Spontaneous Loss of Virulence in Natural Populations of Listeria monocytogenes

Author:

Maury Mylène M.12,Chenal-Francisque Viviane12,Bracq-Dieye Hélène12,Han Lei3,Leclercq Alexandre12,Vales Guillaume12,Moura Alexandra24,Gouin Edith5,Scortti Mariela36,Disson Olivier24,Vázquez-Boland José A.36,Lecuit Marc1247

Affiliation:

1. Institut Pasteur, National Reference Centre and WHO Collaborating Centre for Listeria, Paris, France

2. Institut Pasteur, Biology of Infection Unit, Paris, France

3. Microbial Pathogenesis Unit, Medical School (Biomedical Sciences), University of Edinburgh, Edinburgh, United Kingdom

4. Inserm U1117, Paris, France

5. Institut Pasteur, Bacteria-Cell Interactions Unit, Paris, France

6. Division of Infection and Immunity, The Roslin Institute, University of Edinburgh, Edinburgh, United Kingdom

7. Paris Descartes University, Sorbonne Paris Cité, Institut Imagine, Necker-Enfants Malades University Hospital, Division of Infectious Diseases and Tropical Medicine, APHP, Paris, France

Abstract

ABSTRACT The pathogenesis of Listeria monocytogenes depends on the ability of this bacterium to escape from the phagosome of the host cells via the action of the pore-forming toxin listeriolysin O (LLO). Expression of the LLO-encoding gene ( hly ) requires the transcriptional activator PrfA, and both hly and prfA genes are essential for L. monocytogenes virulence. Here, we used the hemolytic activity of LLO as a phenotypic marker to screen for spontaneous virulence-attenuating mutations in L. monocytogenes . Sixty nonhemolytic isolates were identified among a collection of 57,820 confirmed L. monocytogenes strains isolated from a variety of sources (0.1%). In most cases (56/60; 93.3%), the nonhemolytic phenotype resulted from nonsense, missense, or frameshift mutations in prfA . Five strains carried hly mutations leading to a single amino acid substitution (G299V) or a premature stop codon causing strong virulence attenuation in mice. In one strain, both hly and gshF (encoding a glutathione synthase required for full PrfA activity) were missing due to genomic rearrangements likely caused by a transposable element. The PrfA/LLO loss-of-function (PrfA /LLO ) mutants belonged to phylogenetically diverse clades of L. monocytogenes , and most were identified among nonclinical strains (57/60). Consistent with the rare occurrence of loss-of-virulence mutations, we show that prfA and hly are under purifying selection. Although occurring at a low frequency, PrfA /LLO mutational events in L. monocytogenes lead to niche restriction and open an evolutionary path for obligate saprophytism in this facultative intracellular pathogen.

Funder

European Research Council

Santé Publique France

Wellcome Trust

Roslin Institute

Institut Pasteur

Labex

Institut National de la Santé et de la Recherche Médicale

Publisher

American Society for Microbiology

Subject

Infectious Diseases,Immunology,Microbiology,Parasitology

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