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首页> 外文期刊>The FEBS journal >Complete catalytic cycle of cofactor-independent phosphoglycerate mutase involves a spring-loaded mechanism
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Complete catalytic cycle of cofactor-independent phosphoglycerate mutase involves a spring-loaded mechanism

机译:辅因子非依赖性磷酸甘油酸变位酶的完整催化循环涉及弹簧加载机制

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摘要

Cofactor-independent phosphoglycerate mutase (iPGM), an important enzyme in glycolysis and gluconeogenesis, catalyses the isomerization of 2- and 3-phosphoglycerates by an Mn2+-dependent phospho-transfer mechanism via a phospho-enzyme intermediate. Crystal structures of bi-domain iPGM from Staphylococcusaureus, together with substrate-bound forms, have revealed a new conformation of the enzyme, representing an intermediate state of domain movement. The substrate-binding site and the catalytic site are present in two distinct domains in the intermediate form. X-ray crystallography complemented by simulated dynamics has enabled delineation of the complete catalytic cycle, which includes binding of the substrate, followed by its positioning into the catalytic site, phospho-transfer and finally product release. The present work describes a novel mechanism of domain movement controlled by a hydrophobic patch that is exposed on domain closure and acts like a spring to keep the protein in open conformation. Domain closing occurs after substrate binding, and is essential for phospho-transfer, whereas the open conformation is a prerequisite for efficient substrate binding and product dissociation. A new model of catalysis has been proposed by correlating the hinge-bending motion with the phospho-transfer mechanism.
机译:不依赖辅因子的磷酸甘油酸突变酶(iPGM)是糖酵解和糖异生中的重要酶,通过磷酸酶中间体通过Mn2 +依赖性磷酸转移机制催化2-和3-磷酸甘油酸酯的异构化。来自葡萄球菌的双结构域iPGM的晶体结构,以及与基质结合的形式,已揭示出该酶的新构象,代表结构域运动的中间状态。底物结合位点和催化位点以中间形式存在于两个不同的结构域中。 X射线晶体学和模拟动力学相辅相成,可以描绘出完整的催化循环,包括与底物的结合,然后将其定位到催化位点,磷酸转移并最终释放出产品。本工作描述了由疏水性斑块控制的结构域运动的新机制,该疏水性斑块暴露于结构域闭合并且像弹簧一样使蛋白质保持开放构象。域封闭发生在底物结合之后,并且对于磷酸转移是必不可少的,而开放构象是有效底物结合和产物解离的前提。通过将铰链弯曲运动与磷酸转移机制相关联,提出了一种新的催化模型。

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