Affiliation:
1. INRS-Institut Armand-Frappier, Laval, Québec, Canada
2. Centre de Recherche en Infectiologie Porcine et Avicole (CRIPA), Université de Montréal, Faculté de Médecine Vétérinaire, Saint-Hyacinthe, Québec, Canada
3. Groupe de Recherche sur les Maladies Infectieuses du Porc (GREMIP), Université de Montréal, Faculté de Médecine Vétérinaire, Saint-Hyacinthe, Québec, Canada
Abstract
ABSTRACT
The
pst
gene cluster encodes the phosphate-specific transport (Pst) system. Inactivation of the Pst system constitutively activates the two-component regulatory system PhoBR and attenuates the virulence of pathogenic bacteria. In uropathogenic
Escherichia coli
strain CFT073, attenuation by inactivation of
pst
is predominantly attributed to the decreased expression of type 1 fimbriae. However, the molecular mechanisms connecting the Pst system and type 1 fimbriae are unknown. To address this, a transposon library was constructed in the
pst
mutant, and clones were tested for a regain in type 1 fimbrial production. Among them, the diguanylate cyclase encoded by
yaiC
(
adrA
in
Salmonella
) was identified to connect the Pst system and type 1 fimbrial expression. In the
pst
mutant, the decreased expression of type 1 fimbriae is connected by the induction of
yaiC
. This is predominantly due to altered expression of the FimBE-like recombinase genes
ipuA
and
ipbA
, affecting at the same time the inversion of the
fim
promoter switch (
fimS
). In the
pst
mutant, inactivation of
yaiC
restored
fim
-dependent adhesion to bladder cells and virulence. Interestingly, the expression of
yaiC
was activated by PhoB, since transcription of
yaiC
was linked to the PhoB-dependent
phoA-psiF
operon. As YaiC is involved in cyclic di-GMP (c-di-GMP) biosynthesis, an increased accumulation of c-di-GMP was observed in the
pst
mutant. Hence, the results suggest that one mechanism by which deletion of the Pst system reduces the expression of type 1 fimbriae is through PhoBR-mediated activation of
yaiC
, which in turn increases the accumulation of c-di-GMP, represses the
fim
operon, and, consequently, attenuates virulence in the mouse urinary tract infection model.
IMPORTANCE
Urinary tract infections (UTIs) are common bacterial infections in humans. They are mainly caused by uropathogenic
Escherichia coli
(UPEC). We previously showed that interference with phosphate homeostasis decreases the expression of type 1 fimbriae and attenuates UPEC virulence. Herein, we identified that alteration of the phosphate metabolism increases production of the signaling molecule c-di-GMP, which in turn decreases the expression of type 1 fimbriae. We also determine the regulatory cascade leading to the accumulation of c-di-GMP and identify the Pho regulon as new players in c-di-GMP-mediated cell signaling. By understanding the molecular mechanisms leading to the expression of virulence factors, we will be in a better position to develop new therapeutics.
Funder
Research Canada Chair
Gouvernement du Canada | Natural Sciences and Engineering Research Council of Canada
Publisher
American Society for Microbiology
Subject
Molecular Biology,Microbiology
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