State Key Laboratory of Microbial Technology, Shandong University, Qingdao, Shandong, 266237, China.
Laboratory for Marine Biology and Biotechnology, Qingdao National Laboratory for Marine Science and Technology, Qingdao, Shandong, 266237, China.
Commun Biol. 2022 Aug 6;5(1):791. doi: 10.1038/s42003-022-03764-4.
Most P450s require redox partners for the electron transfer during catalysis. However, little information is available on cognate redox partners for P450s, which greatly limits P450 function exploration and practical application. Thus, the stategy of building various hybrid P450 catalytic systems with surrogate redox partner has often adopted to engineer P450 biocatalysts. In this study, we compare three pairs of frequently-used surrogate redox partner SelFdx1499/SelFdR0978, Adx/AdR and Pdx/PdR and in terms of their electron transfer properties. The three selected bacterial Class I P450s include PikC, P450sca-2 and CYP-sb21, which are responsible for production of high-value-added products. Here we show that SelFdx1499/SelFdR0978 is the most promising redox partner compared to Adx/AdR and Pdx/PdR. The results provide insights into the domination for P450-redox partner interactions in modulating the catalytic activity of P450s. This study not only produces a more active biocatalyst but also suggests a general chose for a universal reductase which would facilitate engineering of P450 catalyst.
大多数 P450 酶在催化过程中需要氧化还原伴侣来进行电子转移。然而,关于 P450 酶的同源氧化还原伴侣的信息很少,这极大地限制了 P450 功能的探索和实际应用。因此,构建具有替代氧化还原伴侣的各种杂交 P450 催化系统的策略经常被用于工程化 P450 生物催化剂。在本研究中,我们比较了三种常用的替代氧化还原伴侣 SelFdx1499/SelFdR0978、Adx/AdR 和 Pdx/PdR,从电子转移特性方面对它们进行了评估。所选择的三种细菌 Class I P450 酶包括负责生产高附加值产品的 PikC、P450sca-2 和 CYP-sb21。结果表明,与 Adx/AdR 和 Pdx/PdR 相比,SelFdx1499/SelFdR0978 是最有前途的氧化还原伴侣。该研究结果深入了解了 P450-氧化还原伴侣相互作用在调节 P450 酶催化活性方面的主导作用。本研究不仅产生了更具活性的生物催化剂,还为通用还原酶的选择提供了思路,这将有助于 P450 催化剂的工程化。