we determine that the proinflammatory responses occur through TLR2 and -4. These data support the hypothesis that T3S needles have an unrecognized role in bacterial pathogenesis by modulating immune responses.
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