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Multiple active zones in hybrid QM/MM molecular dynamics simulations for large biomolecular systems

机译:大型生物分子系统的混合QM / MM分子动力学模拟中的多个活动区域

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摘要

A new QM/MM molecular dynamics approach that can deal with the dynamics of large real systems involving several simultaneous active zones is presented. Multiple, unconnected but interacting quantum regions are treated independently in an ordinary QM/MM approach but in a manner which converges to a unique simulation. The multiple active zones in the hybrid QM/MM molecular dynamics methodology (maz-QM/MM MD) involve molecular dynamics that is driving the whole simulation with several parallel executions of energy gradients within the QM/MM approach that merge into each MD step. The Ewald-summation method is used to incorporate long-range electrostatic interactions among the active zones in conjunction with periodic boundary conditions. To illustrate and ascertain capabilities and limitations, we present several benchmark calculations using this approach. Our results show that the maz-QM/MM MD method is able to provide simultaneous treatment of several active zones of very large proteins such as the Cu-4His-Delta C* cage, a self-assembly of a 24-mer cage-like protein ferritin.
机译:提出了一种新的QM / MM分子动力学方法,该方法可以处理涉及多个同时活动区域的大型实际系统的动力学。多个未连接但相互作用的量子区域在常规QM / MM方法中被独立处理,但是会收敛到唯一的模拟。混合QM / MM分子动力学方法(maz-QM / MM MD)中的多个活动区域涉及分子动力学,该动力学通过在QM / MM方法内多次并行执行能量梯度并合并到每个MD步骤来驱动整个模拟。 Ewald求和方法用于结合周期性边界条件,在活动区域​​之间合并远程静电相互作用。为了说明和确定功能和局限性,我们使用此方法介绍了几种基准计算。我们的结果表明,maz-QM / MM MD方法能够同时处理非常大的蛋白质的多个活性区域,例如Cu-4His-Delta C *笼,这是一种24聚体笼状的自组装体蛋白铁蛋白。

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