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Pivard, M.

Publications and source records attributed to Pivard, M..

2 recordsLinked to original sources

Complex regulation of gamma-hemolysin expression impacts S. aureus virulence

Staphylococcus aureus gamma-hemolysin CB (HlgCB) is a core-genome encoded pore-forming toxin that targets the C5a receptor, similarly as the phage-encoded Panton-Valentine Leucocidin. Absolute quantification by mass spectrometry of HlgCB in 39 community-acquired pneumonia (CAP) isolates showed considerable variations in HlgC and HlgB yields between isolates. Interestingly, when testing the hypothesis that HlgCB might be associated with severe S. aureus CAP, we found that a high level of HlgCB synthesis was associated with mortality in a rabbit model of pneumonia. To decipher the molecular basis for the variation in hlgCB and hlgB expression and protein production among strains, different regulation levels were analyzed in representative clinical isolates and reference strains. Although HlgC and HlgB are encoded on a single operon, their levels were dissociated in 10% of the clinical strains studied. HlgCB amount and HlgC/HlgB ratio were found to both depend on promotor activity, mRNA stability and translatability, and on the presence of an individual hlgB mRNA processed from the hlgCB transcript. Strikingly, toe-printing and in vitro translation assays revealed that a single SNP in the 5-UTR of hlgCB mRNA strongly impaired hlgC translation in the USA300 strain, leading to a strong decrease in HlgC but not in HlgB; the level of HlgB is likely to have been maintained by the presence of the processed hlgB mRNA. This work illustrates the complexity of virulence factor expression in clinical strains and demonstrates a butterfly effect, where subtle genomic variations have a major impact on phenotype and virulence. Author SummaryThe Gram-positive bacterium Staphylococcus aureus can provoke a wide range of infections due to its ability to produce a large diversity of virulence factors, including immune evasion molecules, adhesins, and toxins. Some of these toxin-encoding genes are localized in mobile genetic elements, and are thus not present in all strains, whilst others are encoded in the core-genome and present in all strains. Gamma-hemolysin CB is a core-genome encoded toxin but its amount varies between community-acquired pneumonia isolates. The regulation mechanisms underlying this variation however, are not well characterized. Here, we show that gamma-hemolysin expression levels vary largely among clinical strains and that, when highly produced, it induces high mortality in a rabbit model of pneumonia. The molecular basis for the variation in gamma-hemolysin expression depends on multiple mechanisms including promoter strength, transcript stability and processing, and translatability (i.e. the amount of protein that is synthetized by the ribosome for a given transcript). Incredibly, all these factors rely on a subtle genetic modification. This work emphasizes the importance of the disparity in virulence factor expression among clinical isolates and points the extreme complexity of the molecular mechanisms underlying their regulation, rendering the prediction of virulence for a clinical isolate difficult.

microbiology↗

Staphylococcus aureus virulence factor expression matters: input from targeted proteomics shows Panton-Valentine leucocidin impact on mortality

In the case of commensal bacteria such as Staphylococcus aureus, the transition from commensalism to invasion and disease as well as disease severity in the course of an infection remain poorly predictable on the sole basis of virulence gene content. To determine whether variations in the levels of expression of the numerous S. aureus virulence factors could affect disease occurrence and/or severity, we developed a targeted proteomic approach that monitored 149 peptide surrogates targeting 44 proteins. Semi-quantification was achieved by normalization on the signal of ribosomal proteins. We then evaluated this approach on a series of S.aureus strains from 136 patients presenting a severe community-acquired pneumonia, all admitted to an intensive care unit. After adjusting to the Charlson Comorbidity Index score the multivariate analysis of severity parameters found that HlgB, Nuc, and Tsst-1 were positively associated while BlaI and HlgC were negatively associated with leucopenia. BlaZ and HlgB were positively associated with hemoptysis and HlgC was negatively associated with hemoptysis. Regarding mortality, both the multivariate (1.28; 95%CI[1.02;1.60]) and survival (1.15; 95%CI[1.016;1.302]) analyses showed that only PVL was associated with death in a dose-dependent manner. Beyond highlighting the decisive role of PVL in community-acquired pneumonia severity, this study brings the proof of concept that "expression matters" and proposes a method that can be routinely implemented in laboratories, for any Staphylococcal disease, and which could be developed for other commensal bacteria. One Sentence SummaryA highly multiplexed semi-quantitative mass spectrometry method was developed for 44 Staphylococcus aureus virulence factors; applied to a 136-strain collection from severe community-acquired pneumonia patients, it showed that Panton-Valentine leucocidin was the only factor to impact mortality in a dose-dependent manner.

microbiology↗