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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Overcoming the Rare Event Sampling Problem in Biological Systems with Infinite Swapping
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Overcoming the Rare Event Sampling Problem in Biological Systems with Infinite Swapping

机译:无限交换克服生物系统中的稀有事件采样问题

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Infinite swapping (INS) is a recently developed method to address the rare event sampling problem. For INS, an expanded computational ensemble composed of a number of replicas at different temperatures is used, similar to the widely used parallel tempering (PT) method. While the basic concept of PT is to sample various replicas of the system at different temperatures and exchange information between the replicas occasionally, INS uses the symmetrized distribution of configurations in temperature space, which corresponds to the infinite swapping limit of PT. The effect of this symmetrization and the enhanced information exchange between replicas is evaluated for three different biological systems representing different sampling problems in biology: (1) blocked alanine dipeptide, which is a small system and therefore optimal to evaluate sampling efficiency quantitatively, (2) Villin headpiece, which is used as a test case for the protein folding process, and (3) neuroglobin, which is used to evaluate the effects of enhanced information exchange between replicas for sampling the substate space of a folded protein. For these three test systems, PINS is compared to PT, and it is found that in all cases the sampling with PINS is substantially more efficient.
机译:无限交换(INS)是最近开发的一种解决稀有事件采样问题的方法。对于INS,类似于广泛使用的平行回火(PT)方法,使用了由在不同温度下的多个副本组成的扩展计算集合。 PT的基本概念是在不同温度下对系统的各个副本进行采样并偶尔在副本之间交换信息,而INS使用温度空间中配置的对称分布,这对应于PT的无限交换限制。对于代表生物学中不同采样问题的三个不同生物系统,评估了这种对称化和增强副本之间信息交换的效果:(1)封闭的丙氨酸二肽,这是一个很小的系统,因此是定量评估采样效率的最佳选择;(2) Villin头饰(用作蛋白质折叠过程的测试用例)和(3)Neuroglobin(神经珠蛋白),用于评估复制品之间增强信息交换的效果,以采样折叠蛋白质的子状态空间。对于这三个测试系统,将PINS与PT进行比较,发现在所有情况下,使用PINS进行采样的效率均显着提高。

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