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Protein Engineering for Nicotinamide Coenzyme Specificity in Oxidoreductases: Attempts and Challenges

机译:烟酰胺还原酶中烟酰胺辅酶特异性的蛋白质工程:尝试和挑战

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摘要

Oxidoreductases are ubiquitous enzymes that catalyze an extensive range of chemical reactions with great specificity, efficiency, and selectivity. Most oxidoreductases are nicotinamide cofactor-dependent enzymes with a strong preference for NADP or NAD. Because these coenzymes differ in stability, bioavailability and costs, the enzyme preference for a specific coenzyme is an important issue for practical applications. Different approaches for the manipulation of coenzyme specificity have been reported, with different degrees of success. Here we present various attempts for the switching of nicotinamide coenzyme preference in oxidoreductases by protein engineering. This review covers 103 enzyme engineering studies from 82 articles and evaluates the accomplishments in terms of coenzyme specificity and catalytic efficiency compared to wild type enzymes of different classes. We analyzed different protein engineering strategies and related them with the degree of success in inverting the cofactor specificity. In general, catalytic activity is compromised when coenzyme specificity is reversed, however when switching from NAD to NADP, better results are obtained. In most of the cases, rational strategies were used, predominantly with loop exchange generating the best results. In general, the tendency of removing acidic residues and incorporating basic residues is the strategy of choice when trying to change specificity from NAD to NADP, and vice versa. Computational strategies and algorithms are also covered as helpful tools to guide protein engineering strategies. This mini review aims to give a general introduction to the topic, giving an overview of tools and information to work in protein engineering for the reversal of coenzyme specificity.
机译:氧化还原酶是普遍存在的酶,其以极大的特异性,效率和选择性催化广泛的化学反应。大多数氧化还原酶是烟酰胺辅因子依赖性酶,对NADP或NAD有强烈的偏好。因为这些辅酶在稳定性,生物利用度和成本方面不同,所以对于特定辅酶的酶偏爱是实际应用中的重要问题。已经报道了用于操纵辅酶特异性的不同方法,具有不同程度的成功。在这里,我们提出了通过蛋白质工程在氧化还原酶中切换烟酰胺辅酶偏好的各种尝试。这篇综述涵盖了来自82篇文章的103种酶工程研究,并评估了与不同类别的野生型酶相比在辅酶特异性和催化效率方面的成就。我们分析了不同的蛋白质工程策略,并将它们与成功转化辅因子特异性的程度相关联。通常,当辅酶特异性反转时,催化活性会受到损害,但是,当从NAD切换到NADP时,可以获得更好的结果。在大多数情况下,使用合理的策略,主要是通过循环交换来产生最佳结果。通常,当尝试将特异性从NAD改变为NADP时,倾向于选择去除酸性残基并掺入碱性残基的趋势,反之亦然。计算策略和算法也作为指导蛋白质工程策略的有用工具而涵盖。这篇简短的综述旨在对该主题进行一般性介绍,概述蛋白质工程中逆转辅酶特异性的工具和信息。

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