蛋白质折叠
冷冲击域
枯草芽孢杆菌
折叠(DSP实现)
突变
蒙特卡罗方法
化学
理论(学习稳定性)
热稳定性
化学物理
物理
生物物理学
生物
计算机科学
生物化学
遗传学
数学
细菌
工程类
有机化学
机器学习
电气工程
统计
基因
核糖核酸
作者
Vinícius M. de Oliveira,Daniel L. Z. Caetano,Fernando Bruno da Silva,Paulo Ricardo Mouro,Antonio B. Oliveira,Sidney J. de Carvalho,Vitor B. P. Leite
标识
DOI:10.1021/acs.jctc.9b00894
摘要
The folding and stability of proteins is a fundamental problem in several research fields. In the present paper, we have used different computational approaches to study the effects caused by changes in pH and for charged mutations in cold shock proteins from Bacillus subtilis (Bs-CspB). First, we have investigated the contribution of each ionizable residue for these proteins to their thermal stability using the TKSA-MC, a Web server for rational mutation via optimizing the protein charge interactions. Based on these results, we have proposed a new mutation in an already optimized Bs-CspB variant. We have evaluated the effects of this new mutation in the folding energy landscape using structure-based models in Monte Carlo simulation at constant pH, SBM-CpHMC. Our results using this approach have indicated that the charge rearrangements already in the unfolded state are critical to the thermal stability of Bs-CspB. Furthermore, the conjunction of these simplified methods was able not only to predict stabilizing mutations in different pHs but also to provide essential information about their effects in each stage of protein folding.
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