bioRxiv · 10.1101/2020.11.04.367706
The bacterial toxin ExoU requires a host trafficking chaperone for transportation and to induce necrosis
Abstract
Pseudomonas aeruginosa is a causative agent in nosocomial infections, notably in ventilated or cystic fibrosis patients. P. aeruginosa isolates expressing the phospholipase ExoU, an effector of the type III secretion system, are the most pathogenic in clinics. Here, using a genome-wide screen, we discovered that ExoU toxicity requires DNAJC5, a host chaperone, to exert its necrotic activity. DNAJC5 is involved in an unconventional secretory pathway for misfolded proteins involving anterograde vesicular trafficking. DNAJC5-deficient human cells or Drosophila flies knocked-down for the DNAJC5 orthologue were largely resistant to ExoU virulence. ExoU colocalized with DNAJC5-positive vesicles in the host cytoplasm. DNAJC5 mutations preventing vesicle trafficking - identified in adult neuronal ceroid lipofuscinosis, a human congenital disease - inhibited ExoU-dependent cell lysis. These results suggest that, once injected into the host cytoplasm, ExoU docks to DNAJC5-positive secretory vesicles to reach the plasma membrane, where its phospholipase activity is triggered by binding to PI(4,5)P2.
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Deruelle, V., Bouillot, S., Job, V., Taillebourg, E., Fauvarque, M.-O., Attree, I., Huber, P.. 2020-11-04. The bacterial toxin ExoU requires a host trafficking chaperone for transportation and to induce necrosis. https://doi.org/10.1101/2020.11.04.367706
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