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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Assessing the Accuracy of Two Enhanced Sampling Methods Using EGFR Kinase Transition Pathways: The Influence of Collective Variable Choice
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Assessing the Accuracy of Two Enhanced Sampling Methods Using EGFR Kinase Transition Pathways: The Influence of Collective Variable Choice

机译:使用EGFR激酶转移途径评估两种增强采样方法的准确性:集体变量选择的影响

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Structurally elucidating transition pathways between protein conformations gives deep mechanistic insight into protein behavior but is typically difficult. Unbiased molecular dynamics (MD) simulations provide one solution, but their computational expense is often prohibitive, motivating the development of enhanced sampling methods that accelerate conformational changes in a given direction, embodied in a collective variable. The accuracy of such methods is unclear for complex protein transitions, because obtaining unbiased MD data for comparison is difficult. Here, we use long-time scale, unbiased MD simulations of epidermal growth factor receptor kinase deactivation as a complex biological test case for two widely used methods—steered molecular dynamics (SMD) and the string method. We found that common collective variable choices, based on the root-mean-square deviation (RMSD) of the entire protein, prevented the methods from producing accurate paths, even in SMD simulations on the time scale of the unbiased transition. Using collective variables based on the RMSD of the region of the protein known to be important for the conformational change, however, enabled both methods to provide a more accurate description of the pathway in a fraction of the simulation time required to observe the unbiased transition.
机译:从结构上阐明蛋白质构象之间的过渡途径可深入了解蛋白质行为,但通常很困难。无偏分子动力学(MD)模拟提供了一种解决方案,但其计算费用通常令人望而却步,这促使人们开发了增强的采样方法,这些方法可以在给定方向上加速构象变化,并体现在一个集体变量中。对于复杂的蛋白质过渡,这种方法的准确性尚不清楚,因为很难获得无偏倚的MD数据进行比较。在这里,我们将长期广泛使用的表皮生长因子受体激酶失活的无偏MD模拟作为复杂的生物学测试案例,用于两种广泛使用的方法-转向分子动力学(SMD)和字符串方法。我们发现,基于整个蛋白质的均方根偏差(RMSD),常见的集体变量选择阻止了方法产生准确的路径,即使在无偏过渡时间尺度上的SMD模拟中也是如此。然而,使用基于已知对构象变化重要的蛋白质区域的RMSD的集体变量,可以使这两种方法都能在观察无偏跃迁所需的一小部分仿真时间内提供更准确的途径描述。

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