Enzyme Technology Group, Department of Biotechnology and Food Technology, Faculty of Applied Sciences, Durban University of Technology , Durban , South Africa.
Crit Rev Biotechnol. 2013 Dec;33(4):365-78. doi: 10.3109/07388551.2012.716810. Epub 2012 Sep 18.
Current challenges and promises of white biotechnology encourage protein engineers to use a directed evolution approach to generate novel and useful biocatalysts for various sets of applications. Different methods of enzyme engineering have been used in the past in an attempt to produce enzymes with improved functions and properties. Recent advancement in the field of random mutagenesis, screening, selection and computational design increased the versatility and the rapid development of enzymes under strong selection pressure with directed evolution experiments. Techniques of directed evolution improve enzymes fitness without understanding them in great detail and clearly demonstrate its future role in adapting enzymes for use in industry. Despite significant advances to date regarding biocatalyst improvement, there still remains a need to improve mutagenesis strategies and development of easy screening and selection tools without significant human intervention. This review covers fundamental and major development of directed evolution techniques, and highlights the advances in mutagenesis, screening and selection methods with examples of enzymes developed by using these approaches. Several commonly used methods for creating molecular diversity with their advantages and disadvantages including some recently used strategies are also discussed.
当前,白色生物技术所面临的挑战与机遇,鼓励蛋白质工程师采用定向进化方法,为各种应用场景生成新颖且有用的生物催化剂。过去,人们曾尝试使用不同的酶工程方法,以获得具有改进功能和特性的酶。近年来,随机诱变、筛选、选择和计算设计领域的进展,增强了定向进化实验中受强烈选择压力影响的酶的多功能性和快速发展。定向进化技术可以在不深入了解酶的情况下提高其适应性,并且清楚地展示了其在适应工业用途的酶方面的未来作用。尽管迄今为止在生物催化剂的改进方面取得了重大进展,但仍需要改进诱变策略,并开发无需大量人工干预即可进行的简便筛选和选择工具。本文综述了定向进化技术的基础和主要进展,并通过实例展示了诱变、筛选和选择方法的进展,这些实例是使用这些方法开发的酶。本文还讨论了几种常用的产生分子多样性的方法,包括它们的优缺点,以及一些最近使用的策略。