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A coupling of homology modeling with multiple molecular dynamics simulation for identifying representative conformation of GPCR structures: a case study on human bombesin receptor subtype-3

机译:具有多种分子动力学模拟的同源性建模识别GPCR结构代表性构象的同源模拟 - 一种人茂蛋白受体亚型-3的案例研究

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In this study, a computational pipeline was therefore devised to overcome homology modeling (HM) bottlenecks. The coupling of HM with molecular dynamics (MD) simulation is useful in that it tackles the sampling deficiency of dynamics simulations by providing good-quality initial guesses for the native structure. Indeed, HM also relaxes the severe requirement of force fields to explore the huge conformational space of protein structures. In this study, the interaction between the human bombesin receptor subtype-3 and MK-5046 was investigated integrating HM, molecular docking, and MD simulations. To improve conformational sampling in typical MD simulations of GPCRs, as in other biomolecules, multiple trajectories with different initial conditions can be employed rather than a single long trajectory. Multiple MD simulations of human bombesin receptor subtype-3 with different initial atomic velocities are applied to sample conformations in the vicinity of the structure generated by HM. The backbone atom conformational space distribution of replicates is analyzed employing principal components analysis. As a result, the averages of structural and dynamic properties over the twenty-one trajectories differ significantly from those obtained from individual trajectories.
机译:在这项研究中,设计了一种计算管道,以克服同源性建模(HM)瓶颈。 HM与分子动力学(MD)模拟的耦合是有用的,因为它通过为原生结构提供质量良好的初始猜测来解决动态模拟的采样缺陷。实际上,HM还放松了力量田地的严重要求,探索蛋白质结构的巨大构象空间。在该研究中,研究了人茂蛋白受体亚型-3和MK-5046之间的相互作用,其研究了整合HM,分子对接和MD模拟。为了改善GPCR的典型MD模拟中的构象抽样,如在其他生物分子中,可以采用具有不同初始条件的多个轨迹而不是单个长轨迹。具有不同初始原子速度的人茂规受体亚型-3的多MD模拟应用于HM产生的结构附近的样品构象。分析采用主成分分析的复制的骨干原子构象空间分布。结果,二十一条轨迹上的结构和动态特性的平均值显着不同于各个轨迹所获得的轨迹。

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