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从 MD 模拟看 GB3 环区的动力学:有多少是真实的?

Dynamics of the GB3 loop regions from MD simulation: how much of it is real?

机构信息

Lab of Biofuels, Qingdao Institute of Bioenergy and Bioprocess Technology, Chinese Academy of Sciences, Qingdao, 266061, China.

出版信息

J Phys Chem B. 2011 Apr 7;115(13):3488-95. doi: 10.1021/jp108217z. Epub 2011 Mar 10.

Abstract

A total of 1.1 μs of molecular dynamics (MD) simulations were performed to study the structure and dynamics of protein GB3. The simulation motional amplitude of the loop regions is generally overestimated in comparison with the experimental backbone N-H order parameters S(2). Two-state behavior is observed for several residues in these regions, with the minor state population in the range of 3-13%. Further inspection suggests that the (φ, ψ) dihedral angles of the minor states deviate from the GB3 experimental values, implying the existence of nonnative states. After fitting the MD trajectories of these residues to the NMR RDCs, the minor state populations are significantly reduced by at least 80%, suggesting that MD simulations are strongly biased toward the minor states, thus overestimating the dynamics of the loop regions. The optimized trajectories produce intra, sequential H(N)-H(α) RDCs and intra (3)J(HNHα) that are not included in the trajectories fitting for these residues that are closer to the experimental data. Unlike GB3, 0.55 μs MD simulations of protein ubiquitin do not show distinctive minor states, and the derived NMR order parameters are better converged. Our findings indicate that the artifacts of the simulations depend on the specific system studied and that one should be cautious interpreting the enhanced dihedral dynamics from long MD simulations.

摘要

共进行了 1.1 μs 的分子动力学(MD)模拟,以研究蛋白 GB3 的结构和动力学。与实验的主链 N-H 序参数 S(2)相比,这些环区的模拟运动幅度普遍被高估。在这些区域的几个残基中观察到两态行为,次要状态的种群在 3-13%的范围内。进一步的检查表明,次要状态的(φ,ψ)二面角偏离了 GB3 的实验值,表明存在非天然状态。在将这些残基的 MD 轨迹拟合到 NMR RDCs 后,次要状态的种群至少减少了 80%,表明 MD 模拟强烈偏向于次要状态,从而高估了环区的动力学。优化后的轨迹产生了主链内、序列内 H(N)-H(α) RDCs 和主链内 (3)J(HNHα),这些残基的轨迹拟合不包括这些残基,与实验数据更接近。与 GB3 不同,蛋白泛素的 0.55 μs MD 模拟没有显示出明显的次要状态,并且推导的 NMR 序参数更好地收敛。我们的发现表明,模拟的伪影取决于所研究的特定系统,并且应该谨慎解释来自长 MD 模拟的增强的二面角动力学。

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