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CYP94家族的多种细胞色素P450通过新鉴定出的醛中间体对茉莉酰-苯丙氨酸和茉莉酰-异亮氨酸进行顺序氧化。

Sequential oxidation of Jasmonoyl-Phenylalanine and Jasmonoyl-Isoleucine by multiple cytochrome P450 of the CYP94 family through newly identified aldehyde intermediates.

作者信息

Widemann Emilie, Grausem Bernard, Renault Hugues, Pineau Emmanuelle, Heinrich Clément, Lugan Raphaël, Ullmann Pascaline, Miesch Laurence, Aubert Yann, Miesch Michel, Heitz Thierry, Pinot Franck

机构信息

Département Réseaux Métaboliques chez les Végétaux. Institut de Biologie Moléculaire des Plantes, UPR 2357 du Centre National de la Recherche Scientifique, conventionné avec l'Université de Strasbourg, 67083 Strasbourg Cedex, France.

Laboratoire de Chimie Organique Synthétique, Unité Mixte de Recherche 7177, Université de Strasbourg, 67008 Strasbourg Cedex, France.

出版信息

Phytochemistry. 2015 Sep;117:388-399. doi: 10.1016/j.phytochem.2015.06.027. Epub 2015 Jul 9.

Abstract

The role and fate of Jasmonoyl-Phenylalanine (JA-Phe), an understudied conjugate in the jasmonate pathway remain to be unraveled. We addressed here the possibility of JA-Phe oxidative turnover by cytochrome P450s of the CYP94 family. Leaf wounding or fungal infection in Arabidopsis resulted in accumulation of JA-Phe, 12-hydroxyl (12OH-JA-Phe) and 12-carboxyl (12COOH-JA-Phe) derivatives, with patterns differing from those previously described for Jasmonoyl-Isoleucine. In vitro, yeast-expressed cytochromes P450 CYP94B1, CYP94B3 and CYP94C1 differentially oxidized JA-Phe to 12-hydroxyl, 12-aldehyde and 12-carboxyl derivatives. Furthermore, a new aldehyde jasmonate, 12CHO-JA-Ile was detected in wounded plants. Metabolic analysis of CYP94B3 and CYP94C1 loss- and gain-of-function plant lines showed that 12OH-JA-Phe was drastically reduced in cyp94b3 but not affected in cyp94c1, while single or double mutants lacking CYP94C1 accumulated less 12COOH-JA-Phe than WT plants. This, along with overexpressing lines, demonstrates that hydroxylation by CYP94B3 and carboxylation by CYP94C1 accounts for JA-Phe turnover in planta. Evolutionary study of the CYP94 family in the plant kingdom suggests conserved roles of its members in JA conjugate homeostasis and possibly in adaptative functions. Our work extends the range and complexity of JA-amino acid oxidation by multifunctional CYP94 enzymes in response to environmental cues.

摘要

茉莉酰 - 苯丙氨酸(JA - Phe)是茉莉酸途径中一个研究较少的共轭物,其作用和命运仍有待阐明。我们在此探讨了CYP94家族细胞色素P450对JA - Phe进行氧化转化的可能性。拟南芥叶片受伤或真菌感染会导致JA - Phe、12 - 羟基(12OH - JA - Phe)和12 - 羧基(12COOH - JA - Phe)衍生物的积累,其模式与先前描述的茉莉酰 - 异亮氨酸不同。在体外,酵母表达的细胞色素P450 CYP94B1、CYP94B3和CYP94C1将JA - Phe分别氧化为12 - 羟基、12 - 醛和12 - 羧基衍生物。此外,在受伤植物中检测到一种新的茉莉酸醛,即12CHO - JA - Ile。对CYP94B3和CYP94C1功能丧失和功能获得型植株系的代谢分析表明,cyp94b3中12OH - JA - Phe大幅减少,而cyp94c1中不受影响,而缺乏CYP94C1的单突变体或双突变体积累的12COOH - JA - Phe比野生型植株少。这与过表达株系一起表明,CYP94B3的羟基化作用和CYP94C1的羧基化作用参与了植物体内JA - Phe的转化。对植物界CYP94家族的进化研究表明,其成员在JA共轭物稳态中以及可能在适应功能中具有保守作用。我们的工作扩展了多功能CYP94酶响应环境信号对JA - 氨基酸进行氧化的范围和复杂性。

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