首页> 外文期刊>Biochimica et Biophysica Acta. Molecular and cell biology of Lipids >Double function hydroperoxide lyases/epoxyalcohol synthases (CYP74C) of higher plants: identification and conversion into allene oxide synthases by site-directed mutagenesis
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Double function hydroperoxide lyases/epoxyalcohol synthases (CYP74C) of higher plants: identification and conversion into allene oxide synthases by site-directed mutagenesis

机译:高等植物的双函数氢过氧化物裂解酶/环氧醇合成酶(CYP74C):通过点定向诱变鉴定和转化为联烯氧化物合成酶

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摘要

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 alpha-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-hydroxy12-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.
机译:脂肪酸氢氧化氧化物转化酶的CYP74C亚家族包括氢过氧化物裂解酶(HPLS)和联烯氧化物合成酶(AOSS)。这项工作报告了推定的CYP74C HPLS的新方面。最初,我们发现重组CYP74C13_MT(MedicaCo Truncatula)主要表现为环氧醇合成酶(EA)朝向亚油酸的9(S)。同时,CYP74C13_MT主要具有朝向亚油和α-亚麻酸的13(S)的HPL活性。为了验证CYP74C13_MT的这种二元行为是否偶尔或典型,我们还检查了五种类似推定的HPLS(CYP74C)。这些是CYP74C4_ST(Solanum Tuberosum),CYP74C2(Cucumis Melo),CYP74C1_CS和CYP74C31(Cycumis Sativus)和CYP74C13_GM(甘氨酸最大)。所有测试的酶都表现主要是朝向9-氢过氧化物的亚油酸。氧化丙烯酸如(9S,10,11S,12Z)-9,10-环氧-11-羟基12-十八烷基酸是主要的EAS产品。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,具有催化基础结构结构域的取代,即“氢过氧化物结合结构域”(I-HELIX)或N-末端附近的SRS-1结构域显示出强烈的AOS活性。第一次观察到这些HPLS到余地转换。到现在,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,所有研究推定的CYP74C HPL都实际上是可以毫不费力地突变成特定的抗血管的多功能HPL / EAS。

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