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通过低温电子显微镜观察到 30S 核糖体亚基的构象变化和运动。

Alternative conformations and motions adopted by 30S ribosomal subunits visualized by cryo-electron microscopy.

机构信息

Department of Anatomy and Cell Biology, McGill University, Montreal, Quebec H3A 0C7, Canada.

Centre for Structural Biology, McGill University, Montreal, Quebec H3G 0B1, Canada.

出版信息

RNA. 2020 Dec;26(12):2017-2030. doi: 10.1261/rna.075846.120. Epub 2020 Sep 28.

Abstract

It is only after recent advances in cryo-electron microscopy that it is now possible to describe at high-resolution structures of large macromolecules that do not crystalize. Purified 30S subunits interconvert between an "active" and "inactive" conformation. The active conformation was described by crystallography in the early 2000s, but the structure of the inactive form at high resolution remains unsolved. Here we used cryo-electron microscopy to obtain the structure of the inactive conformation of the 30S subunit to 3.6 Å resolution and study its motions. In the inactive conformation, an alternative base-pairing of three nucleotides causes the region of helix 44, forming the decoding center to adopt an unlatched conformation and the 3' end of the 16S rRNA positions similarly to the mRNA during translation. Incubation of inactive 30S subunits at 42°C reverts these structural changes. The air-water interface to which ribosome subunits are exposed during sample preparation also peel off some ribosomal proteins. Extended exposures to low magnesium concentrations make the ribosomal particles more susceptible to the air-water interface causing the unfolding of large rRNA structural domains. Overall, this study provides new insights about the conformational space explored by the 30S ribosomal subunit when the ribosomal particles are free in solution.

摘要

直到最近冷冻电子显微镜技术的进步,才有可能描述不结晶的大分子的高分辨率结构。纯化的 30S 亚基在“活性”和“非活性”构象之间相互转换。活性构象在 21 世纪初的晶体学中就已经被描述过,但高分辨率下的非活性形式的结构仍然没有解决。在这里,我们使用冷冻电子显微镜获得了 30S 亚基非活性构象的结构,分辨率为 3.6Å,并研究了它的运动。在非活性构象中,三个核苷酸的替代碱基配对导致形成解码中心的 helix 44 区域采用未锁定的构象,并且 16S rRNA 的 3' 端在翻译过程中与 mRNA 的位置相似。在 42°C 下孵育非活性 30S 亚基会使这些结构变化逆转。核糖体亚基在样品制备过程中暴露在气-水界面也会使一些核糖体蛋白脱落。长时间暴露在低镁浓度下会使核糖体颗粒更容易受到气-水界面的影响,从而导致大的 rRNA 结构域展开。总的来说,这项研究提供了关于核糖体颗粒在溶液中自由时 30S 核糖体亚基所探索的构象空间的新见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bdac/7668263/8fa58594513b/2017f01.jpg

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