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首页> 外文期刊>International journal of mass spectrometry >Hydrogen/deuterium exchange mass spectrometry for characterizing phosphoenolpyruvate-induced structural transitions in Mycobacterium tuberculosis 5-enolpyruvylshikimate-3-phosphate synthase (EC 2.5.1.1)
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Hydrogen/deuterium exchange mass spectrometry for characterizing phosphoenolpyruvate-induced structural transitions in Mycobacterium tuberculosis 5-enolpyruvylshikimate-3-phosphate synthase (EC 2.5.1.1)

机译:氢/氘交换质谱用于表征结核分枝杆菌5-烯醇丙酮酸shi酸酯-3-磷酸合酶中磷酸烯醇丙酮酸引起的结构转变(EC 2.5.1.1)

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摘要

The enzyme 5-enolpyruvylshikimate-3-phosphate synthase (EPSPS) catalyzes the reaction between shikimate-3-phosphate (S3P) and phosphoenolpyruvate (PEP) to form 5-enolpyruvylshikimate-3-phosphate, an intermediate in the shikimate pathway, which leads to the biosynthesis of aromatic amino acids. The two-domain structure of EPSPS is formed by a 6-fold replication of protein folding units, each one formed by two parallel α-helices and four-stranded β-sheets. The apo form of the enzyme exists in an open conformation, but when bound to PEP, the EPSPS conformation is closed. The H/D exchange properties of EPSPS from Mycobacterium tuberculosis (Mt) were studied for both enzyme conformations using ESI-mass spectrometry. We mapped the identified H/D exchange sites on the 3D structure. H/D exchange revealed that the enzyme undergoes extensive conformational change upon forming the PEP complex, which seem to favor solvent access at domain 1, while they partially prevent solvent access to domain 2. This may be part of the catalysis mechanism of the enzyme, stabilizing S3P binding and inducing cleft closure, which controls the entrance of substrate molecules.
机译:5-烯丙基丙酮酸shi草酸酯-3-磷酸合成酶(EPSPS)催化sh草酸酯-3-磷酸酯(S3P)和磷酸烯醇丙酮酸酯(PEP)之间的反应形成5-烯醇丙酮酸shi草酸酯-3-磷酸酯,这是the草酸酯途径中的中间体芳香族氨基酸的生物合成。 EPSPS的两结构域结构是由蛋白质折叠单元的6倍复制形成的,每个折叠单元由两个平行的α螺旋和四链β-折叠形成。酶的载脂蛋白形式以开放构象存在,但是当与PEP结合时,EPSPS构象是封闭的。使用ESI-质谱法研究了结核分枝杆菌(Mt)的EPSPS的H / D交换特性。我们在3D结构上映射了已识别的H / D交换站点。 H / D交换显示,该酶在形成PEP配合物时经历了广泛的构象变化,这似乎有利于在结构域1处的溶剂访问,而它们部分阻止了溶剂对结构域2的访问。这可能是该酶催化机制的一部分,稳定S3P结合并诱导裂缝闭合,从而控制底物分子的进入。

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