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Enhancing the Catalytic Performance of a CYP116B Monooxygenase by Transdomain Combination Mutagenesis

机译:通过跨域组合诱变增强CYP116B单氧化酶的催化性能

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The cytochrome P450 monooxygenase discovered in Labrenzia aggregata (P450(LaMO)) is a self-sufficient redox system with versatile oxygenation functions. However, its catalytic performance is severely hindered by a low reaction rate, poor electron coupling efficiency (CE) and fragile thermostability. Herein, a simple transdomain combination mutation strategy was proposed for engineering this multi-domain P450 enzyme with redox partners fused to the heme domain. After focused mutagenesis on the heme domain, a triple mutant H3 (N119C/V264A/V437G) was hit, that improved the turnover frequency (TOF) and CE of P450(LaMO) by about 7.8-fold and 3.0-fold, respectively. A redox domain-based mutant with higher cytochrome c reduction activity, MR1 (M612L/K774Y), mediated more efficient electron transfer, elevated the TOF by 4.9-fold, and the coupling efficiency by 4.2-fold. The beneficial effect was further enhanced by combining the mutation sites from different domains, resulting in a combinatorial mutant (N119C/V264A/V437G/M612L/N694D) with a 9.1-fold increase in coupling efficiency, 10-fold in TOF, as well as +3.8 degrees C in thermostability (T-50(10)). Meanwhile, for series of tetrahydronaphthalene derivatives, this combinator showed higher hydroxylation activity. This work suggested that employing this combinatorial strategy targeting on both the redox and heme domains is efficient to improve holoenzyme activity, CE and stability of a CYP116B subfamily member from the low starting point.
机译:在Labrenzia Excregata(P450(Lamo))中发现的细胞色素P450单氧基酶是一种具有多功能氧合作用的自充足氧化还原体系。然而,其催化性能受到低反应速率,电子耦合效率(Ce)差和脆性的热稳定性的严重阻碍。在此,提出了一种简单的跨域组合突变策略,用于用与血红素结构域融合的氧化还原合作伙伴来工程该多域P450酶。在聚焦诱变对血红素结构域的诱变后,命中三重突变H3(N119C / V264A / V437G),将周转频率(TOF)和P450(LAMO)的CE分别改善约7.8倍和3.0倍。具有较高细胞色素C还原活性的氧化还原结构域的突变体,MR1(M612L / K774Y),介导的更有效的电子转移,将TOF升高4.9倍,耦合效率4.2倍。通过将来自不同结构域的突变位点组合,得到了组合突变体(N119C / V264A / V437G / M612L / N694D),耦合效率增加了9.1倍,TOF 10倍,以及+ 3.8摄氏度的热稳定性(T-50(10))。同时,对于一系列四氢萘衍生物,该组合物显示出较高的羟基化活性。这项工作表明,采用这种组合策略靶向氧化还原和血红素结构域,以改善来自低起点的CYP116B亚家族成员的全酶活性,CE和稳定性。

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