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Directed evolution of cytochrome P450 enzymes for biocatalysis: exploiting the catalytic versatility of enzymes with relaxed substrate specificity

机译:指导细胞色素P450酶在生物催化中的进化:利用酶的催化多功能性和轻松的底物特异性

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Cytochrome P450 enzymes are renowned for their ability to insert oxygen into an enormous variety of compounds with a high degree of chemo-and regio-selectivity under mild conditions. This property has been exploited in Nature for an enormous variety of physiological functions, and representatives of this ancient enzyme family have been identified in all kingdoms of life. The catalytic versatility of P450s makes them well suited for repurposing for the synthesis of fine chemicals such as drugs. Although these enzymes have not evolved in Nature to perform the reactions required for modern chemical industries, many P450s show relaxed substrate specificity and exhibit some degree of activity towards non-natural substrates of relevance to applications such as drug development. Directed evolution and other protein engineering methods can be used to improve upon this low level of activity and convert these promiscuous generalist enzymes into specialists capable of mediating reactions of interest with exquisite regio- and stereo-selectivity. Although there are some notable successes in exploiting P450s from natural sources in metabolic engineering, and P450s have been proven repeatedly to be excellent material for engineering, there are few examples to date of practical application of engineered P450s. The purpose of the present review is to illustrate the progress that has been made in altering properties of P450s such as substrate range, cofactor preference and stability, and outline some of the remaining challenges that must be overcome for industrial application of these powerful biocatalysts.
机译:细胞色素P450酶以在温和条件下将氧气插入多种化合物中的能力而闻名,这些化合物具有高度的化学和区域选择性。在大自然中已利用此特性来实现多种生理功能,并且该古老酶家族的代表已在所有生命王国中被发现。 P450的催化多功能性使其非常适合用于合成精细化学品(例如药物)。尽管这些酶在自然界中尚未进化完成现代化学工业所需的反应,但许多P450表现出松弛的底物特异性,并且对与药物开发等应用相关的非天然底物表现出一定程度的活性。定向进化和其他蛋白质工程方法可用于改善这种低水平的活性,并将这些混杂的通才酶转变为能够介导感兴趣的反应并具有出色的区域和立体选择性的专家。尽管在代谢工程中利用天然来源的P450取得了一些显着的成功,并且P450被反复证明是工程学的优良材料,但是迄今为止,工程化P450的实际应用的例子很少。本综述的目的是说明在改变P450的特性(例如底物范围,辅因子偏爱性和稳定性)方面所取得的进展,并概述了这些强大的生物催化剂在工业应用中必须克服的一些剩余挑战。

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