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核糖体RACK1的结构分析及其在翻译控制中的作用。

Structural analysis of ribosomal RACK1 and its role in translational control.

作者信息

Nielsen Maja Holch, Flygaard Rasmus Kock, Jenner Lasse Bohl

机构信息

Department of Molecular Biology and Genetics, Gustav Wieds Vej 10C, DK-8000 Aarhus C, Aarhus University, Denmark.

出版信息

Cell Signal. 2017 Jul;35:272-281. doi: 10.1016/j.cellsig.2017.01.026. Epub 2017 Feb 2.

Abstract

Receptor for Activated C-Kinase 1 (RACK1) belongs to the WD40 family of proteins, known to act as scaffolding proteins in interaction networks. Accordingly, RACK1 is found to have numerous interacting partners ranging from kinases and signaling proteins to membrane bound receptors and ion channels. Interestingly, RACK1 has also been identified as a ribosomal protein present in all eukaryotic ribosomes. Structures of eukaryotic ribosomes have shown RACK1 to be located at the back of the head of the small ribosomal subunit. This suggests that RACK1 could act as a ribosomal scaffolding protein recruiting regulators of translation to the ribosome, and several studies have in fact found RACK1 to play a role in regulation of translation. To fully understand the role of RACK1 we need to understand whether the many reported interaction partners of RACK1 bind to free or ribosomal RACK1. In this review we provide a structural analysis of ribosome-bound RACK1 to provide a basis for answering this fundamental question. Our analysis shows that RACK1 is tightly bound to the ribosome through highly conserved and specific interactions confirming RACK1 as an integral ribosomal protein. Furthermore, we have analyzed whether reported binding sites for RACK1 interacting partners with a proposed role in translational control are accessible on ribosomal RACK1. Our analysis shows that most of the interaction partners with putative regulatory functions have binding sites that are available on ribosomal RACK1, supporting the role of RACK1 as a ribosomal signaling hub. We also discuss the possible role for RACK1 in recruitment of ribosomes to focal adhesion sites and regulation of local translation during cell spreading and migration.

摘要

活化C激酶1受体(RACK1)属于WD40蛋白家族,已知其在相互作用网络中作为支架蛋白发挥作用。因此,人们发现RACK1有众多相互作用伙伴,从激酶和信号蛋白到膜结合受体及离子通道。有趣的是,RACK1也被鉴定为存在于所有真核核糖体中的一种核糖体蛋白。真核核糖体的结构显示RACK1位于小核糖体亚基头部的后部。这表明RACK1可能作为一种核糖体支架蛋白,将翻译调节因子招募到核糖体上,事实上已有多项研究发现RACK1在翻译调控中发挥作用。为了全面了解RACK1的作用,我们需要了解RACK1众多已报道的相互作用伙伴是与游离的还是核糖体结合的RACK1结合。在本综述中,我们对核糖体结合的RACK1进行结构分析,为回答这个基本问题提供依据。我们的分析表明,RACK1通过高度保守和特异的相互作用与核糖体紧密结合,证实RACK1是一种不可或缺的核糖体蛋白。此外,我们分析了RACK1相互作用伙伴在翻译控制中具有拟议作用的报道结合位点在核糖体RACK1上是否可及。我们的分析表明,大多数具有假定调节功能的相互作用伙伴在核糖体RACK1上具有可及的结合位点,这支持了RACK1作为核糖体信号枢纽的作用。我们还讨论了RACK1在将核糖体招募到粘着斑位点以及在细胞铺展和迁移过程中局部翻译调控方面的可能作用。

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