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动态核糖体:中子散射表征的热分子动力学。

The fluctuating ribosome: thermal molecular dynamics characterized by neutron scattering.

机构信息

Institut Laue Langevin, F-38042 Grenoble, France.

Institut de Biologie Structurale (IBS), Univ. Grenoble Alpes, CEA, CNRS, 38044 Grenoble, France.

出版信息

Sci Rep. 2016 Nov 16;6:37138. doi: 10.1038/srep37138.

Abstract

Conformational changes associated with ribosome function have been identified by X-ray crystallography and cryo-electron microscopy. These methods, however, inform poorly on timescales. Neutron scattering is well adapted for direct measurements of thermal molecular dynamics, the 'lubricant' for the conformational fluctuations required for biological activity. The method was applied to compare water dynamics and conformational fluctuations in the 30 S and 50 S ribosomal subunits from Haloarcula marismortui, under high salt, stable conditions. Similar free and hydration water diffusion parameters are found for both subunits. With respect to the 50 S subunit, the 30 S is characterized by a softer force constant and larger mean square displacements (MSD), which would facilitate conformational adjustments required for messenger and transfer RNA binding. It has been shown previously that systems from mesophiles and extremophiles are adapted to have similar MSD under their respective physiological conditions. This suggests that the results presented are not specific to halophiles in high salt but a general property of ribosome dynamics under corresponding, active conditions. The current study opens new perspectives for neutron scattering characterization of component functional molecular dynamics within the ribosome.

摘要

通过 X 射线晶体学和冷冻电子显微镜已经确定了与核糖体功能相关的构象变化。然而,这些方法在时间尺度上的信息很差。中子散射非常适合直接测量热分子动力学,这是生物活性所需构象波动的“润滑剂”。该方法用于比较高盐稳定条件下来自盐沼盐杆菌的 30S 和 50S 核糖体亚基中的水动力学和构象波动。发现两个亚基的自由和水合扩散参数相似。与 50S 亚基相比,30S 的力常数更软,均方根位移(MSD)更大,这将有助于信使 RNA 和转移 RNA 结合所需的构象调整。先前已经表明,来自嗜温和极端微生物的系统在各自的生理条件下适应具有相似的 MSD。这表明,所提出的结果不仅限于高盐中的嗜盐菌,而是核糖体在相应活性条件下的动力学的一般特性。当前的研究为核糖体中组件功能分子动力学的中子散射特性表征开辟了新的视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/082b/5111069/d134e3430401/srep37138-f1.jpg

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