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Redox reactions in the last steps of chlorophyll biosynthesis

机译:叶绿素生物合成的最后一步中的氧化还原反应

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The last steps of chlorophyll biosynthesis are formation of chlorophyllide a (Chlide a) from protochlorophyllide a (Pchlide a), esterification to chlorophyll a (Chl a) and formation of Chl b. Redox reactions are the reduction of ring D (Pchlide ->Chlide), the oxidation of the methyl group at C-7 to a formyl group (Chl a->Chl b), and the reverse reaction, reduction of the formyl group at C-7 to a methyl group (Chl b ->Chl a). We investigated these redox reactions either with the enzymes that were (partially) purified from oat and barley etioplasts or with recombinant enzymes overexpressed in E. coli, Reduction of ring D, catalyzed by NADPH: protochlorophyllide oxidoreductase (POR), requires light. Several modified Pchlide derivatives were applied. The results allow a tentative model for the enzyme mechanism. The oxidation of Chl a derivatives to Chl b compounds with the recombinant chlorophyll a oxidase will be described here for the first time. The in vitro reaction will allow to investigate the requirement for cofactors.
机译:叶绿素生物合成的最后一步是从氯化物A(Pchlide A)的叶绿素A(克隆A)的形成,酯化对叶绿素A(CHL A)和CHL B的形成。氧化还原反应是环D(Pchlide - > Cllide)的还原,C-7的甲基氧化至甲酰基(CHL A-> CHL B),以及反应的反应,C在C处还原甲酰基-7至甲基(CHL B - > CHL A)。我们研究了这些氧化还原反应,其中酶(部分)由燕麦和大麦的牙骨质纯化或在大肠杆菌中过表达的重组酶,通过NADPH催化的环D还原,催化:氧化偶联氧化酶(POR),需要光。应用了几种改性的钯衍生物。结果允许酶机制暂定模型。将CHL衍生物与重组叶绿素氧化酶的CHL A衍生物氧化将首次描述。体外反应将允许研究辅因子的要求。

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