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酶进化的鸟瞰:化学、物理化学和生理学的考虑。

A Bird's-Eye View of Enzyme Evolution: Chemical, Physicochemical, and Physiological Considerations.

出版信息

Chem Rev. 2018 Sep 26;118(18):8786-8797. doi: 10.1021/acs.chemrev.8b00039. Epub 2018 Aug 22.

Abstract

Enzymes catalyze a vast range of reactions. Their catalytic performances, mechanisms, global folds, and active-site architectures are also highly diverse, suggesting that enzymes are shaped by an entire range of physiological demands and evolutionary constraints, as well as by chemical and physicochemical constraints. We have attempted to identify signatures of these shaping demands and constraints. To this end, we describe a bird's-eye view of the enzyme space from two angles: evolution and chemistry. We examine various chemical reaction parameters that may have shaped the catalytic performances and active-site architectures of enzymes. We test and weigh these considerations against physiological and evolutionary factors. Although the catalytic properties of the "average" enzyme correlate with cellular metabolic demands and enzyme expression levels, at the level of individual enzymes, a multitude of physiological demands and constraints, combined with the coincidental nature of evolutionary processes, result in a complex picture. Indeed, neither reaction type (a chemical constraint) nor evolutionary origin alone can explain enzyme rates. Nevertheless, chemical constraints are apparent in the convergence of active-site architectures in independently evolved enzymes, although significant variations within an architecture are common.

摘要

酶催化了广泛的反应。它们的催化性能、机制、整体折叠和活性位点结构也高度多样化,这表明酶是由一系列生理需求和进化限制以及化学和物理化学限制共同塑造的。我们试图确定这些塑造需求和限制的特征。为此,我们从进化和化学两个角度来描述酶空间的全貌。我们研究了可能影响酶的催化性能和活性位点结构的各种化学反应参数。我们将这些考虑因素与生理和进化因素进行了测试和权衡。尽管“平均”酶的催化特性与细胞代谢需求和酶表达水平相关,但就单个酶而言,多种生理需求和限制,再加上进化过程的偶发性,使得情况变得复杂。事实上,反应类型(化学限制)和进化起源都不能单独解释酶的反应速率。然而,在独立进化的酶中,活性位点结构的趋同明显受到化学限制的影响,尽管在同一结构内存在显著的变异。

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