Department of Life Sciences, Imperial College London, London, UK.
Warwick Integrative Synthetic Biology Centre and School of Life Sciences, University of Warwick, Coventry, UK.
Nat Protoc. 2017 Sep;12(9):1830-1843. doi: 10.1038/nprot.2017.084. Epub 2017 Aug 10.
Directed evolution is a powerful tool to improve the characteristics of biomolecules. Here we present a protocol for the intracellular evolution of proteins with distinct differences and advantages in comparison with established techniques. These include the ability to select for a particular function from a library of protein variants inside cells, minimizing undesired coevolution and propagation of nonfunctional library members, as well as allowing positive and negative selection logics using basally active promoters. A typical evolution experiment comprises the following stages: (i) preparation of a combinatorial M13 phagemid (PM) library expressing variants of the gene of interest (GOI) and preparation of the Escherichia coli host cells; (ii) multiple rounds of an intracellular selection process toward a desired activity; and (iii) the characterization of the evolved target proteins. The system has been developed for the selection of new orthogonal transcription factors (TFs) but is capable of evolving any gene-or gene circuit function-that can be linked to conditional M13 phage replication. Here we demonstrate our approach using as an example the directed evolution of the bacteriophage λ cI TF against two synthetic bidirectional promoters. The evolved TF variants enable simultaneous activation and repression against their engineered promoters and do not cross-react with the wild-type promoter, thus ensuring orthogonality. This protocol requires no special equipment, allowing synthetic biologists and general users to evolve improved biomolecules within ∼7 weeks.
定向进化是一种强大的工具,可以改善生物分子的特性。在这里,我们提出了一种在细胞内进化蛋白质的方法,与已建立的技术相比,该方法具有明显的差异和优势。这些优势包括能够从细胞内的蛋白质变体文库中选择特定功能,最小化不需要的共进化和非功能文库成员的传播,以及允许使用基本活性启动子进行正选择和负选择逻辑。典型的进化实验包括以下阶段:(i)制备表达目的基因(GOI)变体的组合 M13 噬菌体(PM)文库和制备大肠杆菌宿主细胞;(ii)在多个轮次的细胞内选择过程中针对所需的活性;以及(iii)对进化的目标蛋白进行表征。该系统已开发用于选择新的正交转录因子(TF),但能够进化任何基因或基因回路功能,这些功能可以与条件性 M13 噬菌体复制相关联。在这里,我们以噬菌体 λ cI TF 针对两个合成的双向启动子的定向进化为例展示了我们的方法。进化的 TF 变体能够针对其工程化的启动子同时进行激活和抑制,并且不会与野生型启动子发生交叉反应,从而确保正交性。该方案不需要特殊设备,允许合成生物学家和普通用户在大约 7 周内进化出改进的生物分子。