Shintani Takahiro, Huang Wei-Pang, Stromhaug Per E, Klionsky Daniel J
University of Michigan, Department of Molecular, Cellular, and Developmental Biology, Ann Arbor 48109, USA.
Dev Cell. 2002 Dec;3(6):825-37. doi: 10.1016/s1534-5807(02)00373-8.
The proper functioning of eukaryotic organelles is largely dependent on the specific packaging of cargo proteins within transient delivery vesicles. The cytoplasm to vacuole targeting (Cvt) pathway is an autophagy-related trafficking pathway whose cargo proteins, aminopeptidase I and alpha-mannosidase, are selectively transported from the cytoplasm to the lysosome-like vacuole in yeast. This study elucidates a molecular mechanism for cargo specificity in this pathway involving four discrete steps. The Cvt19 receptor plays a central role in this process: distinct domains in Cvt19 recognize oligomerized cargo proteins and link them to the vesicle formation machinery via interaction with Cvt9 and Aut7. Because autophagy is the primary mechanism for organellar turnover, these results offer insights into physiological processes that are critical in cellular homeostasis, including specific packaging of damaged or superfluous organelles for lysosomal delivery and breakdown.
真核细胞器的正常功能在很大程度上依赖于货物蛋白在瞬时运输囊泡中的特定包装。细胞质到液泡靶向(Cvt)途径是一种与自噬相关的运输途径,其货物蛋白氨基肽酶I和α-甘露糖苷酶在酵母中从细胞质选择性地运输到溶酶体样液泡中。本研究阐明了该途径中货物特异性的分子机制,涉及四个不同步骤。Cvt19受体在这一过程中起核心作用:Cvt19中的不同结构域识别寡聚化的货物蛋白,并通过与Cvt9和Aut7相互作用将它们与囊泡形成机制联系起来。由于自噬是细胞器更新的主要机制,这些结果为细胞内稳态中至关重要的生理过程提供了见解,包括将受损或多余的细胞器进行特定包装以用于溶酶体运输和分解。