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PsAF5 Functions As an Essential Adapter for PsPHB2-mediated Mitophagy Under ROS Stress in Phytophthora Sojae

Overview
Journal Nat Commun
Specialty Biology
Date 2024 Mar 4
PMID 38438368
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Abstract

Host-derived reactive oxygen species (ROS) are an important defense means to protect against pathogens. Although mitochondria are the main intracellular targets of ROS, how pathogens regulate mitochondrial physiology in response to oxidative stress remains elusive. Prohibitin 2 (PHB2) is an inner mitochondrial membrane (IMM) protein, recognized as a mitophagy receptor in animals and fungi. Here, we find that an ANK and FYVE domain-containing protein PsAF5, is an adapter of PsPHB2, interacting with PsATG8 under ROS stress. Unlike animal PHB2 that can recruit ATG8 directly to mitochondria, PsPHB2 in Phytophthora sojae cannot recruit PsATG8 to stressed mitochondria without PsAF5. PsAF5 deletion impairs mitophagy under ROS stress and increases the pathogen's sensitivity to HO, resulting in the attenuation of P. sojae virulence. This discovery of a PsPHB2-PsATG8 adapter (PsAF5) in plant-pathogenic oomycetes reveals that mitophagy induction by IMM proteins is conserved in eukaryotes, but with differences in the details of ATG8 recruitment.

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References
1.
Ngou B, Ahn H, Ding P, Jones J . Mutual potentiation of plant immunity by cell-surface and intracellular receptors. Nature. 2021; 592(7852):110-115. DOI: 10.1038/s41586-021-03315-7. View

2.
Ngou B, Ding P, Jones J . Thirty years of resistance: Zig-zag through the plant immune system. Plant Cell. 2022; 34(5):1447-1478. PMC: 9048904. DOI: 10.1093/plcell/koac041. View

3.
Jones J, Dangl J . The plant immune system. Nature. 2006; 444(7117):323-9. DOI: 10.1038/nature05286. View

4.
Suzuki N, Miller G, Morales J, Shulaev V, Torres M, Mittler R . Respiratory burst oxidases: the engines of ROS signaling. Curr Opin Plant Biol. 2011; 14(6):691-9. DOI: 10.1016/j.pbi.2011.07.014. View

5.
Wojtaszek P . Oxidative burst: an early plant response to pathogen infection. Biochem J. 1997; 322 ( Pt 3):681-92. PMC: 1218243. DOI: 10.1042/bj3220681. View