Fischer Marlies, Kang Mandeep, Brindle Nicholas Pj
Department of Molecular and Cell Biology, University of Leicester, Henry Wellcome Building, Lancaster Road, Leicester, LE1 9HN, United Kingdom.
Department of Cardiovascular Sciences, University of Leicester, Henry Wellcome Building, Lancaster Road, Leicester, LE1 9HN, United Kingdom.
Protein Sci. 2016 Feb;25(2):352-9. doi: 10.1002/pro.2836. Epub 2015 Nov 14.
Directed evolution is a powerful tool for engineering protein function. The process of directed evolution involves iterative rounds of sequence diversification followed by assaying activity of variants and selection. The range of sequence variants and linked activities generated in the course of an evolution are a rich information source for investigating relationships between sequence and function. Key residue positions determining protein function, combinatorial contributors to activity and even potential functional mechanisms have been revealed in directed evolutions. The recent application of high throughput sequencing substantially increases the information that can be retrieved from directed evolution experiments. Combined with computational analysis this additional sequence information has allowed high-resolution analysis of individual residue contributions to activity. These developments promise to significantly enhance the depth of insight that experimental evolution provides into mechanisms of protein function.
定向进化是一种用于改造蛋白质功能的强大工具。定向进化过程包括序列多样化的迭代轮次,随后对变体的活性进行测定和筛选。在进化过程中产生的序列变体及其相关活性范围是研究序列与功能之间关系的丰富信息来源。在定向进化中已经揭示了决定蛋白质功能的关键残基位置、活性的组合贡献因素甚至潜在的功能机制。高通量测序的最新应用极大地增加了可从定向进化实验中检索到的信息。结合计算分析,这些额外的序列信息使得能够对单个残基对活性的贡献进行高分辨率分析。这些进展有望显著提高实验进化对蛋白质功能机制的洞察深度。