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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Xanthine oxidase-product complexes probe the importance of substrate/product orientation along the reaction coordinate
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Xanthine oxidase-product complexes probe the importance of substrate/product orientation along the reaction coordinate

机译:黄嘌呤氧化酶 - 产物复合物探讨沿反应坐标的基材/产品取向的重要性

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摘要

A combination of reaction coordinate computations, resonance Raman spectroscopy, spectroscopic computations, and hydrogen bonding investigations have been used to understand the importance of substrate orientation along the xanthine oxidase reaction coordinate. Specifically, 4-thiolumazine and 2,4-dithiolumazine have been used as reducing substrates for xanthine oxidase to form stable enzyme-product charge transfer complexes suitable for spectroscopic study. Laser excitation into the near-infrared molybdenum-to-product charge transfer band produces rR enhancement patterns in the high frequency in-plane stretching region that directly probe the nature of this MLCT transition and provide insight into the effects of electron redistribution along the reaction coordinate between the transition state and the stable enzyme-product intermediate, including the role of the covalent Mo-O-C linkage in facilitating this process. The results clearly show that specific Mo-substrate orientations allow for enhanced electronic coupling and facilitate strong hydrogen bonding interactions with amino acid residues in the substrate binding pocket.
机译:反应坐标计算,共振拉曼光谱,光谱计算和氢键调查的组合已被用于理解沿黄嘌呤氧化酶反应坐标的基材取向的重要性。具体地,4-硫嗪和2,4-二硫嗪已被用作用于黄嘌呤氧化酶的还原基质,以形成适合于光谱研究的稳定酶 - 产物电荷转移复合物。激光激发到近红外钼 - 产品电荷转移带产生高频在平面内拉伸区域中的RR增强图案,直接探测该MLCT过渡的性质,并提供了沿着反应坐标沿电子再分配的效果的洞察在过渡状态和稳定的酶 - 产物中间体之间,包括共价Mo-oc连杆的作用促进该方法。结果清楚地表明,特定的Mo衬底取向允许增强的电子偶联,并促进与底物结合口袋中的氨基酸残基的强氢键相互作用。

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