真菌
自噬
传染性
生物
细胞生物学
化学
生物化学
植物
遗传学
细胞凋亡
病毒
作者
Hong Hu,Mei Qin,J. Zhang,Jintao Jiang,Zhiqin Su,Lun Guan,Zhiguang Qu,Caiyun Liu,Xuan Cai,Zhiyong Jason Ren,Yuhan Duan,Deyao Zhang,Hao Liu,Lu Zheng,Junbin Huang,Xiaolin Chen
标识
DOI:10.1038/s41467-025-61582-8
摘要
Hydrogen sulfide (H2S) regulates cellular activities in plants and mammals through S-sulfhydration, a post-translational modification of proteins. The role of H2S and its molecular targets in fungi, however, remains unclear. Here we show that H2S, synthesized by cystathionine γ-lyase (CSE1) in the rice blast fungus Magnaporthe oryzae, is essential for optimal fungal infection. Excessive H2S, through S-sulfhydration, impairs fungal infectivity by inhibiting autophagy. Using quantitative proteomics, we identify numerous S-sulfhydrated proteins in M. oryzae, including the autophagy-related protein ATG18. S-sulfhydration of a cysteine residue (Cys78) in ATG18 is essential for its binding to phosphatidylinositol 3-phosphate, thereby maintaining the protein's structural stability and regulating autophagy. Thus, our study reveals a mechanism by which H2S-mediated S-sulfhydration controls autophagy in the rice blast fungus and suggests the potential use of H2S donors as a strategy to control fungal diseases by targeting fungal development and infection structures.
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