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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >The power of AAA-ATPases on the road of pre-60S ribosome maturation - Molecular machines that strip pre-ribosomal particles
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The power of AAA-ATPases on the road of pre-60S ribosome maturation - Molecular machines that strip pre-ribosomal particles

机译:AAA-ATPases在60S前核糖体成熟道路上的力量-去除核糖体前颗粒的分子机器

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摘要

The biogenesis of ribosomes is a fundamental cellular process, which provides the molecular machines that synthesize all cellular proteins. The assembly of eukaryotic ribosomes is a highly complex multi-step process that requires more than 200 ribosome biogenesis factors, which mediate a broad spectrum of maturation reactions. The participation of many energy-consuming enzymes (e.g. AAA-type ATPases, RNA helicases, and GTPases) in this process indicates that the expenditure of energy is required to drive ribosome assembly. While the precise function of many of these enzymes remains elusive, recent progress has revealed that the three AAA-type ATPases involved in 60S subunit biogenesis are specifically dedicated to the release and recycling of distinct biogenesis factors. In this review, we will highlight how the molecular power of yeast Drg1, Rix7, and Rea1 is harnessed to promote the release of their substrate proteins from evolving pre-60S particles and, where appropriate, discuss possible catalytic mechanisms. This article is part of a Special Issue entitled: AAA ATPases: structure and function.
机译:核糖体的生物发生是基本的细胞过程,它提供了合成所有细胞蛋白的分子机器。真核生物核糖体的组装是一个高度复杂的多步骤过程,需要200多个核糖体生物发生因子,这些因子可介导广泛的成熟反应。许多耗能酶(例如AAA型ATP酶,RNA解旋酶和GTPases)参与此过程,表明驱动核糖体装配需要消耗能量。尽管许多这些酶的确切功能仍然难以捉摸,但最近的进展表明,参与60S亚基生物发生的三种AAA型ATP酶专门用于释放和循环利用不同的生物发生因子。在这篇综述中,我们将重点介绍如何利用酵母Drg1,Rix7和Rea1的分子力量促进60S之前的颗粒从释放的底物蛋白质释放,并在适当的情况下讨论可能的催化机制。本文是名为“ AAA ATPases:结构和功能”的特刊的一部分。

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