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通过非天然氨基酸诱变提高P450氧化催化剂的效率和区域选择性。

Enhancing the efficiency and regioselectivity of P450 oxidation catalysts by unnatural amino acid mutagenesis.

作者信息

Kolev Joshua N, Zaengle Jacqueline M, Ravikumar Rajesh, Fasan Rudi

机构信息

Department of Chemistry, University of Rochester, Hutchison Hall, Rochester, NY 14620 (USA).

出版信息

Chembiochem. 2014 May 5;15(7):1001-10. doi: 10.1002/cbic.201400060. Epub 2014 Apr 1.

Abstract

The development of effective strategies for modulating the reactivity and selectivity of cytochrome P450 enzymes represents a key step toward expediting the use of these biocatalysts for synthetic applications. We have investigated the potential of unnatural amino acid mutagenesis to aid efforts in this direction. Four unnatural amino acids with diverse aromatic side chains were incorporated at 11 active-site positions of a substrate-promiscuous CYP102A1 variant. The resulting "uP450s" were then tested for their catalytic activity and regioselectivity in the oxidation of two representative substrates: a small-molecule drug and a natural product. Large shifts in regioselectivity resulted from these single mutations, and in particular, for para-acetyl-Phe substitutions at positions close to the heme cofactor. Screening this mini library of uP450s enabled us to identify P450 catalysts for the selective hydroxylation of four aliphatic positions in the target substrates, including a C(sp(3))-H site not oxidized by the parent enzyme. Furthermore, we discovered a general activity-enhancing effect of active-site substitutions involving the unnatural amino acid para-amino-Phe, which resulted in P450 catalysts capable of supporting the highest total turnover number reported to date on a complex molecule (34,650). The functional changes induced by the unnatural amino acids could not be reproduced by any of the 20 natural amino acids. This study thus demonstrates that unnatural amino acid mutagenesis constitutes a promising new strategy for improving the catalytic activity and regioselectivity of P450 oxidation catalysts.

摘要

开发用于调节细胞色素P450酶反应活性和选择性的有效策略,是加快将这些生物催化剂用于合成应用的关键一步。我们研究了非天然氨基酸诱变在这一方向上助力的潜力。在底物混杂的CYP102A1变体的11个活性位点位置引入了四种具有不同芳香族侧链的非天然氨基酸。然后测试所得的“uP450s”在氧化两种代表性底物(一种小分子药物和一种天然产物)时的催化活性和区域选择性。这些单突变导致区域选择性发生了很大变化,特别是在靠近血红素辅因子的位置进行对乙酰基苯丙氨酸取代时。筛选这个uP450s小型文库使我们能够鉴定出用于选择性羟基化目标底物中四个脂肪族位置的P450催化剂,包括一个未被亲本酶氧化的C(sp(3))-H位点。此外,我们发现涉及非天然氨基酸对氨基苯丙氨酸的活性位点取代具有普遍的活性增强作用,这产生了能够支持迄今为止报道的在复杂分子上最高总周转数(34,650)的P450催化剂。非天然氨基酸诱导的功能变化无法被20种天然氨基酸中的任何一种重现。因此,这项研究表明非天然氨基酸诱变是一种有前景的新策略,可用于提高P450氧化催化剂的催化活性和区域选择性。

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