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The RNA Chaperone Hfq Is Involved in Stress Response and Virulence in Neisseria meningitidisand Is a Pleiotropic Regulator of Protein Expression

Authors :
FantappieĢ€, Laura
Metruccio, Matteo M. E.
Seib, Kate L.
Oriente, Francesca
Cartocci, Elena
Ferlicca, Francesca
Giuliani, Marzia M.
Scarlato, Vincenzo
Delany, Isabel
Source :
Infection and Immunity; May 2009, Vol. 77 Issue: 5 p1842-1853, 12p
Publication Year :
2009

Abstract

ABSTRACTThe well-conserved protein Hfq has emerged as the key modulator of riboregulation in bacteria. This protein is thought to function as an RNA chaperone and to facilitate base pairing between small regulatory RNA (sRNA) and mRNA targets, and many sRNAs are dependent on the Hfq protein for their regulatory functions. To address the possible role of Hfq in riboregulated circuits in Neisseria meningitidis, we generated an Hfq mutant of the MC58 strain, and the knockout mutant has pleiotropic phenotypes; it has a general growth phenotype in vitro in culture media, and it is sensitive to a wide range of stresses, including those that it may encounter in the host. Furthermore, the expression profile of a vast number of proteins is clearly altered in the mutant, and we have identified 27 proteins by proteomics. All of the phenotypes tested to date are also restored by complementation of Hfq expression in the mutant strain. Importantly, in ex vivo and in vivo models of infection the Hfq mutant is attenuated. These data indicate that Hfq plays a key role in stress response and virulence, and we propose a major role for Hfq in regulation of gene expression. Moreover, this study suggests that in meningococcus there is a large Hfq-mediated sRNA network which so far is largely unexplored.

Details

Language :
English
ISSN :
00199567 and 10985522
Volume :
77
Issue :
5
Database :
Supplemental Index
Journal :
Infection and Immunity
Publication Type :
Periodical
Accession number :
ejs57566311
Full Text :
https://doi.org/10.1128/IAI.01216-08