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组装古菌核糖体:翻译因子相关 GTPase 的作用。

Assembling the archaeal ribosome: roles for translation-factor-related GTPases.

机构信息

Laboratory of Microbiology, Wageningen University, Dreijenplein 10, 6703 HB Wageningen, The Netherlands.

出版信息

Biochem Soc Trans. 2011 Jan;39(1):45-50. doi: 10.1042/BST0390045.

Abstract

The assembly of ribosomal subunits from their individual components (rRNA and ribosomal proteins) requires the assistance of a multitude of factors in order to control and increase the efficiency of the assembly process. GTPases of the TRAFAC (translation-factor-related) class constitute a major type of ribosome-assembly factor in Eukaryota and Bacteria. They are thought to aid the stepwise assembly of ribosomal subunits through a 'molecular switch' mechanism that involves conformational changes in response to GTP hydrolysis. Most conserved TRAFAC GTPases are involved in ribosome assembly or other translation-associated processes. They typically interact with ribosomal subunits, but in many cases, the exact role that these GTPases play remains unclear. Previous studies almost exclusively focused on the systems of Bacteria and Eukaryota. Archaea possess several conserved TRAFAC GTPases as well, with some GTPase families being present only in the archaeo-eukaryotic lineage. In the present paper, we review the occurrence of TRAFAC GTPases with translation-associated functions in Archaea.

摘要

核糖体亚基由其各自的组成部分(rRNA 和核糖体蛋白)组装而成,需要多种因素的协助,以控制和提高组装过程的效率。TRA FAC(翻译因子相关)类的 GTPases 是真核生物和细菌中主要的核糖体组装因子类型。它们被认为通过“分子开关”机制辅助核糖体亚基的逐步组装,该机制涉及 GTP 水解的构象变化。大多数保守的 TRAFAC GTPases 参与核糖体组装或其他与翻译相关的过程。它们通常与核糖体亚基相互作用,但在许多情况下,这些 GTPases 的确切作用仍不清楚。以前的研究几乎完全集中在细菌和真核生物系统上。古菌也拥有几个保守的 TRAFAC GTPases,其中一些 GTPase 家族仅存在于古真核生物谱系中。在本文中,我们综述了具有翻译相关功能的 TRAFAC GTPases 在古菌中的存在情况。

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