膨胀压力
液泡
细胞生物学
胞浆
细胞壁
程序性细胞死亡
生物
溶解循环
自噬
细胞
细胞膜
植物细胞
生物物理学
生物化学
酶
细胞质
细胞凋亡
病毒
病毒学
基因
作者
Jose Julian,Peng Gao,Alessia Del Chiaro,Juan Carlos De la Concepción,Laia Armengot,Marc Somssich,Héloïse Duvergé,Marion Clavel,Nenad Grujic,Roksolana Kobylinska,Ingo Polivka,Maarten Besten,Tonni Grube Andersen,Christian Dank,Barbara Korbei,Andreas Bachmair,Núria S. Coll,Elena A. Minina,Joris Sprakel,Yasin Dagdas
标识
DOI:10.1038/s41477-025-01907-z
摘要
Abstract Vacuoles are essential for cellular metabolism and growth and the maintenance of internal turgor pressure. They sequester lytic enzymes, ions and secondary metabolites that, if leaked into the cytosol, could lead to cell death. Despite their pivotal roles, quality control pathways that safeguard vacuolar integrity have remained elusive in plants. Here we describe a conserved vacuolar quality control pathway that is activated upon cell wall damage in a turgor-pressure-dependent manner. Cell wall perturbations induce a distinct modification—ATG8ylation—on the vacuolar membrane (tonoplast) that is regulated by the V-ATPase and ATG8 conjugation machinery. Genetic disruption of tonoplast ATG8ylation impairs vacuolar integrity, leading to cell death. Together, our findings reveal a homeostatic pathway that preserves vacuolar integrity upon cell wall damage.
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