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体内 30S 核糖体亚基组装的结构见解:S5 的功能作用和 17S rRNA 前体序列的位置。

Structural insights into the assembly of the 30S ribosomal subunit in vivo: functional role of S5 and location of the 17S rRNA precursor sequence.

机构信息

Ministry of Education Key Laboratory of Protein Sciences, Center for Structural Biology, School of Life Sciences, Tsinghua University, Beijing, 100084, China.

出版信息

Protein Cell. 2014 May;5(5):394-407. doi: 10.1007/s13238-014-0044-1. Epub 2014 Mar 28.

Abstract

The in vivo assembly of ribosomal subunits is a highly complex process, with a tight coordination between protein assembly and rRNA maturation events, such as folding and processing of rRNA precursors, as well as modifications of selected bases. In the cell, a large number of factors are required to ensure the efficiency and fidelity of subunit production. Here we characterize the immature 30S subunits accumulated in a factor-null Escherichia coli strain (∆rsgA∆rbfA). The immature 30S subunits isolated with varying salt concentrations in the buffer system show interesting differences on both protein composition and structure. Specifically, intermediates derived under the two contrasting salt conditions (high and low) likely reflect two distinctive assembly stages, the relatively early and late stages of the 3' domain assembly, respectively. Detailed structural analysis demonstrates a mechanistic coupling between the maturation of the 5' end of the 17S rRNA and the assembly of the 30S head domain, and attributes a unique role of S5 in coordinating these two events. Furthermore, our structural results likely reveal the location of the unprocessed terminal sequences of the 17S rRNA, and suggest that the maturation events of the 17S rRNA could be employed as quality control mechanisms on subunit production and protein translation.

摘要

核糖体亚基的体内组装是一个高度复杂的过程,需要蛋白质组装和 rRNA 成熟事件之间的紧密协调,例如 rRNA 前体的折叠和加工,以及选定碱基的修饰。在细胞中,需要大量的因素来确保亚基产生的效率和保真度。在这里,我们描述了在因子缺失的大肠杆菌菌株(∆rsgA∆rbfA)中积累的不成熟 30S 亚基。在缓冲液系统中使用不同盐浓度分离出的不成熟 30S 亚基在蛋白质组成和结构上表现出有趣的差异。具体而言,在两种对比盐条件(高盐和低盐)下获得的中间体可能分别反映了 3' 结构域组装的相对早期和晚期阶段。详细的结构分析表明,17S rRNA 5' 端成熟与 30S 头部结构域组装之间存在机械偶联,并赋予 S5 协调这两个事件的独特作用。此外,我们的结构结果可能揭示了 17S rRNA 未加工末端序列的位置,并表明 17S rRNA 的成熟事件可以作为亚基产生和蛋白质翻译的质量控制机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f0b/3996153/59430cd57dc8/13238_2014_44_Fig1_HTML.jpg

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