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首页> 外文期刊>Journal of Molecular Biology >Evidence supporting a cis-enediol-based mechanism for Pyrococcus furiosus phosphoglucose isomerase.
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Evidence supporting a cis-enediol-based mechanism for Pyrococcus furiosus phosphoglucose isomerase.

机译:证据支持激烈热球菌磷酸葡萄糖异构酶的基于顺式乙二醇的机制。

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摘要

The enzymatic aldose ketose isomerisation of glucose and fructose sugars involves the transfer of a hydrogen between their C1 and C2 carbon atoms and, in principle, can proceed through either a direct hydride shift or via a cis-enediol intermediate. Pyrococcus furiosus phosphoglucose isomerase (PfPGI), an archaeal metalloenzyme, which catalyses the interconversion of glucose 6-phosphate and fructose 6-phosphate, has been suggested to operate via a hydride shift mechanism. In contrast, the structurally distinct PGIs of eukaryotic or bacterial origin are thought to catalyse isomerisation via a cis-enediol intermediate. We have shown by NMR that hydrogen exchange between substrate and solvent occurs during the reaction catalysed by PfPGI eliminating the possibility of a hydride-shift-based mechanism. In addition, kinetic measurements on this enzyme have shown that 5-phospho-d-arabinonohydroxamate, a stable analogue of the putative cis-enediol intermediate, is the most potent inhibitor of the enzyme yet discovered. Furthermore, determination and analysis of crystal structures of PfPGI with bound zinc and the substrate F6P, and with a number of competitive inhibitors, and EPR analysis of the coordination of the metal ion within PfPGI, have suggested that a cis-enediol intermediate-based mechanism is used by PfPGI with Glu97 acting as the catalytic base responsible for isomerisation.
机译:葡萄糖和果糖糖的酶促醛糖酮糖异构化涉及氢在其C1和C2碳原子之间的转移,并且原则上可以通过直接氢化物转移或通过顺式-烯二醇中间体进行。激烈热球菌磷酸葡萄糖异构酶(PfPGI)是一种古细菌金属酶,催化葡萄糖6-磷酸葡萄糖和果糖6-磷酸的相互转化,已被证明是通过氢化物转移机制起作用的。相反,认为真核或细菌来源的结构上不同的PGI通过顺式-烯二醇中间体催化异构化。通过NMR我们已经表明,在PfPGI催化的反应过程中,在底物和溶剂之间发生了氢交换,从而消除了基于氢化物转移的机理。另外,对该酶的动力学测量表明,5-磷酸-d-阿拉伯糖基异羟肟酸酯是公认的顺式-烯二醇中间体的稳定类似物,是迄今发现的最有效的酶抑制剂。此外,对具有结合的锌和底物F6P以及多种竞争性抑制剂的PfPGI晶体结构的测定和分析,以及对PfPGI中金属离子配位的EPR分析表明,基于顺式-烯二醇中间体的机理由PfPGI使用,Glu97用作负责异构化的催化碱。

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