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Merging molecular mechanism and evolution: theory and computation at the interface of biophysics and evolutionary population genetics

机译:融合分子机制与进化:生物物理学与进化种群遗传学交界处的理论与计算

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摘要

The variation among sequences and structures in nature is both determined by physical laws and by evolutionary history. However, these two factors are traditionally investigated by disciplines with different emphasis and philosophy - molecular biophysics on one hand and evolutionary population genetics in another. Here, we review recent theoretical and computational approaches that address the crucial need to integrate these two disciplines. We first articulate the elements of these approaches. Then, we survey their contribution to our mechanistic understanding of molecular evolution, the polymorphisms in coding region, the distribution of fitness effects (DFE) of mutations, the observed folding stability of proteins in nature, and the distribution of protein folds in genomes.
机译:自然界中序列和结构之间的差异既取决于物理定律,也取决于进化史。但是,传统上,这两个因素是由具有不同重点和哲学的学科研究的,一方面是分子生物物理学,另一方面是进化种群遗传学。在这里,我们回顾了解决集成这两个学科的关键需求的最新理论和计算方法。我们首先阐明这些方法的要素。然后,我们调查了它们对分子进化的机械理解,编码区多态性,突变的适应性效应(DFE)分布,观察到的蛋白质在自然界中的折叠稳定性以及在基因组中蛋白质折叠分布的贡献。

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