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Understanding protein evolution: From protein physics to Darwinian selection

机译:了解蛋白质进化:从蛋白质物理学到达尔文选择

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Efforts in whole-genome sequencing and structural proteomics start to provide a global-view of the protein universe, the set of existing protein structures and sequences. However, approaches based on the selection of individual sequences have not been entirely successful at the quantitative description of the distribution of structures and sequences in the protein universe because evolutionary pressure acts on the entire organism, rather than on a particular molecule. In parallel to this line of study, studies in population genetics and phenomenological molecular evolution established a mathematical framework to describe the changes in genome sequences in populations of organisms over time. Here, we review both microscopic (physics-based) and macroscopic (organism-level) models of protein-sequence evolution and demonstrate that bridging the two scales provides the most complete description of the protein universe starting from clearly defined, testable, and physiologically relevant assumptions.
机译:全基因组测序和结构蛋白质组学的努力开始为蛋白质世界,现有蛋白质结构和序列集提供全局视图。但是,由于进化压力作用于整个生物体而不是特定分子,因此基于单个序列选择的方法在蛋白质宇宙中结构和序列分布的定量描述上还没有完全成功。与该研究平行的是,对种群遗传学和现象学分子进化的研究建立了一个数学框架,用以描述生物种群中基因组序列随时间的变化。在这里,我们回顾了蛋白质序列进化的微观(基于物理学的)和宏观(生物水平的)模型,并证明从明确定义,可测试和生理相关的角度出发,将两个量表结合起来可以最全面地描述蛋白质宇宙假设。

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