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单细胞真核生物中的自噬作用。

Autophagy in unicellular eukaryotes.

机构信息

Molecular Cell Biology, Groningen Biomolecular Sciences and Biotechnology Institute, University of Groningen, PO Box 14, 9750 Haren, The Netherlands.

出版信息

Philos Trans R Soc Lond B Biol Sci. 2010 Mar 12;365(1541):819-30. doi: 10.1098/rstb.2009.0237.

Abstract

Cells need a constant supply of precursors to enable the production of macromolecules to sustain growth and survival. Unlike metazoans, unicellular eukaryotes depend exclusively on the extracellular medium for this supply. When environmental nutrients become depleted, existing cytoplasmic components will be catabolized by (macro)autophagy in order to re-use building blocks and to support ATP production. In many cases, autophagy takes care of cellular housekeeping to sustain cellular viability. Autophagy encompasses a multitude of related and often highly specific processes that are implicated in both biogenetic and catabolic processes. Recent data indicate that in some unicellular eukaryotes that undergo profound differentiation during their life cycle (e.g. kinetoplastid parasites and amoebes), autophagy is essential for the developmental change that allows the cell to adapt to a new host or form spores. This review summarizes the knowledge on the molecular mechanisms of autophagy as well as the cytoplasm-to-vacuole-targeting pathway, pexophagy, mitophagy, ER-phagy, ribophagy and piecemeal microautophagy of the nucleus, all highly selective forms of autophagy that have first been uncovered in yeast species. Additionally, a detailed analysis will be presented on the state of knowledge on autophagy in non-yeast unicellular eukaryotes with emphasis on the role of this process in differentiation.

摘要

细胞需要不断地提供前体物质来合成大分子物质以维持生长和存活。与多细胞生物不同,单细胞真核生物完全依赖于细胞外环境来提供这些物质。当环境中的营养物质耗尽时,现有的细胞质成分将通过(大)自噬作用被分解代谢,以重新利用构建块并支持 ATP 的产生。在许多情况下,自噬负责细胞的日常维护,以维持细胞的活力。自噬包含了许多相关的、通常高度特异的过程,这些过程既参与生物发生过程,也参与分解代谢过程。最近的数据表明,在一些生命周期中经历深刻分化的单细胞真核生物(例如动基体寄生虫和变形虫)中,自噬对于允许细胞适应新宿主或形成孢子的发育变化是必不可少的。这篇综述总结了自噬的分子机制以及细胞质到液泡靶向途径、pexophagy、mitophagy、ER-phagy、ribophagy 和核的片段微自噬的知识,这些都是首先在酵母物种中发现的高度选择性的自噬形式。此外,还将详细分析非酵母单细胞真核生物中自噬的研究现状,重点介绍该过程在分化中的作用。

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