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Multidimensional Umbrella Sampling and Replica-Exchange Molecular Dynamics Simulations for Structure Prediction of Transmembrane Helix Dimers

机译:跨膜螺旋二聚体结构预测的多维伞采样和复制交换分子动力学模拟

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摘要

Structural information of a transmembrane (TM) helix dimer is useful in understanding molecular mechanisms of important biological phenomena such as signal transduction across the cell membrane. Here, we describe an umbrella sampling (US) scheme for predicting the structure of a TM helix dimer in implicit membrane using the interhelical crossing angle and the TM–TM relative rotation angles as the reaction coordinates. This scheme conducts an efficient conformational search on TM–TM contact interfaces, and its robustness is tested by predicting the structures of glycophorin A (GpA) and receptor tyrosine kinase EphA1 (EphA1) TM dimers. The nuclear magnetic resonance (NMR) structures of both proteins correspond to the global free-energy minimum states in their free-energy landscapes. In addition, using the landscape of GpA as a reference, we also examine the protocols of temperature replica-exchange molecular dynamics (REMD) simulations for structure prediction of TM helix dimers in implicit membrane. A wide temperature range in REMD simulations, for example, 250–1000 K, is required to efficiently obtain a free-energy landscape consistent with the US simulations. The interhelical crossing angle and the TM–TM relative rotation angles can be used as reaction coordinates in multidimensional US and be good measures for conformational sampling of REMD simulations.
机译:跨膜(TM)螺旋二聚体的结构信息可用于了解重要生物学现象(例如跨细胞膜的信号转导)的分子机制。在这里,我们描述了一种伞形取样(US)方案,该方案使用螺旋间交叉角和TM–TM相对旋转角作为反应坐标来预测隐式膜中TM螺旋二聚体的结构。该方案在TM-TM接触界面上进行了有效的构象搜索,并通过预测糖蛋白A(GpA)和受体酪氨酸激酶EphA1(EphA1)TM二聚体的结构来测试其健壮性。两种蛋白质的核磁共振(NMR)结构都对应于其自由能图中的全局自由能最小状态。此外,使用GpA的景观作为参考,我们还检查了温度复制-交换分子动力学(REMD)模拟的协议,以预测隐膜中TM螺旋二聚体的结构。 REMD模拟需要一个宽温度范围,例如250–1000 K,才能有效地获得与美国模拟一致的自由能态势。螺旋交叉角和TM-TM相对旋转角可用作多维US中的反应坐标,并且是REMD模拟的构象采样的良好措施。

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