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细胞色素 P450 酶对保护醇底物的选择性脂肪族碳-氢键活化。

Selective aliphatic carbon-hydrogen bond activation of protected alcohol substrates by cytochrome P450 enzymes.

机构信息

School of Chemistry and Physics, University of Adelaide, SA 5005, Australia.

出版信息

Org Biomol Chem. 2014 Apr 21;12(15):2479-88. doi: 10.1039/c3ob42417k.

Abstract

Protected cyclohexanol and cyclohex-2-enol substrates, containing benzyl ether and benzoate ester moieties, were designed to fit into the active site of the Tyr96Ala mutant of cytochrome P450cam. The protected cyclohexanol substrates were efficiently and selectively hydroxylated by the mutant enzyme at the trans C-H bond of C-4 on the cyclohexyl ring. The selectivity of oxidation of the benzoate ester protected cyclohexanol could be altered by making alternative amino acid substitutions in the P450cam active site. The addition of the double bond in the cyclohexyl ring of the benzoate ester protected cyclohex-2-enol has a debilitative effect on the activity of the Tyr96Ala mutant with this substrate. However, the Phe87Ala/Tyr96Phe double mutant, which introduces space at a different location in the active site than the Tyr96Ala mutant, was able to efficiently hydroxylate the C-H bonds of 1-cyclohex-2-enyl benzoate at the allylic C-4 position. Mutations at Phe87 improved the selectivity of the oxidation of 1-phenyl-1-cyclohexylethylene to trans-4-phenyl-ethenylcyclohexanol (92%) when compared to single mutants at Tyr96 of P450cam.

摘要

设计了含苄醚和苯甲酸酯部分的保护环己醇和环己-2-烯醇底物,以适应细胞色素 P450cam Tyr96Ala 突变体的活性部位。保护的环己醇底物在环己基环的 C-4 的反式 C-H 键处被突变酶高效且选择性地羟化。通过在 P450cam 活性部位进行替代氨基酸取代,可以改变苯甲酸酯保护的环己醇的氧化选择性。苯甲酸酯保护的环己-2-烯醇中环己基环中的双键的添加对该底物的 Tyr96Ala 突变体的活性具有削弱作用。然而,与 Tyr96Ala 突变体不同位置引入空间的 Phe87Ala/Tyr96Phe 双突变体能够有效地在烯丙位 C-4 位置羟化 1-环己-2-烯基苯甲酸酯的 C-H 键。与 P450cam 的 Tyr96 单点突变相比,Phe87 的突变提高了 1-苯基-1-环己基乙烯氧化为反式-4-苯基-乙烯基环己醇(92%)的选择性。

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