bioRxiv · 10.1101/2021.03.17.435853
Self-ubiquitination of a pathogen type-III effector traps and blocks the autophagy machinery to promote disease
Abstract
Beyond its role in cellular homeostasis, autophagy plays anti- and pro-microbial roles in host-microbe interactions, both in animals and plants. One prominent role of anti-microbial autophagy is to degrade intracellular pathogens or microbial molecules, in a process termed xenophagy. Consequently, microbes evolved mechanisms to hijack or modulate autophagy to escape elimination. Although well-described in animals, the extent to which xenophagy contributes to plant-bacteria interactions remains unknown. Here, we provide evidence that Xanthomonas campestris pv. vesicatoria (Xcv) suppresses host autophagy by utilizing type-III effector XopL. XopL interacts with and degrades the autophagy component SH3P2 via its E3 ligase activity to promote infection. Intriguingly, XopL is targeted for degradation by defense-related selective autophagy mediated by NBR1/Joka2, revealing a complex antagonistic interplay between XopL and the host autophagy machinery. Our results implicate plant antimicrobial autophagy in depletion of a bacterial virulence factor and unravels an unprecedented pathogen strategy to counteract defense-related autophagy.
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Leong, J.-X., Raffeiner, M., Spinti, D., Langin, G., Franz-Wachtel, M., Guzman, A. R., Kim, J.-G., Pandey, P., Minina, A. E. A., Macek, B., Hafren, A., Bozkurt, T. O., Mudgett, M. B., Boernke, F., Hofius, D., Uestuen, S.. 2021-03-17. Self-ubiquitination of a pathogen type-III effector traps and blocks the autophagy machinery to promote disease. https://doi.org/10.1101/2021.03.17.435853
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