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植物中与活性羰基解毒相关的 NADPH 依赖性还原酶。

NADPH-dependent reductases involved in the detoxification of reactive carbonyls in plants.

机构信息

Laboratory of Functional Phytochemistry, Graduate School of Agricultural Science, Kobe University, Rokkodai 1-1, Nada, Kobe 657-8501, Japan.

出版信息

J Biol Chem. 2011 Mar 4;286(9):6999-7009. doi: 10.1074/jbc.M110.202226. Epub 2010 Dec 17.

Abstract

Reactive carbonyls, especially α,β-unsaturated carbonyls produced through lipid peroxidation, damage biomolecules such as proteins and nucleotides; elimination of these carbonyls is therefore essential for maintaining cellular homeostasis. In this study, we focused on an NADPH-dependent detoxification of reactive carbonyls in plants and explored the enzyme system involved in this detoxification process. Using acrolein (CH(2) = CHCHO) as a model α,β-unsaturated carbonyl, we purified a predominant NADPH-dependent acrolein-reducing enzyme from cucumber leaves, and we identified the enzyme as an alkenal/one oxidoreductase (AOR) catalyzing reduction of an α,β-unsaturated bond. Cloning of cDNA encoding AORs revealed that cucumber contains two distinct AORs, chloroplastic AOR and cytosolic AOR. Homologs of cucumber AORs were found among various plant species, including Arabidopsis, and we confirmed that a homolog of Arabidopsis (At1g23740) also had AOR activity. Phylogenetic analysis showed that these AORs belong to a novel class of AORs. They preferentially reduced α,β-unsaturated ketones rather than α,β-unsaturated aldehydes. Furthermore, we selected candidates of other classes of enzymes involved in NADPH-dependent reduction of carbonyls based on the bioinformatic information, and we found that an aldo-keto reductase (At2g37770) and aldehyde reductases (At1g54870 and At3g04000) were implicated in the reduction of an aldehyde group of saturated aldehydes and methylglyoxal as well as α,β-unsaturated aldehydes in chloroplasts. These results suggest that different classes of NADPH-dependent reductases cooperatively contribute to the detoxification of reactive carbonyls.

摘要

反应羰基化合物,特别是通过脂质过氧化产生的α,β-不饱和羰基化合物,会损害蛋白质和核苷酸等生物分子;因此,消除这些羰基化合物对于维持细胞内稳态至关重要。在本研究中,我们专注于植物中依赖 NADPH 的反应羰基解毒,并探索了参与该解毒过程的酶系统。使用丙烯醛(CH(2) = CHCHO)作为α,β-不饱和羰基的模型,我们从黄瓜叶片中纯化了一种主要的依赖 NADPH 的丙烯醛还原酶,并鉴定该酶为烯醛/酮氧化还原酶(AOR),可催化α,β-不饱和键的还原。克隆编码 AOR 的 cDNA 表明,黄瓜含有两种不同的 AOR,质体 AOR 和细胞质 AOR。在各种植物物种中发现了黄瓜 AOR 的同源物,包括拟南芥,我们证实拟南芥的同源物(At1g23740)也具有 AOR 活性。系统发育分析表明,这些 AOR 属于一种新型 AOR。它们优先还原α,β-不饱和酮而不是α,β-不饱和醛。此外,我们根据生物信息学信息选择了参与依赖 NADPH 的羰基还原的其他酶类的候选物,并且发现醛酮还原酶(At2g37770)和醛还原酶(At1g54870 和 At3g04000)参与还原饱和醛和甲基乙二醛以及质体中的α,β-不饱和醛的醛基。这些结果表明,不同类别的依赖 NADPH 的还原酶协同作用于反应羰基的解毒。

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