首页> 外文OA文献 >Polyphenol Oxidation by Vicia faba Chloroplast Membranes: STUDIES ON THE LATENT MEMBRANE-BOUND POLYPHENOL OXIDASE AND ON THE MECHANISM 1 OF PHOTOCHEMICAL POLYPHENOL OXIDATION
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Polyphenol Oxidation by Vicia faba Chloroplast Membranes: STUDIES ON THE LATENT MEMBRANE-BOUND POLYPHENOL OXIDASE AND ON THE MECHANISM 1 OF PHOTOCHEMICAL POLYPHENOL OXIDATION

机译:蚕豆叶绿体膜对多酚的氧化作用:膜结合型多酚氧化酶的研究及光化学多酚氧化的机理1

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摘要

The mechanism whereby light effects polyphenol oxidation was examined with Vicia faba chloroplast membranes known to contain a bound latent polyphenol oxidase. Results obtained with the inhibitors 3-(3′,4′-dichlorophenyl)-1,1-dimethylurea (DCMU) and 2,5-dibromo-3-methyl-6-idopropyl-p-benzoquinone (DBMIB) indicated an involvement of the non-cyclic electron transport pathway in the light-dependent oxidation of polyphenols, such as dihydroxyphenylalanine (DOPA). Further evidence was provided by experiments in which (a) DOPA replaced H2O as electron donor for the photoreduction of NADP, (b) NADP replaced O2 as electron acceptor in the photochemical oxidation of DOPA, and (c) the variable fluorescence associated with photosystem II was increased by DOPA. The photochemical oxidation of DOPA by V. faba chloroplast membranes was insensitive to KCN and to antibodies against purified latent polyphenol oxidase. The results are consistent with the conclusion that the light-dependent oxidation of polyphenols by V. faba chloroplast membranes is achieved independently of the latent membrane-bound polyphenol oxidase. Electrons derived from polyphenols seem to enter the noncyclic electron transport chain on the oxidizing side of photosystem II and to react with O2 at an unidentified site on the photosystem I side of the DCMU/DBMIB blocks.
机译:用已知含有结合的潜在多酚氧化酶的蚕豆叶绿体膜检查了光效应多酚氧化的机理。用抑制剂3-(3',4'-二氯苯基)-1,1-二甲基脲(DCMU)和2,5-二溴-3-甲基-6-氨基丙基-对苯醌(DBMIB)获得的结果表明多酚(如二羟基苯丙氨酸(DOPA))的光依赖性氧化中的非环状电子传输途径。实验提供了进一步的证据,其中(a)DOPA取代H2O作为电子供体,用于NADP的光还原;(b)NADP取代O2作为DOPA的光化学氧化中的电子受体;(c)与光系统II相关的可变荧光由DOPA增加。蚕豆叶绿体膜对DOPA的光化学氧化对KCN和抗纯化的潜在多酚氧化酶的抗体不敏感。该结果与以下结论是一致的:蚕豆叶绿体膜可实现多酚的光依赖性氧化,而与潜在的膜结合多酚氧化酶无关。衍生自多酚的电子似乎在光系统II的氧化侧进入非环状电子传输链,并在DCMU / DBMIB嵌段的光系统I侧的未确定位置与O2反应。

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