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胡椒酸,一种基于机制的反式肉桂酸4-羟化酶选择性失活剂:控制苯丙烷途径中代谢物通量的新工具。

Piperonylic acid, a selective, mechanism-based inactivator of the trans-cinnamate 4-hydroxylase: A new tool to control the flux of metabolites in the phenylpropanoid pathway.

作者信息

Schalk M, Cabello-Hurtado F, Pierrel MA, Atanossova R, Saindrenan P, Werck-Reichhart D

机构信息

Departement d'Enzymologie Cellulaire et Moleculaire (M.S., F.C.-H., D.W.-R.).

出版信息

Plant Physiol. 1998 Sep;118(1):209-18. doi: 10.1104/pp.118.1.209.

Abstract

Piperonylic acid (PA) is a natural molecule bearing a methylenedioxy function that closely mimics the structure of trans-cinnamic acid. The CYP73A subfamily of plant P450s catalyzes trans-cinnamic acid 4-hydroxylation, the second step of the general phenylpropanoid pathway. We show that when incubated in vitro with yeast-expressed CYP73A1, PA behaves as a potent mechanism-based and quasi-irreversible inactivator of trans-cinnamate 4-hydroxylase. Inactivation requires NADPH, is time dependent and saturable (KI = 17 &mgr;M, kinact = 0.064 min-1), and results from the formation of a stable metabolite-P450 complex absorbing at 427 nm. The formation of this complex is reversible with substrate or other strong ligands of the enzyme. In plant microsomes PA seems to selectively inactivate the CYP73A P450 subpopulation. It does not form detectable complexes with other recombinant plant P450 enzymes. In vivo PA induces a sharp decrease in 4-coumaric acid concomitant to cinnamic acid accumulation in an elicited tobacco (Nicotiana tabacum) cell suspension. It also strongly decreases the formation of scopoletin in tobacco leaves infected with tobacco mosaic virus.

摘要

胡椒酸(PA)是一种带有亚甲二氧基官能团的天然分子,其结构与反式肉桂酸极为相似。植物P450的CYP73A亚家族催化反式肉桂酸4-羟基化反应,这是苯丙烷类通用途径的第二步。我们发现,当在体外与酵母表达的CYP73A1一起孵育时,PA可作为反式肉桂酸4-羟化酶的一种强效的基于机制的准不可逆失活剂。失活需要NADPH,具有时间依赖性且可饱和(KI = 17 μM,kinact = 0.064 min-1),是由形成在427 nm处有吸收的稳定代谢物-P450复合物所致。该复合物的形成可被底物或该酶的其他强配体逆转。在植物微粒体中,PA似乎能选择性地使CYP73A P450亚群失活。它与其他重组植物P450酶不会形成可检测到的复合物。在体内,PA会使诱导后的烟草(Nicotiana tabacum)细胞悬浮液中的4-香豆酸急剧减少,同时伴随着肉桂酸的积累。它还会强烈降低感染烟草花叶病毒的烟草叶片中莨菪亭的形成。

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