Kim Jeong Hun, Jung Hyera, Song Kyoungjun, Lee Han Nim, Chung Taijoon
Department of Biological Sciences, Pusan National University, Busan, Republic of Korea.
Front Plant Sci. 2023 Mar 15;14:1160162. doi: 10.3389/fpls.2023.1160162. eCollection 2023.
Phosphatidylinositol 3-phosphate (PI3P) is a signaling phospholipid that play a key role in endomembrane trafficking, specifically autophagy and endosomal trafficking. However, the mechanisms underlying the contribution of PI3P downstream effectors to plant autophagy remain unknown. Known PI3P effectors for autophagy in include ATG18A (Autophagy-related 18A) and FYVE2 (Fab1p, YOTB, Vac1p, and EEA1 2), which are implicated in autophagosome biogenesis. Here, we report that FYVE3, a paralog of plant-specific FYVE2, plays a role in FYVE2-dependent autophagy. Using yeast two-hybrid and bimolecular fluorescence complementation assays, we determined that the FYVE3 protein was associated with autophagic machinery containing ATG18A and FYVE2, by interacting with ATG8 isoforms. The FYVE3 protein was transported to the vacuole, and the vacuolar delivery of FYVE3 relies on PI3P biosynthesis and the canonical autophagic machinery. Whereas the mutation alone barely affects autophagic flux, it suppresses defective autophagy in mutants. Based on the molecular genetics and cell biological data, we propose that FYVE3 specifically regulates FYVE2-dependent autophagy.
磷脂酰肌醇3-磷酸(PI3P)是一种信号磷脂,在内膜运输中起关键作用,特别是在自噬和内体运输方面。然而,PI3P下游效应器对植物自噬作用的潜在机制仍不清楚。已知自噬过程中的PI3P效应器包括ATG18A(自噬相关蛋白18A)和FYVE2(Fab1p、YOTB、Vac1p和EEA1 2),它们与自噬体的生物合成有关。在此,我们报道植物特异性FYVE2的旁系同源物FYVE3在依赖FYVE2的自噬中发挥作用。通过酵母双杂交和双分子荧光互补分析,我们确定FYVE3蛋白通过与ATG8亚型相互作用,与包含ATG18A和FYVE2的自噬机制相关联。FYVE3蛋白被转运至液泡,且FYVE3向液泡的运输依赖于PI3P生物合成和经典自噬机制。虽然单独的突变几乎不影响自噬通量,但它能抑制突变体中的自噬缺陷。基于分子遗传学和细胞生物学数据,我们提出FYVE3特异性调节依赖FYVE2的自噬。