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QM/MM Methods for Biomolecular Systems

机译:生物分子系统的QM / MM方法

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摘要

Combined quantum-mechanics/molecular-mechanics(QM/MM)approaches have become the method of choice for modeling reactions in biomolecular systems.Quantum-mechanical(QM)methods are required for describing chemical reactions and other electronic processes,such as charge transfer or electronic excitation.However,QM methods are restricted to systems of up to a few hundred atoms.However,the size and conformational complexity of biopolymers calls for methods capable of treating up to several 100000 atoms and allowing for simulations over time scales of tens of nanoseconds.This is achieved by highly efficient,force-field-based molecular mechanics(MM)methods.Thus to model large biomolecules the logical approach is to combine the two techniques and to use a QM method for the chemically active region(e.g.,substrates and co-factors in an enzymatic reaction)and an MM treatment for the surroundings(e.g.,protein and solvent).The resulting schemes are commonly referred to as combined or hybrid QM/MM methods.They enable the modeling of reactive biomolecular systems at a reasonable computational effort while providing the necessary accuracy.
机译:量子力学/分子力学(QM / MM)组合方法已成为对生物分子系统中的反应进行建模的首选方法。量子力学(QM)方法用于描述化学反应和其他电子过程,例如电荷转移或电子激发。然而,QM方法仅限于最多数百个原子的系统。然而,生物聚合物的大小和构象复杂性要求能够处理多达100000个原子的方法,并允许在数十纳秒的时间范围内进行模拟这是通过高效的基于力场的分子力学(MM)方法实现的。因此,对大型生物分子进行建模的逻辑方法是将两种技术结合起来,并对化学活性区域(例如,底物和酶反应中的辅助因子)和环境(例如蛋白质和溶剂)的MM处理。所得方案通常称为组合QM / MM me他们能够以合理的计算工作量对反应性生物分子系统进行建模,同时提供必要的准确性。

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