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Analysis of UDP-D-Apiose/UDP-D-Xylose Synthase-Catalyzed Conversion of UDP-D-Apiose Phosphonate to UDP-D-Xylose Phosphonate: Implications for a Retroaldol-Aldol Mechanism

机译:UDP-D-Apiose / UDP-D-D-Xylose合酶催化转化对UDP-D-木糖膦酸酯的UDP-D-Apiose / UDP-D-D-D-D-D-D-D-D-D-D-D-D-D-D-膦酸酯的分析:对含紫罗醇 - 醛醇机制的影响

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摘要

UDP-D-apiose/UDP-D-xylose synthase (AXS) catalyzes the conversion of UDP-D-glucuronic acid to UDP-D-apiose and UDP-D-xylose. An acetyl-protected phosphonate analogue of UDP-D-apiose was synthesized and used in an in situ HPLC assay to demonstrate, for the first time, the ability of AXS to interconvert the two reaction products. Density functional theory calculations provided insight into the energetics of this process and the apparent inability of AXS to catalyze the conversion of UDP-D-xylose to UDP-D-apiose. The data suggest that this observation is unlikely to be due to an unfavorable equilibrium, but rather substrate inhibition by the most stable chair conformation of UDP-D-xylose. The detection of xylose cyclic phosphonate as the turnover product uncovers significant new detail about the AXS-catalyzed reaction and supports the proposed retroaldol-aldol mechanism of catalysis.
机译:UDP-D-apiose / UDP-D-木糖合酶(AXS)催化UDP-D-葡萄糖醛酸向UDP-D-木糖和UDP-D-木糖的转化。合成了UDP-D-apiose的乙酰基保护的膦酸酯类似物,并将其用于原位HPLC分析中,以首次证明AXS能够相互转化这两种反应产物。密度泛函理论计算提供了对该过程的能量学以及AXS明显无法催化UDP-D-木糖向UDP-D-apiose转化的了解。数据表明,这种观察不太可能是由于不利的平衡,而是由于最稳定的UDP-D-木糖椅构型对底物的抑制。作为周转产物的木糖环状膦酸酯的检测揭示了有关AXS催化反应的重要新细节,并支持提出的逆醛醇-醛醇催化机理。

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