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细菌中30S亚基中间体的核糖体蛋白和RNA构象分析

Analysis of r-protein and RNA conformation of 30S subunit intermediates in bacteria.

作者信息

Napper Nathan, Culver Gloria M

机构信息

Department of Biology, University of Rochester, Rochester, New York 14627, USA.

Department of Biology, University of Rochester, Rochester, New York 14627, USA Center for RNA Biology: from Genome to Therapeutics, University of Rochester Medical Center, Rochester, New York 14627, USA.

出版信息

RNA. 2015 Jul;21(7):1323-34. doi: 10.1261/rna.048918.114. Epub 2015 May 21.

Abstract

The ribosome is a large macromolecular complex that must be assembled efficiently and accurately for the viability of all organisms. In bacteria, this process must be robust and tunable to support life in diverse conditions from the ice of arctic glaciers to thermal hot springs. Assembly of the Small ribosomal SUbunit (SSU) of Escherichia coli has been extensively studied and is highly temperature-dependent. However, a lack of data on SSU assembly for other bacteria is problematic given the importance of the ribosome in bacterial physiology. To broaden the understanding of how optimal growth temperature may affect SSU assembly, in vitro SSU assembly of two thermophilic bacteria, Geobacillus kaustophilus and Thermus thermophilus, was compared with that of E. coli. Using these phylogenetically, morphologically, and environmentally diverse bacteria, we show that SSU assembly is highly temperature-dependent and efficient SSU assembly occurs at different temperatures for each organism. Surprisingly, the assembly landscape is characterized by at least two distinct intermediate populations in the organisms tested. This novel, second intermediate, is formed in the presence of the full complement of r-proteins, unlike the previously observed RI* particle formed in the absence of late-binding r-proteins in E. coli. This work reveals multiple distinct intermediate populations are present during SSU assembly in vitro for several bacteria, yielding insights into RNP formation and possible antimicrobial development toward this common SSU target.

摘要

核糖体是一种大型高分子复合物,对于所有生物体的生存能力而言,它必须高效且准确地组装。在细菌中,这个过程必须强大且可调节,以支持从北极冰川的冰层到温泉等各种环境条件下的生命活动。大肠杆菌小核糖体亚基(SSU)的组装已得到广泛研究,且高度依赖温度。然而,鉴于核糖体在细菌生理学中的重要性,缺乏其他细菌SSU组装的数据是个问题。为了更深入了解最佳生长温度如何影响SSU组装,我们将嗜热栖热放线菌和嗜热栖热放线菌这两种嗜热细菌的体外SSU组装与大肠杆菌的进行了比较。利用这些在系统发育、形态和环境方面具有多样性的细菌,我们发现SSU组装高度依赖温度,并且每种生物体在不同温度下都能高效进行SSU组装。令人惊讶的是,在所测试的生物体中,组装过程至少有两个不同的中间群体。这种新的第二中间体是在r蛋白完全存在的情况下形成的,这与之前在大肠杆菌中观察到的在缺乏晚期结合r蛋白时形成的RI*颗粒不同。这项工作揭示了在几种细菌的体外SSU组装过程中存在多个不同的中间群体,为核糖核蛋白的形成以及针对这个常见SSU靶点的抗菌药物开发提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1168/4478351/2a262744092a/1323F01.jpg

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