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Chaperone Activities of the 26S and 20S Proteasome

机译:26S和20S蛋白酶体的分子伴侣活性

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摘要

The accumulation of misfolded or damaged proteins causes the failure of normal cell structure and functions necessary for growth and viability. To abort this adverse development, defective proteins must be rapidly repaired by molecular chaperones or destroyed by energy-dependent cytoplasmic proteases. A balance among these processes ultimately maintains cellular homeostasis. In eukaryotes, the 26S proteasome, a protease/chaperone complex, is a central component in the protein triage decision process. The 26S proteasome generally acts as a ubiquitination system, though it also selectively degrades structurally abnormal proteins in an ubiquitin-independent manner. In either case, all substrate proteins must undergo structural changes and stabilization necessary for their rapid degradation. It has, therefore, often been suggested that several chaperone functions are closely related to the stimulation of proteasomal degradation. This review summarizes recent discoveries pertaining to chaperone activities in the proteasomal degradation pathway, and to their regulation of protein breakdown mediated by the proteasome.
机译:错误折叠或损坏的蛋白质的积累会导致正常细胞结构以及生长和活力所必需的功能失效。为了中止这种不利的发展,缺陷蛋白必须被分子伴侣迅速修复或被能量依赖性细胞质蛋白酶破坏。这些过程之间的平衡最终维持了细胞的动态平衡。在真核生物中,蛋白酶/伴侣复合物26S蛋白酶体是蛋白质分类决策过程中的重要组成部分。尽管26S蛋白酶体还以不依赖泛素的方式选择性降解结构异常的蛋白,但它通常充当泛素化系统。无论哪种情况,所有底物蛋白质都必须经历其快速降解所必需的结构变化和稳定化。因此,经常提出几种伴侣功能与蛋白酶体降解的刺激密切相关。这篇综述总结了有关蛋白酶体降解途径中伴侣活性及其对蛋白酶体介导的蛋白质分解的调控的最新发现。

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