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Biocatalysis, Enzyme Engineering and Biotechnology

机译:生物催化,酶工程和生物技术

摘要

Enzymes are biocatalysts evolved in nature to achieve the speed and coordination of nearly all the chemical reactions that define cellular metabolism necessary to develop and maintain life. The application of biocatalysis is growing rapidly, since enzymes offer potential for many exciting applications in industry. The advent of whole genome sequencing projects enabled new approaches for biocatalyst development, based on specialised methods for enzyme heterologous expression and engineering. The engineering of enzymes with altered activity, specificity and stability, using sitedirected mutagenesis and directed evolution techniques are now well established. Over the last decade, enzyme immobilisation has become important in industry. New methods and techniques for enzyme immobilisation allow for the reuse of the catalysts and the development of efficient biotechnological processes. This chapter reviews advances in enzyme technology as well as in the techniques and strategies used for enzyme production, engineering and immobilisation and discuss their advantages and disadvantages.
机译:酶是自然界中进化出的生物催化剂,可以实现几乎所有化学反应的速度和协调性,这些化学反应定义了维持和维持生命所必需的细胞代谢。由于酶为工业中许多令人兴奋的应用提供了潜力,因此生物催化的应用正在迅速增长。全基因组测序项目的出现为酶催化异源表达和工程化的特殊方法提供了新的生物催化剂开发方法。利用定点诱变和定向进化技术的具有改变的活性,特异性和稳定性的酶工程现已被广泛建立。在过去的十年中,酶固定化在工业中已变得很重要。用于酶固定的新方法和技术允许催化剂的再利用和有效生物技术方法的发展。本章回顾了酶技术的发展以及用于酶生产,工程化和固定化的技术和策略,并讨论了它们的优缺点。

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