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Structural basis for enzymatic photocatalysis in chlorophyll biosynthesis

机译:叶绿素生物合成中酶促光催化的结构基础

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The enzyme protochlorophyllide oxidoreductase (POR) catalyses a light-dependent step in chlorophyll biosynthesis that is essential to photosynthesis and, ultimately, all life on Earth(1-3). POR, which is one of three known light-dependent enzymes(4,5), catalyses reduction of the photosensitizer and substrate protochlorophyllide to form the pigment chlorophyllide. Despite its biological importance, the structural basis for POR photocatalysis has remained unknown. Here we report crystal structures of cyanobacterial PORs from Thermosynechococcus elongatus and Synechocystis sp. in their free forms, and in complex with the nicotinamide coenzyme. Our structural models and simulations of the ternary protochlorophyllide-NADPH-POR complex identify multiple interactions in the POR active site that are important for protochlorophyllide binding, photosensitization and photochemical conversion to chlorophyllide. We demonstrate the importance of active-site architecture and protochlorophyllide structure in driving POR photochemistry in experiments using POR variants and protochlorophyllide analogues. These studies reveal how the POR active site facilitates light-driven reduction of protochlorophyllide by localized hydride transfer from NADPH and long-range proton transfer along structurally defined proton-transfer pathways.
机译:原生叶绿素氧化还原酶(POR)催化叶绿素生物合成中的光依赖性步骤,这是光合作用以及最终地球上所有生命必不可少的(1-3)。 POR是三种已知的光依赖性酶之一(4,5),它催化光敏剂和底物原叶绿素的还原,形成色素叶绿素。尽管其生物学重要性,POR光催化的结构基础仍然未知。在这里,我们报告从嗜热嗜热球菌和Synechocystis sp的蓝藻POR的晶体结构。呈游离形式,并与烟酰胺辅酶复合。我们的三元原叶绿素内酯-NADPH-POR复合物的结构模型和模拟确定了POR活性位点中的多种相互作用,这对于原叶绿素内酯的结合,光敏化和光化学转化为叶绿素很重要。我们证明了使用POR变体和原叶绿素类似物进行实验时,活性位点结构和原叶绿素结构在驱动POR光化学中的重要性。这些研究揭示了POR活性位点如何通过从NADPH进行的局部氢化物转移和沿结构定义的质子转移途径的远距离质子转移促进光驱动的原叶绿素减少。

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