无序肽中脯氨酸顺式和反式构象的综合特征。

IF 3.2 3区 生物学 Q2 BIOPHYSICS
Alice J Pettitt, Vaibhav Kumar Shukla, Angelo Miguel Figueiredo, Lydia S Newton, Stephen McCarthy, Alethea B Tabor, Gabriella T Heller, Christian D Lorenz, D Flemming Hansen
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引用次数: 0

摘要

本征无序蛋白(IDP)通常含有脯氨酸残基,这些残基会发生顺式/反式异构化。虽然分子动力学(MD)模拟具有全面描述脯氨酸顺式和反式亚构型的潜力,但它们受到异构化缓慢的时间尺度和力场不准确性的限制。核磁共振 (NMR) 光谱可以报告顺式脯氨酸态和反式脯氨酸态的集合平均观测值,但这些构象的全面原子学表征具有挑战性。鉴于脯氨酸顺式/反式异构化对无序蛋白质构象取样的重要影响,我们采用了全原子 MD 模拟与增强取样(元动力学)、核磁共振和小角 X 射线散射(SAXS)相结合的方法来描述 SARS-CoV-2 ORF6 C 端区域(ORF6CTR)的两个子构象,它们分别对应于脯氨酸-57(P57)顺式和反式状态。我们在三种不同的力场中进行了 MD 模拟:AMBER03ws、AMBER99SB-disp 和 CHARMM36m,它们都针对无序蛋白质进行了优化。每次模拟运行的累计时间为 180-220 μs,直到达到收敛为止(通过阻滞分析进行评估)。AMBER03ws 中元动态模拟预测的顺式-P57 群体与核磁共振实验数据获得的群体之间存在良好的一致性。此外,我们还观察到 AMBER03ws 中元动态模拟预测的回转半径与 SAXS 测得的回转半径非常一致。我们的研究结果表明,ORF6CTR 的顺式-P57 和反式-P57 构象都极具动态性,结合多尺度计算和实验的跨学科方法为探索高动态状态提供了途径,而这两种方法都无法单独可靠地描述这些状态。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An integrative characterization of proline cis and trans conformers in a disordered peptide.

Intrinsically disordered proteins (IDPs) often contain proline residues that undergo cis/trans isomerization. While molecular dynamics (MD) simulations have the potential to fully characterize the proline cis and trans subensembles, they are limited by the slow timescales of isomerization and force field inaccuracies. NMR spectroscopy can report on ensemble-averaged observables for both the cis-proline and trans-proline states, but a full atomistic characterization of these conformers is challenging. Given the importance of proline cis/trans isomerization for influencing the conformational sampling of disordered proteins, we employed a combination of all-atom MD simulations with enhanced sampling (metadynamics), NMR, and small-angle x-ray scattering (SAXS) to characterize the two subensembles of the ORF6 C-terminal region (ORF6CTR) from SARS-CoV-2 corresponding to the proline-57 (P57) cis and trans states. We performed MD simulations in three distinct force fields: AMBER03ws, AMBER99SB-disp, and CHARMM36m, which are all optimized for disordered proteins. Each simulation was run for an accumulated time of 180-220 μs until convergence was reached, as assessed by blocking analysis. A good agreement between the cis-P57 populations predicted from metadynamic simulations in AMBER03ws was observed with populations obtained from experimental NMR data. Moreover, we observed good agreement between the radius of gyration predicted from the metadynamic simulations in AMBER03ws and that measured using SAXS. Our findings suggest that both the cis-P57 and trans-P57 conformations of ORF6CTR are extremely dynamic and that interdisciplinary approaches combining both multiscale computations and experiments offer avenues to explore highly dynamic states that cannot be reliably characterized by either approach in isolation.

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来源期刊
Biophysical journal
Biophysical journal 生物-生物物理
CiteScore
6.10
自引率
5.90%
发文量
3090
审稿时长
2 months
期刊介绍: BJ publishes original articles, letters, and perspectives on important problems in modern biophysics. The papers should be written so as to be of interest to a broad community of biophysicists. BJ welcomes experimental studies that employ quantitative physical approaches for the study of biological systems, including or spanning scales from molecule to whole organism. Experimental studies of a purely descriptive or phenomenological nature, with no theoretical or mechanistic underpinning, are not appropriate for publication in BJ. Theoretical studies should offer new insights into the understanding ofexperimental results or suggest new experimentally testable hypotheses. Articles reporting significant methodological or technological advances, which have potential to open new areas of biophysical investigation, are also suitable for publication in BJ. Papers describing improvements in accuracy or speed of existing methods or extra detail within methods described previously are not suitable for BJ.
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