Guan Bin, Xie Ke-Xuan, Du Xin-Qiao, Bai Yu-Xuan, Hao Peng-Chao, Lin Wen-Hui, Friml Jiří, Xue Hong-Wei
Shanghai Collaborative Innovation Center of Agri-Seeds, School of Agriculture and Biology, Shanghai Jiao Tong University, Shanghai 200240, China; Institute of Science and Technology Austria (ISTA), Klosterneuburg, Austria.
Shanghai Collaborative Innovation Center of Agri-Seeds, School of Agriculture and Biology, Shanghai Jiao Tong University, Shanghai 200240, China.
Cell Rep. 2025 Jul 22;44(7):116024. doi: 10.1016/j.celrep.2025.116024. Epub 2025 Jul 15.
Vacuolar acidification is crucial for the homeostasis of intracellular pH and the recycling of proteins and nutrients in cells, thereby playing important roles in various physiological processes related to vacuolar function. The key factors regulating vacuolar acidification and underlying mechanisms remain unclear. Here, we report that Arabidopsis phospholipase Dζ2 (PLDζ2) promotes the acidification of the vacuolar lumen to stimulate autophagic degradation under phosphorus deficiency. The pldζ2 mutant massively accumulates autophagic structures while exhibiting premature leaf senescence under nutrient starvation. Impaired autophagic flux, lytic vacuole morphology, and lytic degradation in pldζ2 indicate that PLDζ2 regulates autophagy by affecting the vacuolar function. PLDζ2 locates in both tonoplast and cytoplasm. Genetic, structural, and biochemical studies demonstrate that PLDζ2 directly interacts with vacuolar-type ATPase (V-ATPase) subunit D (VATD) to promote vacuolar acidification and autophagy under phosphorus starvation. These findings reveal the importance of V-ATPase and vacuolar pH in autophagic activity and provide clues in elucidating the regulatory mechanism of vacuolar acidification.
液泡酸化对于细胞内pH稳态以及细胞内蛋白质和营养物质的循环利用至关重要,因此在与液泡功能相关的各种生理过程中发挥着重要作用。调节液泡酸化的关键因素及其潜在机制仍不清楚。在此,我们报道拟南芥磷脂酶Dζ2(PLDζ2)在缺磷条件下促进液泡腔酸化以刺激自噬降解。pldζ2突变体在营养饥饿时大量积累自噬结构,同时表现出叶片早衰。pldζ2中自噬通量、溶酶体液泡形态和溶酶体降解受损表明PLDζ2通过影响液泡功能来调节自噬。PLDζ2定位于液泡膜和细胞质中。遗传学、结构和生化研究表明,PLDζ2在缺磷条件下直接与液泡型ATP酶(V-ATPase)亚基D(VATD)相互作用,以促进液泡酸化和自噬。这些发现揭示了V-ATPase和液泡pH在自噬活性中的重要性,并为阐明液泡酸化的调控机制提供了线索。