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Cryo-EM structures of the late-stage assembly intermediates of the bacterial 50S ribosomal subunit

机译:细菌50S核糖体亚基后期组装中间体的低温EM结构

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摘要

Ribosome assembly is a process fundamental for all cellular activities. The efficiency and accuracy of the subunit assembly are tightly regulated and closely monitored. In the present work, we characterized, both compositionally and structurally, a set of in vivo 50S subunit precursors (45S), isolated from a mutant bacterial strain. Our qualitative mass spectrometry data indicate that L28, L16, L33, L36 and L35 are dramatically underrepresented in the 45S particles. This protein spectrum shows interesting similarity to many qualitatively analyzed 50S precursors from different genetic background, indicating the presence of global rate-limiting steps in the late-stage assembly of 50S subunit. Our structural data reveal two major intermediate states for the 45S particles. Consistently, both states severally lack those proteins, but they also differ in the stability of the functional centers of the 50S subunit, demonstrating that they are translationally inactive. Detailed analysis indicates that the orientation of H38 accounts for the global conformational differences in these intermediate structures, and suggests that the reorientation of H38 to its native position is rate-limiting during the late-stage assembly. Especially, H38 plays an essential role in stabilizing the central protuberance, through the interaction with the 5S rRNA, and the correctly orientated H38 is likely a prerequisite for further maturation of the 50S subunit.
机译:核糖体组装是所有细胞活动的基本过程。子单元组件的效率和准确性受到严格调节和密切监控。在本工作中,我们从组成和结构上对从突变细菌菌株中分离出的一组体内50S亚基前体(45S)进行了表征。我们的定性质谱数据表明,L28,L16,L33,L36和L35在45S颗粒中的含量明显不足。该蛋白质谱与来自不同遗传背景的许多定性分析的50S前体显示出有趣的相似性,表明在50S亚基的后期组装中存在整体限速步骤。我们的结构数据揭示了45S颗粒的两个主要中间状态。一致地,这两种状态分别缺乏这些蛋白质,但是它们在50S亚基功能中心的稳定性方面也有所不同,表明它们在翻译上是无活性的。详细的分析表明,H38的取向解释了这些中间结构的整体构象差异,并表明在后期组装过程中,H38对其原始位置的重新取向是限速的。特别是,H38通过与5S rRNA的相互作用在稳定中央突起中起着至关重要的作用,正确定向的H38可能是50S亚基进一步成熟的先决条件。

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