首页> 外文期刊>Biopolymers: Original Research on Biomolecules and Biomolecular Assemblies >Exploring the influence of hyperthermophilic protein Ssh10b on the stability and conformation of RNA by molecular dynamics simulation
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Exploring the influence of hyperthermophilic protein Ssh10b on the stability and conformation of RNA by molecular dynamics simulation

机译:超嗜热蛋白SSH10B对分子动力学模拟对RNA稳定性和构象的影响

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摘要

The hyperthermophilic Ssh10b from Sulfolobus shibatae is a member of the Sac10b family, which binds RNA in vivo as a physiological substrate, and it has been postulated to play a key role in chromosomal organization in Archaea. Even though the crystal structure of Ssh10b-RNA was resolved successively by X-ray diffraction (Protein Data Bank [PDB] code: 3WBM), the detailed dynamic characteristics of Ssh10b-RNA are still unclear. In this study, molecular dynamics (MDs) simulations at 6 temperatures (300, 350, 375, 400, 450, and 500 K) and molecular mechanics Generalized-Born surface area (MM-GB/SA) free energy calculations were performed to investigate the mechanism of how Ssh10b protects and stabilizes RNA. The simulation results indicate that RNA is stabilized by Ssh10b when the temperature rises up to 375 K. RNA is found to undergo conformational transition between A-RNA and A0-RNA when Ssh10b binds to RNA at 3 different temperatures (300, 350, and 375 K). Salt bridges, hydrogen bonds and hydrophobic interactions are observed, and some residues have significant impact on the structural stability of the complex. This study increases our understanding of the dynamics and interaction mechanism of hyperthermophilic proteins and RNA at the atomic level, and offers a model for studying the structural biology of hyperthermophilic proteins and RNA.
机译:来自Sulfolobus Shibatae的高热SSH10B是SAC10B系列的成员,其将RNA与生理基质结合,并且已经假定在古代核心组织中发挥关键作用。即使通过X射线衍射连续地分辨SSH10B-RNA的晶体结构(蛋白质数据库[PDB]代码:3WBM),SSH10B-RNA的详细动态特性也尚不清楚。在该研究中,进行6温度(300,350,375,400,450和500k)和分子机械通用出生的表面积(MM-GB / SA)自由能量计算的分子动力学(MDS)模拟进行调查SSH10B如何保护和稳定RNA的机制。模拟结果表明,当温度上升至375k时,通过SSH10B稳定RNA。当SSH10B在3种不同温度(300,350和375的RNA中时,发现RNA在A-RNA和A0-RNA之间进行构象转变k)。观察到盐桥,氢键和疏水相互作用,一些残留物对复合物的结构稳定性产生显着影响。本研究提高了我们对原子水平的高热蛋白和RNA的动态和相互作用机制的理解,并提供了一种研究超嗜热蛋白和RNA结构生物学的模型。

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