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Molecular mechanism for oxygenation pathway in Rubisco. Mapping transition structures and intermediates for model compounds of the substrate system

机译:Rubisco氧化途径的分子机理。绘制底物系统模型化合物的过渡结构和中间体

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Transition structures and molecular intermediates related to the molecular mechanism of the reaction catalyzed by Rubisco have been theoretically characterized for different steps in the dioxygen fixation at the C2 center, hydrolysis and C2-C3 bond breaking. Hydroxypropanone is used as a minimal model for the substrate D-ribulose-1,5-bisphosphate, while ab initio SCF MO calculations at a 6-31G** basis set level of theory were used. The set of transition structures map out all aspects of the reaction pathway for the real system without reliance on external acidic or basic sidechain residues, these latter may play a key role at a kinetic level not only stabilizing intramolecular transition structures. The present results represent a basic model for a simpler mechanistic alternative. (C) 1998 Elsevier Science B.V. All rights reserved. [References: 35]
机译:从理论上说,Rubisco催化的反应的分子机理有关的过渡结构和分子中间体,是通过在C2中心固定双氧,水解和C2-C3键断裂的不同步骤进行表征的。羟丙烷酮用作底物D-核糖-1,5-双磷酸酯的最小模型,同时使用了理论值在6-31G **范围内的从头算起SCF MO的计算。这套过渡结构可绘制出真实系统反应路径的所有方面,而无需依赖外部酸性或碱性侧链残基,后者在动力学水平上可能起关键作用,不仅稳定了分子内过渡结构。目前的结果代表了一种更简单的机械替代方案的基本模型。 (C)1998 Elsevier Science B.V.保留所有权利。 [参考:35]

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