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Active Site-Induced Evolutionary Constraints Follow Fold Polarity Principles in Soluble Globular Enzymes

机译:活性位点诱导的进化约束遵循可溶性球状酶的折叠极性原理

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摘要

A recent analysis of evolutionary rates in >500 globular soluble enzymes revealed pervasive conservation gradients toward catalytic residues. By looking at amino acid preference profiles rather than evolutionary rates in the same data set, we quantified the effects of active sites on site-specific constraints for physicochemical traits. We found that conservation gradients respond to constraints for polarity, hydrophobicity, flexibility, rigidity and structure in ways consistent with fold polarity principles; while sites far from active sites seem to experience no physicochemical constraint, rather being highly variable and favoring amino acids of low metabolic cost. Globally, our results highlight that amino acid variation contains finer information about protein structure than usually regarded in evolutionary models, and that this information is retrievable automatically with simple fits. We propose that analyses of the kind presented here incorporated into models of protein evolution should allow for better description of the physical chemistry that underlies molecular evolution.
机译:最近对>500球状可溶性酶的进化速率的分析揭示了催化残基普遍存在的保守梯度。通过查看同一数据集中的氨基酸偏好谱而不是进化速率,我们量化了活性位点对理化性状位点特异性约束的影响。我们发现守恒梯度以符合褶皱极性原理的方式响应极性、疏水性、柔韧性、刚性和结构的约束;而远离活性位点的位点似乎没有物理化学限制,而是高度可变,有利于代谢成本低的氨基酸。在全球范围内,我们的研究结果强调,氨基酸变异包含的蛋白质结构信息比进化模型中通常认为的更精细,并且这些信息可以通过简单的拟合自动检索。我们建议,将这里介绍的那种分析纳入蛋白质进化模型应该可以更好地描述分子进化的基础物理化学。

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