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高等植物的双功能过氧化物水解酶/环氧化物醇合酶(CYP74C):通过定点突变鉴定和转化为丙烯氧化物合酶。

Double function hydroperoxide lyases/epoxyalcohol synthases (CYP74C) of higher plants: identification and conversion into allene oxide synthases by site-directed mutagenesis.

机构信息

Kazan Institute of Biochemistry and Biophysics, Russian Academy of Sciences, P.O. Box 30, Kazan 420111, Russia.

Kazan Institute of Biochemistry and Biophysics, Russian Academy of Sciences, P.O. Box 30, Kazan 420111, Russia.

出版信息

Biochim Biophys Acta Mol Cell Biol Lipids. 2018 Apr;1863(4):369-378. doi: 10.1016/j.bbalip.2018.01.002. Epub 2018 Jan 8.

Abstract

The CYP74C subfamily of fatty acid hydroperoxide transforming enzymes includes hydroperoxide lyases (HPLs) and allene oxide synthases (AOSs). This work reports a new facet of the putative CYP74C HPLs. Initially, we found that the recombinant CYP74C13_MT (Medicago truncatula) behaved predominantly as the epoxyalcohol synthase (EAS) towards the 9(S)-hydroperoxide of linoleic acid. At the same time, the CYP74C13_MT mostly possessed the HPL activity towards the 13(S)-hydroperoxides of linoleic and α-linolenic acids. To verify whether this dualistic behaviour of CYP74C13_MT is occasional or typical, we also examined five similar putative HPLs (CYP74C). These were CYP74C4_ST (Solanum tuberosum), CYP74C2 (Cucumis melo), CYP74C1_CS and CYP74C31 (both of Cucumis sativus), and CYP74C13_GM (Glycine max). All tested enzymes behaved predominantly as EAS toward 9-hydroperoxide of linoleic acid. Oxiranyl carbinols such as (9S,10S,11S,12Z)-9,10-epoxy-11-hydroxy-12-octadecenoic acids were the major EAS products. Besides, the CYP74C31 possessed an additional minor 9-AOS activity. The mutant forms of CYP74C13_MT, CYP74C1_CS, and CYP74C31 with substitutions at the catalytically essential domains, namely the "hydroperoxide-binding domain" (I-helix), or the SRS-1 domain near the N-terminus, showed strong AOS activity. These HPLs to AOSs conversions were observed for the first time. Until now a large part of CYP74C enzymes has been considered as 9/13-HPLs. Notwithstanding, these results show that all studied putative CYP74C HPLs are in fact the versatile HPL/EASs that can be effortlessly mutated into specific AOSs.

摘要

CYP74C 亚家族的脂肪酸氢过氧化物转化酶包括氢过氧化物裂解酶(HPLs)和丙二烯氧化物合酶(AOSs)。本工作报道了假定的 CYP74C HPLs 的一个新方面。最初,我们发现重组 CYP74C13_MT(Medicago truncatula)主要表现为对亚油酸 9(S)-氢过氧化物的环氧化醇合酶(EAS)。同时,CYP74C13_MT 主要具有对亚油酸和α-亚麻酸 13(S)-氢过氧化物的 HPL 活性。为了验证 CYP74C13_MT 的这种双重行为是偶然的还是典型的,我们还检查了五个类似的假定 HPL(CYP74C)。这些是 CYP74C4_ST(Solanum tuberosum)、CYP74C2(Cucumis melo)、CYP74C1_CS 和 CYP74C31(均来自 Cucumis sativus)以及 CYP74C13_GM(Glycine max)。所有测试的酶主要表现为对亚油酸 9-氢过氧化物的 EAS。环氧化烷基醇,如(9S,10S,11S,12Z)-9,10-环氧-11-羟基-12-十八烯酸,是主要的 EAS 产物。此外,CYP74C31 具有额外的次要 9-AOS 活性。CYP74C13_MT、CYP74C1_CS 和 CYP74C31 的突变形式在催化必需域(即“氢过氧化物结合域”(I 螺旋))或靠近 N 末端的 SRS-1 域发生取代,表现出强烈的 AOS 活性。这些 HPL 向 AOSs 的转化是首次观察到的。到目前为止,CYP74C 酶的很大一部分被认为是 9/13-HPLs。尽管如此,这些结果表明,所有研究的假定 CYP74C HPL 实际上都是多功能的 HPL/EASs,可以轻松突变为特定的 AOSs。

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