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The interface of protein structure protein biophysics and molecular evolution

机译:蛋白质结构蛋白质生物物理学和分子进化的界面

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摘要

Abstract The interface of protein structural biology, protein biophysics, molecular evolution, and molecular population genetics forms the foundations for a mechanistic understanding of many aspects of protein biochemistry. Current efforts in interdisciplinary protein modeling are in their infancy and the state-of-the art of such models is described. Beyond the relationship between amino acid substitution and static protein structure, protein function, and corresponding organismal fitness, other considerations are also discussed. More complex mutational processes such as insertion and deletion and domain rearrangements and even circular permutations should be evaluated. The role of intrinsically disordered proteins is still controversial, but may be increasingly important to consider. Protein geometry and protein dynamics as a deviation from static considerations of protein structure are also important. Protein expression level is known to be a major determinant of evolutionary rate and several considerations including selection at the mRNA level and the role of interaction specificity are discussed. Lastly, the relationship between modeling and needed high-throughput experimental data as well as experimental examination of protein evolution using ancestral sequence resurrection and in vitro biochemistry are presented, towards an aim of ultimately generating better models for biological inference and prediction.
机译:摘要蛋白质结构生物学,蛋白质生物物理学,分子进化和分子种群遗传学之间的接口为对蛋白质生物化学的许多方面进行机械理解提供了基础。跨学科蛋白质建模的当前努力尚处于起步阶段,并描述了此类模型的最新技术。除了氨基酸取代与静态蛋白质结构,蛋白质功能以及相应的机体适应性之间的关系外,还讨论了其他考虑因素。应该评估更复杂的突变过程,例如插入和缺失,结构域重排,甚至圆形排列。内在失调的蛋白质的作用仍存在争议,但考虑起来可能越来越重要。偏离蛋白质结构静态考虑因素的蛋白质几何形状和蛋白质动力学也很重要。已知蛋白表达水平是进化速率的主要决定因素,并且讨论了包括在mRNA水平上的选择和相互作用特异性的作用在内的几个考虑因素。最后,介绍了建模与所需的高通量实验数据之间的关系,以及使用祖先序列复活和体外生物化学进行蛋白质进化的实验检查,以期最终为生物学推断和预测生成更好的模型。

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