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Improvement of Biocatalysts for Industrial and Environmental Purposes by Saturation Mutagenesis

机译:通过饱和诱变改进用于工业和环境目的的生物催化剂

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摘要

Laboratory evolution techniques are becoming increasingly widespread among protein engineers for the development of novel and designed biocatalysts. The palette of different approaches ranges from complete randomized strategies to rational and structure-guided mutagenesis, with a wide variety of costs, impacts, drawbacks and relevance to biotechnology. A technique that convincingly compromises the extremes of fully randomized vs. rational mutagenesis, with a high benefit/cost ratio, is saturation mutagenesis. Here we will present and discuss this approach in its many facets, also tackling the issue of randomization, statistical evaluation of library completeness and throughput efficiency of screening methods. Successful recent applications covering different classes of enzymes will be presented referring to the literature and to research lines pursued in our group. The focus is put on saturation mutagenesis as a tool for designing novel biocatalysts specifically relevant to production of fine chemicals for improving bulk enzymes for industry and engineering technical enzymes involved in treatment of waste, detoxification and production of clean energy from renewable sources.
机译:为了开发新型和设计的生物催化剂,实验室进化技术在蛋白质工程师中变得越来越普遍。从完全随机的策略到合理的,结构指导的诱变,不同方法的选择范围广泛,包括各种成本,影响,缺点以及与生物技术的相关性。令人信服的折衷方案是饱和诱变,它以高的收益/成本比折衷了完全随机诱变与理性诱变的极端。在这里,我们将在许多方面介绍和讨论此方法,还将解决随机化问题,库完整性的统计评估和筛选方法的通量效率问题。将参考文献和我们小组追求的研究方向介绍涵盖不同类别酶的近期成功应用。重点放在饱和诱变上,它是一种工具,用于设计与精细化学品的生产特别相关的新型生物催化剂,以改善用于处理废物,排毒和利用可再生资源生产清洁能源的工业和工程技术用酶的大量酶。

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