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没食子单宁和鞣花单宁生物合成的酶学

Enzymology of gallotannin and ellagitannin biosynthesis.

作者信息

Niemetz Ruth, Gross Georg G

机构信息

Molekulare Botanik, Universität Ulm, D-89069 Ulm, Germany.

出版信息

Phytochemistry. 2005 Sep;66(17):2001-11. doi: 10.1016/j.phytochem.2005.01.009.

Abstract

Gallotannins and ellagitannins, the two subclasses of hydrolyzable tannins, are derivatives of 1,2,3,4,6-penta-O-galloyl-beta-D-glucopyranose. Enzyme studies with extracts from oak leaves (Quercus robur, syn. Quercus pedunculata; Quercus rubra) and from staghorn sumac (Rhus typhina) revealed that this pivotal intermediate is synthesized from beta-glucogallin (1-O-galloyl-beta-D-glucopyranose) by a series of strictly position-specific galloylation steps, affording so-called 'simple' gallotannins, i.e., mono- to pentagallyoylglucose esters. Besides its role as starter molecule, beta-glucogallin was also recognized as the principal energy-rich acyl donor required in these transformations. Subsequent pathways to 'complex' gallotannins have recently been elucidated by the isolation of five different enzymes from sumac leaves that were purified to apparent homogeneity. They catalyzed the beta-glucogallin-dependent galloylation of pentagallyoylglucose to a variety of hexa- and heptagalloylglucoses, plus several not yet characterized higher substituted analogous galloylglucoses. With respect to the biosynthesis of ellagitannins, postulates that had been formulated already decades ago were proven by the purification of a new laccase-like phenol oxidase from leaves of fringe cups (Tellima grandiflora) that regio- and stereospecifically oxidized pentagallyoylglucose to the monomeric ellagitannin, tellimagrandin II. This compound was further oxidized by a similar but different laccase-like oxidase to yield a dimeric ellagitannin, cornusiin E.

摘要

棓单宁和鞣花单宁是可水解单宁的两个亚类,是1,2,3,4,6 - 五 - O - 没食子酰基 - β - D - 吡喃葡萄糖的衍生物。对橡树(夏栎,同物异名有柄栎;红栎)和鹿角漆树(盐肤木)叶片提取物进行的酶学研究表明,这个关键中间体是由β - 葡糖没食子酸(1 - O - 没食子酰基 - β - D - 吡喃葡萄糖)通过一系列严格的位置特异性没食子酰化步骤合成的,生成所谓的“简单”棓单宁,即单至五没食子酰葡萄糖酯。除了作为起始分子的作用外,β - 葡糖没食子酸还被认为是这些转化过程中所需的主要富含能量的酰基供体。最近,通过从漆树叶片中分离出五种不同的酶并将其纯化至表观均一性,阐明了“复杂”棓单宁的后续合成途径。它们催化五没食子酰葡萄糖依赖于β - 葡糖没食子酸的没食子酰化反应,生成多种六没食子酰葡萄糖和七没食子酰葡萄糖,以及几种尚未表征的更高取代度的类似没食子酰葡萄糖。关于鞣花单宁的生物合成,几十年前提出的假设通过从银钟花(大花银钟花)叶片中纯化出一种新的漆酶样酚氧化酶得到了证实,该酶区域和立体特异性地将五没食子酰葡萄糖氧化为单体鞣花单宁tellimagrandin II。该化合物被一种类似但不同的漆酶样氧化酶进一步氧化,生成二聚体鞣花单宁cornusiin E。

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