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复杂生物分子系统的模拟:核糖体挑战。

Simulation of Complex Biomolecular Systems: The Ribosome Challenge.

机构信息

Theoretical and Computational Biophysics, Max Planck Institute for Multidisciplinary Sciences, Göttingen, Germany; email:

Department of Physical Chemistry, University of Chemistry and Technology, Prague, Czech Republic.

出版信息

Annu Rev Biophys. 2023 May 9;52:361-390. doi: 10.1146/annurev-biophys-111622-091147. Epub 2023 Jan 31.

Abstract

Large biomolecular systems are at the heart of many essential cellular processes. The dynamics and energetics of an increasing number of these systems are being studied by computer simulations. Pushing the limits of length- and timescales that can be accessed by current hard- and software has expanded the ability to describe biomolecules at different levels of detail. We focus in this review on the ribosome, which exemplifies the close interplay between experiment and various simulation approaches, as a particularly challenging and prototypic nanomachine that is pivotal to cellular biology due to its central role in translation. We sketch widely used simulation methods and demonstrate how the combination of simulations and experiments advances our understanding of the function of the translation apparatus based on fundamental physics.

摘要

大型生物分子系统是许多基本细胞过程的核心。越来越多的这些系统的动力学和能量学正在通过计算机模拟进行研究。通过推动当前硬件和软件能够访问的长度和时间尺度的极限,扩大了在不同细节水平描述生物分子的能力。我们在这篇综述中关注核糖体,它是实验和各种模拟方法紧密相互作用的典范,作为一种特别具有挑战性和典型的纳米机器,由于其在翻译中的核心作用,对细胞生物学至关重要。我们概述了广泛使用的模拟方法,并展示了模拟和实验的结合如何基于基础物理学来推进我们对翻译装置功能的理解。

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