Merkin Institute of Transformative Technologies in Healthcare, The Broad Institute of Harvard and MIT, Cambridge, MA, USA.
Department of Chemistry and Chemical Biology, Harvard University, Cambridge, MA, USA.
Nat Protoc. 2020 Dec;15(12):4101-4127. doi: 10.1038/s41596-020-00410-3. Epub 2020 Nov 16.
Directed evolution, which applies the principles of Darwinian evolution to a laboratory setting, is a powerful strategy for generating biomolecules with diverse and tailored properties. This technique can be implemented in a highly efficient manner using continuous evolution, which enables the steps of directed evolution to proceed seamlessly over many successive generations with minimal researcher intervention. Phage-assisted continuous evolution (PACE) enables continuous directed evolution in bacteria by mapping the steps of Darwinian evolution onto the bacteriophage life cycle and allows directed evolution to occur on much faster timescales compared to conventional methods. This protocol provides detailed instructions on evolving proteins using PACE and phage-assisted non-continuous evolution (PANCE) and includes information on the preparation of selection phage and host cells, the assembly of a continuous flow apparatus and the performance and analysis of evolution experiments. This protocol can be performed in as little as 2 weeks to complete more than 100 rounds of evolution (complete cycles of mutation, selection and replication) in a single PACE experiment.
定向进化是将达尔文进化原理应用于实验室环境的一种强大策略,可用于生成具有多样化和定制化特性的生物分子。该技术可通过连续进化以高效的方式实施,使定向进化的步骤在无需研究人员干预的情况下,在许多连续的代中无缝进行。噬菌体辅助连续进化(PACE)通过将达尔文进化的步骤映射到噬菌体生命周期上,使细菌中的连续定向进化成为可能,并使定向进化能够在比传统方法更快的时间尺度上发生。本方案提供了使用 PACE 和噬菌体辅助非连续进化(PANCE)进行蛋白质进化的详细说明,包括选择噬菌体和宿主细胞的制备、连续流装置的组装以及进化实验的性能和分析。该方案可在短短 2 周内完成,在单个 PACE 实验中完成超过 100 轮的进化(完成突变、选择和复制的完整循环)。