Graduate School of Biomedical Sciences, Nagasaki University, 1-14 Bunkyo-machi, Nagasaki, 852-8521, Japan.
Chem Asian J. 2021 Jul 5;16(13):1735-1740. doi: 10.1002/asia.202100380. Epub 2021 May 25.
Hexahydroxydiphenoyl (HHDP) and dehydrohexahydroxydiphenoyl (DHHDP) groups are the major acyl components of ellagitannins, which are polyphenols whose biosynthesis have attracted considerable attention; however, the mechanisms of the production of HHDP and DHHDP in the ellagitannin biosynthesis have not been clarified. With the aim of elucidating such a mechanism, this study investigates the CuCl -mediated oxidation of simple galloyl derivatives in an aqueous medium. It is shown that the oxidation of methyl gallate affords a DHHDP-type dimer, whose reduction with Na S O yields an HHDP-type dimer. However, the oxidation of the HHDP-type product over CuCl does not afford the parent DHHDP ester. The oxidation of 1,4-butanediol digallate under the same conditions produces a DHHDP-type product via the intramolecular coupling of galloyl groups. These results strongly suggest that the DHHDP group is the initial product of the oxidative coupling of two galloyl groups in the ellagitannin biosynthesis, and subsequent reductive metabolism affords HHDP esters.
六羟基二苯甲酰基(HHDP)和脱氢六羟基二苯甲酰基(DHHDP)是鞣花单宁的主要酰基成分,鞣花单宁是一类多酚,其生物合成引起了相当大的关注;然而,鞣花单宁生物合成中 HHDP 和 DHHDP 的产生机制尚未阐明。本研究旨在阐明这一机制,研究了在水介质中简单没食子酰基衍生物在 CuCl 介导下的氧化。结果表明,没食子酸甲酯氧化生成 DHHDP 型二聚体,其用 Na2S2O4还原生成 HHDP 型二聚体。然而,在 CuCl 上氧化 HHDP 型产物并不能得到母体 DHHDP 酯。在相同条件下,1,4-丁二醇二没食子酸酯氧化生成 DHHDP 型产物,这是通过没食子酰基的分子内偶联产生的。这些结果强烈表明,在鞣花单宁生物合成中,两个没食子酰基的氧化偶联的初始产物是 DHHDP 基团,随后的还原代谢生成 HHDP 酯。