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Simulating Substrate Recognition and Oxidation in Laccases: From Description to Designa

机译:模拟衬底识别和氧化术中的氧化:从描述到Designa

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To meet the very specific requirements demanded by industry, proteins must be appropriately tailored. Engineering laccases, to improve the oxidation of small molecules, with applications in multiple fields, is, however, a difficult task. Most efforts have concentrated on increasing the redox potential of the enzyme, but in recent work, we have pursued an alternate strategy to engineering these biocatalysts. In particular, we have found that redesigning substrate binding at the T1 pocket, guided by in silico methodologies, to be a more consistent option. In this work, we evaluate the robustness of our computational approach to estimate activity, emphasizing the importance of the binding event in laccase reactivity. Strengths and weaknesses of the protocol are discussed along with its potential for scoring large numbers of protein sequences and thus its significance in protein engineering.
机译:为了满足工业的特殊要求,必须对蛋白质进行适当的定制。然而,工程漆酶,以改善小分子的氧化,并在多个领域应用,是一项艰巨的任务。大多数努力都集中在提高酶的氧化还原潜能上,但在最近的工作中,我们采用了一种替代策略来改造这些生物催化剂。特别是,我们发现,在硅方法学的指导下,重新设计T1袋处的底物结合是一种更一致的选择。在这项工作中,我们评估了我们估算活性的计算方法的稳健性,强调了结合事件在漆酶反应性中的重要性。讨论了该方案的优点和缺点,以及它对大量蛋白质序列评分的潜力,以及它在蛋白质工程中的意义。

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