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植物自噬的分子机制:ATG8蛋白在自噬体形成和功能中的作用

Molecular Mechanisms of Autophagy in Plants: Role of ATG8 Proteins in Formation and Functioning of Autophagosomes.

作者信息

Ryabovol V V, Minibayeva F V

机构信息

Kazan Institute of Biochemistry and Biophysics, Russian Academy of Sciences, Kazan, 420111, Russia.

出版信息

Biochemistry (Mosc). 2016 Apr;81(4):348-63. doi: 10.1134/S0006297916040052.

Abstract

Autophagy is an efficient way of degradation and removal of unwanted or damaged intracellular components in plant cells. It plays an important role in recycling of intracellular structures (during starvation, removal of cell components formed during plant development or damaged by various stress factors) and in programmed cell death. Morphologically, autophagy is characterized by the formation of double-membrane vesicles called autophagosomes, which are essential for the isolation and degradation of cytoplasmic components. Among autophagic (ATG) proteins, ATG8 from the ubiquitin-like protein family plays a key role in autophagosome formation. ATG8 is also involved in selective autophagy, fusion of autophagosome with the vacuole, and some other intracellular processes not associated with autophagy. In contrast to yeasts that carry a single ATG8 gene, plants have multigene ATG8 families. The reason for such great ATG8 diversity in plants remains unclear. It is also unknown whether all members of the ATG8 family are involved in the formation and functioning of autophagosomes. To answer these questions, the identification of the structure and the possible functions of plant proteins from ATG8 family is required. In this review, we analyze the structures of ATG8 proteins from plants and their homologs from yeast and animal cells, interactions of ATG8 proteins with functional ligands, and involvement of ATG8 proteins in different metabolic processes in eukaryotes.

摘要

自噬是植物细胞中降解和清除不需要的或受损的细胞内成分的一种有效方式。它在细胞内结构的循环利用(在饥饿期间、清除植物发育过程中形成的或受到各种应激因素破坏的细胞成分)以及程序性细胞死亡中发挥着重要作用。在形态学上,自噬的特征是形成称为自噬体的双膜囊泡,这对于细胞质成分的隔离和降解至关重要。在自噬相关(ATG)蛋白中,泛素样蛋白家族的ATG8在自噬体形成中起关键作用。ATG8还参与选择性自噬、自噬体与液泡的融合以及一些其他与自噬无关的细胞内过程。与携带单个ATG8基因的酵母不同,植物具有多基因ATG8家族。植物中ATG8如此多样化的原因尚不清楚。ATG8家族的所有成员是否都参与自噬体的形成和功能也不清楚。为了回答这些问题,需要鉴定ATG8家族植物蛋白的结构和可能的功能。在这篇综述中,我们分析了植物ATG8蛋白及其来自酵母和动物细胞的同源物的结构、ATG8蛋白与功能性配体的相互作用以及ATG8蛋白在真核生物不同代谢过程中的参与情况。

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