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A mechanistic stress model of protein evolution accounts for site-specific evolutionary rates and their relationship with packing density and flexibility

机译:蛋白质进化的机械应力模型解释了特定位点的进化速率及其与堆积密度和柔韧性的关系

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摘要

BackgroundProtein sites evolve at different rates due to functional and biophysical constraints. It is usually considered that the main structural determinant of a site’s rate of evolution is its Relative Solvent Accessibility (RSA). However, a recent comparative study has shown that the main structural determinant is the site’s Local Packing Density (LPD). LPD is related with dynamical flexibility, which has also been shown to correlate with sequence variability. Our purpose is to investigate the mechanism that connects a site’s LPD with its rate of evolution.
机译:背景由于功能和生物物理的限制,蛋白质位点以不同的速率进化。通常认为,站点演化速度的主要结构决定因素是其相对溶剂可及性(RSA)。但是,最近的一项比较研究表明,主要的结构决定因素是该站点的本地包装密度(LPD)。 LPD与动态灵活性有关,动态灵活性也已显示与序列变异性相关。我们的目的是研究将网站的LPD及其发展速度联系起来的机制。

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