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[细胞色素P450酶在某些植物次生代谢产物生物合成中的作用]

[Cytochrome P450 enzymes in biosyntheses of some plant secondary metabolites].

作者信息

Inoue Kenichiro

机构信息

Gifu Pharmaceutical University, Gifu 502-8585, Japan.

出版信息

Yakugaku Zasshi. 2005 Jan;125(1):31-49. doi: 10.1248/yakushi.125.31.

Abstract

Secologanin, a secoiridoid glucoside, is a pivotal terpenoid intermediate in the biosynthesis of biologically active monoterpenoid indole alkaloids such as reserpine, ajmaline, and vinblastine which are biosynthesized via strictosidine, an alkaloidal glucoside, formed from secologanin and tryptamine. In secologanin biosynthesis, the oxidative cleavage process of loganin to secologanin and the hydroxylation of 7-deoxyloganin to loganin have remained unknown enzymologically and mechanistically. Cornoside is a unique glucoside with 4-hydroxy-2,5-cyclohexadien-1-one (benzoquinol) ring and is widespread in families such as Cornaceae, Oleaceae, and Scrophulariaceae but its biosynthesis, especially the oxidative process, remain to be investigated. Shikonin is a red naphthazarin pigment derived from the roots of Lithospermum erythorhizon and produced biotechnologically by cell cultures. Its biosynthesis including the production regulation mechanism has been investigated in detail. However, the naphthazarin ring formation process, probably starting with the hydroxylation of the side chain of geranylhydroquinone, a key intermediate at the late stage of shikonin biosynthesis, remained unknown. In the present review, cytochrome P450 monooxygenases involved in the biosyntheses of three structurally and biosynthetically interesting compounds, secologanin, cornoside, and shikonin, a described together with the results of previous and recent biosynthetic studies. The biosyntheses of related compounds are also discussed.

摘要

裂环马钱子苷是一种裂环环烯醚萜苷,是生物活性单萜吲哚生物碱(如利血平、阿吗灵和长春碱)生物合成中的关键萜类中间体,这些生物碱通过裂环马钱子苷(一种由裂环马钱子苷和色胺形成的生物碱苷)生物合成。在裂环马钱子苷的生物合成中,马钱子苷氧化裂解为裂环马钱子苷的过程以及7-脱氧马钱子苷羟基化为马钱子苷的过程在酶学和机制上仍然未知。山茱萸苷是一种具有4-羟基-2,5-环己二烯-1-酮(苯醌)环的独特糖苷,广泛存在于山茱萸科、木犀科和玄参科等植物科中,但其生物合成,尤其是氧化过程,仍有待研究。紫草素是一种源自紫草根部的红色萘并二蒽酮色素,通过细胞培养生物技术生产。其生物合成包括生产调控机制已被详细研究。然而,萘并二蒽酮环的形成过程,可能从香叶基对苯二酚侧链的羟基化开始,香叶基对苯二酚是紫草素生物合成后期的关键中间体,仍然未知。在本综述中,参与裂环马钱子苷、山茱萸苷和紫草素这三种结构和生物合成上有趣的化合物生物合成的细胞色素P450单加氧酶与之前和最近的生物合成研究结果一起进行了描述。还讨论了相关化合物的生物合成。

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