Affiliation:
1. INSERM U-570, CHU Necker-Enfants Malades, 156, rue de Vaugirard, 75730 Paris Cedex 15, France
Abstract
ABSTRACT
Molecular chaperones play an essential role in the folding of nascent chain polypeptides, as well as in the refolding and degradation of misfolded or aggregated proteins. They also assist in protein translocation and participate in stress functions. We identified a gene, designated
tig
, encoding a protein homologous to trigger factor (TF), a cytosolic ribosome-associated chaperone, in the genome of
Listeria monocytogenes
. We constructed a chromosomal Δ
tig
deletion and evaluated the impact of the mutation on bacterial growth in broth under various stress conditions and on pathogenesis. The Δ
tig
deletion did not affect cell viability but impaired survival in the presence of heat and ethanol stresses. We also identified the
ffh
gene, encoding a protein homologous to the SRP54 eukaryotic component of the signal recognition particle. However, a Δ
ffh
deletion was not tolerated, suggesting that Ffh is essential, as it is in
Bacillus subtilis
and
Escherichia coli
. Thus, although dispensable for growth, TF is involved in the stress response of
L. monocytogenes
. The Δ
tig
mutant showed no or very modest intracellular survival defects in eukaryotic cells. However, in vivo it showed a reduced capacity to persist in the spleens and livers of infected mice, revealing that TF has a role in the pathogenicity of
L. monocytogenes
.
Publisher
American Society for Microbiology
Subject
Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology
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