首页> 外文期刊>International Journal of Molecular Sciences >High-Resolution Crystal Structure of Chloroplastic Ribose-5-Phosphate Isomerase from Chlamydomonas reinhardtii —An Enzyme Involved in the Photosynthetic Calvin-Benson Cycle
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High-Resolution Crystal Structure of Chloroplastic Ribose-5-Phosphate Isomerase from Chlamydomonas reinhardtii —An Enzyme Involved in the Photosynthetic Calvin-Benson Cycle

机译:来自Chlamydomonas Reinhardtii-an的高分辨率晶体结构的氯塑料核糖-5-磷酸异构酶参与光合钙素循环

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The Calvin–Benson cycle is the key metabolic pathway of photosynthesis responsible for carbon fixation and relies on eleven conserved enzymes. Ribose-5-phosphate isomerase (RPI) isomerizes ribose-5-phosphate into ribulose-5-phosphate and contributes to the regeneration of the Rubisco substrate. Plant RPI is the target of diverse post-translational modifications including phosphorylation and thiol-based modifications to presumably adjust its activity to the photosynthetic electron flow. Here, we describe the first experimental structure of a photosynthetic RPI at 1.4 ? resolution. Our structure confirms the composition of the catalytic pocket of the enzyme. We describe the homo-dimeric state of the protein that we observed in the crystal and in solution. We also map the positions of previously reported post-translational modifications and propose mechanisms by which they may impact the catalytic parameters. The structural data will inform the biochemical modeling of photosynthesis.
机译:Calvin-Benson循环是光合作用的关键代谢途径,负责碳固定并依赖于11个保守酶。核糖-5-磷酸异构酶(RPI)异构化核糖-5-磷酸盐到核糖糖 - 5-磷酸盐中,有助于Rubisco衬底的再生。植物RPI是多种翻译后修饰的目标,包括磷酸化和基于硫醇的修饰,以推测到其对光合电子流的活性。在这里,我们描述了1.4的光合RPI的第一个实验结构?解析度。我们的结构证实了酶的催化口袋的组成。我们描述了我们在晶体和溶液中观察到的蛋白质的同源二聚体状态。我们还将先前报告的翻译后修改的位置映射,并提出了它们可能影响催化参数的机制。结构数据将通知生化光合作用的模型。

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