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Mesleard-Roux, M.

Publications and source records attributed to Mesleard-Roux, M..

2 recordsLinked to original sources

HIV-1 Tat favors the multiplication of Mycobacterium tuberculosis and toxoplasma by inhibiting clathrin-mediated endocytosis and autophagy

AbstractHIV-1 and Mycobacterium tuberculosis (Mtb) coinfections are a major public health problem but are not well characterized. HIV-1 Tat is secreted by infected cells, generating nanomolar concentrations of Tat in the sera of people living with HIV. Circulating Tat enters cells, binds to PI(4,5)P2 then undergoes palmitoylation, thereby becoming resident on this phosphoinositide. Here, we found that Tat favors the multiplication of Mtb in macrophages. Moreover, Tat renders zebrafish larvae more sensitive to mycobacterial infection. We found that Tat binding to PI(4,5)P2 and palmitoylation enable Tat to inhibit the recruitment of the AP-2 adaptor, thereby inhibiting clathrin-mediated endocytosis and in turn autophagy. This inhibition prevents the degradation of intracellular pathogens such as Mtb and opsonized Toxoplasma gondii, but also of lipid droplets, thereby facilitating the access of these pathogens to lipids. We thus identified a mechanism enabling HIV Tat to favor the multiplication of intracellular pathogens such as Mtb.

microbiology↗

"This training is bound for glory": selection by experimental evolution of a bacteriophage with expanded host-range and increased virulence

Viral host range expansion is predicted to evolve at the cost of reduced mean fitness. We investigated the adaptive walks of a virulent phage (Tequintavirus) in a spatially variable environment composed of four susceptible bacterial isolates and four resistant ones (Salmonella enterica serotype Tennessee, sequence types ST5018 and ST319 respectively). Starting from a single ancestral phage, we evolved multiple independent populations through serial passages on non-coevolving bacteria, following the Appelmans protocol. The phage populations evolved an expanded host range and increased virulence. Whole-genome sequencing revealed recurrent parallel mutations across populations (i.e. convergent evolution), particularly in genes encoding exo- and endo-nucleases, dUTPase, and caudal proteins. Notably, two parallel mutations in the gene coding for the Long Tail Fibre became fixed early in the evolutionary trajectories. Reverse-genetics experiments introducing these mutations into the ancestral genome expanded the host range but yielded only marginal increases in virulence, highlighting the effect of compensatory mutations. O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=115 SRC="FIGDIR/small/584857v3_ufig1.gif" ALT="Figure 1"> View larger version (24K): org.highwire.dtl.DTLVardef@cec6b5org.highwire.dtl.DTLVardef@1579ba4org.highwire.dtl.DTLVardef@ab5ad5org.highwire.dtl.DTLVardef@1d88160_HPS_FORMAT_FIGEXP M_FIG C_FIG Highlights* A phage (Tequintavirus) was evolved on susceptible and resistant Salmonella enterica strains * Experimentally evolved phage populations displayed expanded host range and increased virulence * Convergent evolution revealed adaptive mutations modifying receptor recognition in caudal proteins * Reverse-genetic showed implication of two Long Tail Fibre mutations in host range expansion In BriefGeneralism is traditionally predicted to evolve at the cost of lower mean fitness. Contrary to this textbook view, we demonstrate that generalist phages with expanded host range and increased virulence can readily evolve in vitro and be purposely optimized for phage therapy applications.

evolutionary biology↗