植物细胞中自噬体的生物生成和细胞器的平衡。

IF 10 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Plant Cell Pub Date : 2024-09-03 DOI:10.1093/plcell/koae099
Xiaohong Zhuang, Baiying Li, Liwen Jiang
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引用次数: 0

摘要

自噬是响应植物发育和环境信号的主要高度诱导降解过程之一。在不同刺激的作用下,细胞物质(包括蛋白质和细胞器)可选择性或非选择性地螯合到双膜自噬体结构中。自噬体的形成及其向液泡的输送涉及复杂而动态的膜过程。对保守的自噬相关(ATG)蛋白及其相关调控因子的鉴定和表征极大地促进了我们对植物细胞中自噬体生物发生和功能的分子机制的了解。自噬体的生物发生受到多种 ATG 蛋白和非 ATG 蛋白的协调以及选择性货物招募的严格调控。本综述更新了我们目前对自噬体生物发生的认识,特别强调了驱动自噬体形成的核心分子机制,以及非生物胁迫条件下自噬体与细胞器之间的相互作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Autophagosome biogenesis and organelle homeostasis in plant cells.

Autophagy is one of the major highly inducible degradation processes in response to plant developmental and environmental signals. In response to different stimuli, cellular materials, including proteins and organelles, can be sequestered into a double membrane autophagosome structure either selectively or nonselectively. The formation of an autophagosome as well as its delivery into the vacuole involves complex and dynamic membrane processes. The identification and characterization of the conserved autophagy-related (ATG) proteins and their related regulators have greatly advanced our understanding of the molecular mechanism underlying autophagosome biogenesis and function in plant cells. Autophagosome biogenesis is tightly regulated by the coordination of multiple ATG and non-ATG proteins and by selective cargo recruitment. This review updates our current knowledge of autophagosome biogenesis, with special emphasis on the core molecular machinery that drives autophagosome formation and autophagosome-organelle interactions under abiotic stress conditions.

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来源期刊
Plant Cell
Plant Cell 生物-生化与分子生物学
CiteScore
16.90
自引率
5.20%
发文量
337
审稿时长
2.4 months
期刊介绍: Title: Plant Cell Publisher: Published monthly by the American Society of Plant Biologists (ASPB) Produced by Sheridan Journal Services, Waterbury, VT History and Impact: Established in 1989 Within three years of publication, ranked first in impact among journals in plant sciences Maintains high standard of excellence Scope: Publishes novel research of special significance in plant biology Focus areas include cellular biology, molecular biology, biochemistry, genetics, development, and evolution Primary criteria: articles provide new insight of broad interest to plant biologists and are suitable for a wide audience Tenets: Publish the most exciting, cutting-edge research in plant cellular and molecular biology Provide rapid turnaround time for reviewing and publishing research papers Ensure highest quality reproduction of data Feature interactive format for commentaries, opinion pieces, and exchange of information in review articles, meeting reports, and insightful overviews.
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