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首页> 外文期刊>The biochemical journal >Purification and kinetic analysis of pea (Pisum sativum L.) NADPH:protochlorophyllide oxidoreductase expressed as a fusion with maltose-binding protein in Escherichia coli
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Purification and kinetic analysis of pea (Pisum sativum L.) NADPH:protochlorophyllide oxidoreductase expressed as a fusion with maltose-binding protein in Escherichia coli

机译:豌豆(Pisum sativum L.)NADPH:原叶绿素内酯氧化还原酶与麦芽糖结合蛋白融合表达的纯化和动力学分析

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摘要

pNADPH:protochlorophyllide oxidoreductase (POR) catalyses the light-dependent reduction of protochlorophyllide to chlorophyllide, a key reaction in the chlorophyll biosynthetic pathway. To facilitate structure–function studies, POR from pea (iPisum sativum/i L.) has been overexpressed in iEscherichia coli/i as a fusion with maltose-binding protein (MBP) at 5–10% of the total soluble cell protein. The fusion protein (MBP–POR) has been purified to greater than 90% homogeneity by a two-step affinity-purification procedure. This represents the first successful overexpression and purification of a plant POR. MBP–POR was found to be active, and the kinetic properties were determined using a continuous assay in which the rate of chlorophyllide formation was measured. The iV/isubmax/sub was 20.6± 0.9 nmol·minsup-1/sup·mgsup-1/sup and the iK/isubm/sub values for NADPH and protochlorophyllide were 8.7±1.9 iμ/iM and 0.27±0.04 iμ/iM respectively. These results represent the first determination of the kinetic properties of a pure POR and the first report on the kinetics of POR from a dicotyledenous plant. The experiments described here demonstrate that the enzyme is not a ‘suicide’ enzyme, and the only components required for catalysis are NADPH, protochlorophyllide and light. Size-exclusion chromatography on a Superose 6 HR column indicated that MBP–POR has a molecular mass of 155 kDa (compared with the molecular mass of 80 kDa estimated by SDS/PAGE), indicating that it behaves as a dimer in solution. This is the first direct determination of the oligomerization state of POR./p
机译:> NADPH:原叶绿素内酯氧化还原酶(POR)催化光依赖的原叶绿素内酯还原为叶绿素,这是叶绿素生物合成途径中的关键反应。为促进结构功能研究,豌豆(Pisum sativum L.)的POR在5s时与麦芽糖结合蛋白(MBP)融合后在大肠杆菌中过表达。可溶性细胞蛋白总量的10%。融合蛋白(MBP–POR)已通过两步亲和纯化程序纯化至90%以上的同质性。这代表了植物POR的首次成功的过表达和纯化。发现MBP–POR具有活性,并使用连续测定法测定动力学特性,其中测定了叶绿素的形成速率。 V max 为20.6±0.9 nmol·min -1 ·mg -1 , K NADPH和原叶绿素的 m 值分别为8.7±1.9 μm和0.27±0.04 μm。这些结果代表了对纯POR动力学特性的首次测定,以及关于双子叶植物POR动力学的首次报道。这里描述的实验证明该酶不是“自杀”酶,催化所需的唯一成分是NADPH,原叶绿素和光。在Superose 6 HR色谱柱上进行的体积排阻色谱分析表明,MBP–POR的分子量为155 kDa(而SDS / PAGE估计为80 kDa的分子量),表明其在溶液中表现为二聚体。这是首次直接确定POR的低聚状态。

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