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Lobato-Marquez, D.

Publications and source records attributed to Lobato-Marquez, D..

2 recordsLinked to original sources

Proximity biotinylation at the host-Shigella interface reveals UFMylation as an antibacterial pathway.

Host cells contest invasion by intracellular bacterial pathogens with multiple strategies that recognise and / or damage the bacterial surface. To identify novel host defence factors targeted to intracellular bacteria, we developed a versatile proximity biotinylation approach coupled to quantitative mass spectrometry that maps the host-bacterial interface during infection. Using this method, we discovered that intracellular Shigella and Salmonella become targeted by UFM1-protein ligase 1 (UFL1), an E3 ligase that catalyses the covalent attachment of Ubiquitin-fold modifier 1 (UFM1) to target substrates in a process called UFMylation. We show that Shigella antagonises UFMylation in a dual manner: first, using its lipopolysaccharide (LPS) to shield from UFL1 recruitment; second, preventing UFM1 decoration by the bacterial effector IpaH9.8. Absence of UFMylation leads to an increase of bacterial burden in both human cells and zebrafish larvae, suggesting that UFMylation is a highly conserved antibacterial pathway. Contrary to canonical ubiquitylation, the protective role of UFMylation is independent of autophagy. Altogether, our proximity mapping of the host-bacterial interface identifies UFMylation as an ancient antibacterial pathway and holds great promise to reveal other cell-autonomous immunity mechanisms.

microbiology↗

Septins and K63 chains form separate bacterial microdomains during autophagy of entrapped Shigella

During host cell invasion, Shigella escapes to the cytosol and polymerizes actin for cell-to-cell spread. To restrict cell-to-cell spread, host cells employ cell-autonomous immune responses including antibacterial autophagy and septin cage entrapment. How septins interact with autophagy to target Shigella to destruction is poorly understood. Here, we employed a correlative light and cryo-soft X-ray tomography (cryo-SXT) pipeline to study Shigella septin cage entrapment in its near native state. Quantitative cryo-SXT showed that Shigella fragments mitochondria and enabled visualization of X-ray dense structures ([~]30 nm resolution) surrounding Shigella entrapped in septin cages. Using Airyscan confocal microscopy, we observed Lysine 63 (K63)-linked ubiquitin chains decorating septin caged entrapped Shigella. Remarkably, septins and K63 chains form separate bacterial microdomains, indicating they are recruited separately during antibacterial autophagy. Cryo-SXT and live cell imaging revealed an interaction between septins and LC3B-positive membranes during autophagy of Shigella. Together, these findings demonstrate how septin caged Shigella are targeted to autophagy and provide fundamental insights into autophagy-cytoskeleton interactions.

microbiology↗