Affiliation:
1. Department of Medical Countermeasures, Swedish Defence Research Agency, FOI NBC-Defence, SE-901 82 Umeå
2. Department of Molecular Biology, Umeå University, SE-901 87 Umeå, Sweden
Abstract
ABSTRACT
Type III secretion systems are used by many animal and plant interacting bacteria to colonize their host. These systems are often composed of at least 40 genes, making their temporal and spatial regulation very complex. Some type III chaperones of the translocator class are important regulatory molecules, such as the LcrH chaperone of
Yersinia pseudotuberculosis
. In contrast, the highly homologous PcrH chaperone has no regulatory effect in native
Pseudomonas aeruginosa
or when produced in
Yersinia.
In this study, we used LcrH-PcrH chaperone hybrids to identify a discrete region in the N terminus of LcrH that is necessary for YscY binding and regulatory control of the
Yersinia
type III secretion machinery. PcrH was unable to bind YscY and the homologue Pcr4 of
P. aeruginosa.
YscY and Pcr4 were both essential for type III secretion and reciprocally bound to both substrates YscX of
Yersinia
and Pcr3 of
P. aeruginosa.
Still, Pcr4 was unable to complement a Δ
yscY
null mutant defective for type III secretion and
yop-
regulatory control in
Yersinia
, despite the ability of YscY to function in
P. aeruginosa.
Taken together, we conclude that the cross-talk between the LcrH and YscY components represents a strategic regulatory pathway specific to
Yersinia
type III secretion.
Publisher
American Society for Microbiology
Subject
Molecular Biology,Microbiology
Cited by
22 articles.
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