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植物细胞色素P450依赖单加氧酶的分子遗传学分析

MOLECULAR-GENETIC ANALYSIS OF PLANT CYTOCHROME P450-DEPENDENT MONOOXYGENASES.

作者信息

Chapple Clint

机构信息

Department of Biochemistry, Purdue University, West Lafayette, Indiana 47907-1153; e-mail:

出版信息

Annu Rev Plant Physiol Plant Mol Biol. 1998 Jun;49:311-343. doi: 10.1146/annurev.arplant.49.1.311.

Abstract

Cytochrome P450-dependent monooxygenases are a large group of heme-containing enzymes, most of which catalyze NADPH- and O2-dependent hydroxylation reactions. The cloning of plant P450s has been hampered because these membrane-localized proteins are typically present in low abundance and are often unstable to purification. Since the cloning of the first plant P450 gene in 1990, there has been an explosion in the rate at which genes encoding plant P450s have been identified. These successes have largely been the result of advances in purification techniques, as well as the application of alternative methods such as mutant- and PCR-based cloning strategies. The availability of these cloned genes has made possible the analysis of P450 gene regulation and may soon reveal aspects of the evolution of P450s in plants. This new knowledge will significantly improve our understanding of many metabolic pathways and may permit their manipulation in the near future.

摘要

细胞色素P450依赖的单加氧酶是一大类含血红素的酶,其中大多数催化依赖NADPH和O2的羟基化反应。植物P450的克隆一直受到阻碍,因为这些膜定位蛋白通常含量较低,并且在纯化过程中往往不稳定。自1990年第一个植物P450基因克隆以来,编码植物P450的基因的鉴定速度急剧增加。这些成功很大程度上归功于纯化技术的进步,以及突变体和基于PCR的克隆策略等替代方法的应用。这些克隆基因的可用性使得分析P450基因调控成为可能,并且可能很快揭示植物中P450的进化方面。这一新知识将显著提高我们对许多代谢途径的理解,并可能在不久的将来允许对其进行操纵。

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