State Key Laboratory of Microbial Technology, Shandong University, Qingdao, 266237, China.
Laboratory for Marine Biology and Biotechnology, Qingdao National Laboratory for Marine Science and Technology, Qingdao, 266237, China.
Sci China Life Sci. 2022 Mar;65(3):550-560. doi: 10.1007/s11427-021-1994-1. Epub 2021 Aug 31.
Directed evolution (DE) inspired by natural evolution (NE) has been achieving tremendous successes in protein/enzyme engineering. However, the conventional "one-protein-for-one-task" DE cannot match the "multi-proteins-for-multi-tasks" NE in terms of screening throughput and efficiency, thus often failing to meet the fast-growing demands for biocatalysts with desired properties. In this study, we design a novel "multi-enzymes-for-multi-substrates" (MEMS) DE model and establish the proof-of-concept by running a NE-mimicking and higher-throughput screening on the basis of "two-P450s-against-seven-substrates" (2P×7S) in one pot. With the multiplied throughput and improved hit rate, we witness a series of convergent evolution events of the two archetypal cytochrome P450 enzymes (P450 BM3 and P450cam) in laboratory. It is anticipated that the new strategy of MEMS DE will find broader application for a larger repertoire of enzymes in the future. Furthermore, structural and substrate docking analysis of the two functionally convergent P450 variants provide important insights into how distinct P450 active-sites can reach a common catalytic goal.
受自然进化启发的定向进化(DE)在蛋白质/酶工程中取得了巨大的成功。然而,传统的“一蛋白一任务”DE 在筛选通量和效率方面无法与“多蛋白多任务”的 NE 相匹配,因此往往无法满足对具有所需特性的生物催化剂的快速增长的需求。在本研究中,我们设计了一种新颖的“多酶多底物”(MEMS)DE 模型,并通过在一锅反应中对“两个 P450 酶对七种底物”(2P×7S)进行 NE 模拟和高通量筛选,建立了概念验证。通过增加通量和提高命中率,我们在实验室中观察到两种典型细胞色素 P450 酶(P450 BM3 和 P450cam)的一系列趋同进化事件。预计 MEMS DE 的新策略将在未来为更多种类的酶找到更广泛的应用。此外,两种功能趋同 P450 变体的结构和底物对接分析为不同的 P450 活性位点如何达到共同的催化目标提供了重要的见解。