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Towards theoretical analysis of long-range proton transfer kinetics in biomolecular pumps

机译:走向生物分子泵中质子转移动力学的理论分析

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摘要

Motivated by the long-term goal of theoretically analyzing long-range proton transfer (PT) kinetics in biomolecular pumps, a number of technical developments were made in the framework of QM/MM simulations. A set of collective reaction co-ordinates is proposed for characterizing the progress of long-range proton transfers; unlike previous suggestions, the new coordinates can describe PT along highly non-linear three-dimensional pathways. Calculations using a realistic model of carbonic anhydrase demonstrated that adiabatic mapping using these collective coordinates gives reliable energetics and critical geometrical parameters as compared to minimum energy path calculations, which suggests that the new coordinates can be effectively used as reaction coordinate in potential of mean force calculations for long-range PT in complex systems. In addition, the generalized solvent boundary potential was implemented in the QM/MM framework for rectangular geometries, which is useful for studying reactions in membrane systems. The resulting protocol was found to produce water structure in the interior of aquaporin consistent with previous studies including much larger number of explicit solvent and lipid molecules. The effect of electrostatics for PT through membrane protein was also illustrated with a simple model channel embedded in different dielectric continuum environments. The encouraging results observed so far suggest that robust theoretical analysis of long-range PT kinetics in biomolecular pumps can soon be realized in a QM/MM framework.
机译:受理论上分析生物分子泵中长距离质子转移(PT)动力学的长期目标的推动,在QM / MM模拟的框架内进行了许多技术开发。提出了一组集体反应坐标,以表征远距离质子转移的进展;与以前的建议不同,新坐标可以沿着高度非线性的三维路径描述PT。使用现实的碳酸酐酶模型进行的计算表明,与最小能量路径计算相比,使用这些集合坐标的绝热映射可提供可靠的能量学和临界几何参数,这表明新坐标可有效用作平均力计算潜力中的反应坐标。适用于复杂系统中的远程PT。此外,在QM / MM框架中针对矩形几何体实现了广义的溶剂边界电势,这对于研究膜系统中的反应非常有用。发现所得方案在水通道蛋白内部产生水结构,这与先前的研究一致,包括大量的显式溶剂和脂质分子。还通过嵌入不同介电连续介质环境中的简单模型通道说明了静电通过膜蛋白对PT的影响。迄今为止观察到的令人鼓舞的结果表明,在QM / MM框架中可以很快实现对生物分子泵中长距离PT动力学的可靠理论分析。

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