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首页> 外文期刊>Angewandte Chemie >A Native Ternary Complex Trapped in a Crystal Reveals the Catalytic Mechanism of a Retaining Glycosyltransferase
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A Native Ternary Complex Trapped in a Crystal Reveals the Catalytic Mechanism of a Retaining Glycosyltransferase

机译:困在晶体中的天然三元复合物揭示了保留糖基转移酶的催化机制。

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摘要

Glycosyltransferases (GTs) comprise a prominent family of enzymes that play critical roles in a variety of cellular processes, including cell signaling, cell development, and host-pathogen interactions. Glycosyl transfer can proceed with either inversion or retention of the anomeric configuration with respect to the reaction substrates and products. The elucidation of the catalytic mechanism of retaining GTs remains a major challenge. A native ternary complex of a GT in a productive mode for catalysis is reported, that of the retaining glucosyl-3-phosphoglycerate synthase GpgS from M. tuberculosis in the presence of the sugar donor UDP-Glc, the acceptor substrate phosphoglycerate, and the divalent cation cofactor. Through a combination of structural, chemical, enzymatic, molecular dynamics, and quantum-mechanics/molecular-mechanics (QM/MM) calculations, the catalytic mechanism was unraveled, thereby providing a strong experimental support for a front-side substrate-assisted SNi-type reaction.
机译:糖基转移酶(GTs)包含一个重要的酶家族,在各种细胞过程中起关键作用,包括细胞信号传导,细胞发育和宿主-病原体相互作用。相对于反应底物和产物,糖基转移可以以异头构型的转化或保留进行。阐明保留GT的催化机制仍然是一个重大挑战。报道了在生产模式下用于催化的GT的天然三元复合物,在糖供体UDP-Glc,受体底物磷酸甘油酸酯和二价存在的情况下,保留了来自结核分枝杆菌的葡萄糖基-3-磷酸甘油酸合酶GpgS。阳离子辅助因子。通过结构,化学,酶促,分子动力学和量子力学/分子力学(QM / MM)计算的结合,揭示了催化机理,从而为正面底物辅助SNi-类型反应。

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