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植物细胞色素 P450 代谢脂肪酸:特征与生理作用。

Cytochrome P450 metabolizing fatty acids in plants: characterization and physiological roles.

机构信息

Institut de Biologie Moléculaire des Plantes, CNRS-Université de Strasbourg, Strasbourg, France.

出版信息

FEBS J. 2011 Jan;278(2):195-205. doi: 10.1111/j.1742-4658.2010.07948.x. Epub 2010 Dec 13.

Abstract

In plants, fatty acids (FA) are subjected to various types of oxygenation reactions. Products include hydroxyacids, as well as hydroperoxides, epoxides, aldehydes, ketones and α,ω-diacids. Many of these reactions are catalysed by cytochrome P450s (P450s), which represent one of the largest superfamilies of proteins in plants. The existence of P450-type metabolizing FA enzymes in plants was established approximately four decades ago in studies on the biosynthesis of lipid polyesters. Biochemical investigations have highlighted two major characteristics of P450s acting on FAs: (a) they can be inhibited by FA analogues carrying an acetylenic function, and (b) they can be enhanced by biotic and abiotic stress at the transcriptional level. Based on these properties, P450s capable of producing oxidized FA have been identified and characterized from various plant species. Until recently, the vast majority of characterized P450s acting on FAs belonged to the CYP86 and CYP94 families. In the past five years, rapid progress in the characterization of mutants in the model plant Arabidopsis thaliana has allowed the identification of such enzymes in many other P450 families (i.e. CYP703, CYP704, CYP709, CYP77, CYP74). The presence in a single species of distinct enzymes characterized by their own regulation and catalytic properties raised the question of their physiological meaning. Functional studies in A. thaliana have demonstrated the involvement of FA hydroxylases in the synthesis of the protective biopolymers cutin, suberin and sporopollenin. In addition, several lines of evidence discussed in this minireview are consistent with P450s metabolizing FAs in many aspects of plant biology, such as defence against pathogens and herbivores, development, catabolism or reproduction.

摘要

在植物中,脂肪酸 (FA) 会发生各种类型的氧化反应。产物包括羟基酸、过氧化物、环氧化物、醛、酮和 α,ω-二羧酸。这些反应中的许多是由细胞色素 P450(P450s)催化的,P450s 是植物中最大的蛋白质超家族之一。大约四十年前,在研究脂质聚酯的生物合成时,人们就已经发现了植物中 P450 型代谢 FA 酶的存在。生化研究强调了 P450 作用于 FA 的两个主要特征:(a) 它们可以被带有炔基功能的 FA 类似物抑制,(b) 它们可以在转录水平上被生物和非生物胁迫增强。基于这些特性,已经从各种植物物种中鉴定和表征了能够产生氧化 FA 的 P450。直到最近,绝大多数被表征的作用于 FA 的 P450 都属于 CYP86 和 CYP94 家族。在过去的五年中,对模式植物拟南芥突变体的特征描述取得了快速进展,这使得许多其他 P450 家族(即 CYP703、CYP704、CYP709、CYP77、CYP74)中的此类酶也得到了鉴定。在单个物种中存在具有自身调节和催化特性的不同酶,这引发了对其生理意义的质疑。在拟南芥中的功能研究表明,FA 羟化酶参与了保护生物聚合物角质、栓质和孢粉素的合成。此外,本综述中讨论的几条证据都表明 P450 代谢 FA 与植物生物学的许多方面有关,例如对病原体和草食动物的防御、发育、分解代谢或繁殖。

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