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首页> 外文期刊>Biochemistry >Conformational Changes in Active and Inactive States of Human PP2C alpha Characterized by Hydrogen/Deuterium Exchange-Mass Spectrometry
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Conformational Changes in Active and Inactive States of Human PP2C alpha Characterized by Hydrogen/Deuterium Exchange-Mass Spectrometry

机译:氢气/氘交换 - 质谱特征的人PP2Cα的活性和非活性状态的构象变化

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摘要

PPM serine/threonine protein phosphatases function in signaling pathways and require millimolar concentrations of Mn2+ or Mg2+ ions for activity. Whereas the crystal structure of human PP2C alpha displayed two tightly bound Mn2+ ions in the active site, recent investigations of PPM phosphatases have characterized the binding of a third, catalytically essential metal ion. The binding of the third Mg2+ to PP2C alpha was reported to have millimolar affinity and to be entropically driven, suggesting it may be structurally and catalytically important. Here, we report the use of hydrogen/deuterium exchange mass spectrometry and molecular dynamics to characterize conformational changes in PP2C alpha between the active and inactive states. In the presence of millimolar concentrations of Mg2+, metal-coordinating residues in the PP2C alpha active site are maintained in a more rigid state over the catalytically relevant time scale of 30-300 s. Submillimolar Mg2+ concentrations or introduction of the D146A mutation increased the conformational mobility in the Flap subdomain and in buttressing helices al and al Residues 192-200, located in the Flap subdomain, exhibited the greatest interplay between effects of Mg2+ concentration and the D146A mutation. Molecular dynamics simulations suggest that the presence of the third metal ion and the D146A mutation each produce distinct conformational realignments in the Flap subdomain. These observations suggest that the binding of Mg2+ to the D146/D239 binding site stabilizes the conformation of the active site and the Flap subdomain.
机译:PPM丝氨酸/苏氨酸蛋白磷酸酶在信号通路中起作用,需要毫米摩尔浓度的Mn2 +或Mg2 +离子进行活性。虽然人PP2Cα的晶体结构在活性位点显示了两个紧密结合的MN2 +离子,但最近的PPM磷酸酶的研究表征了第三,催化必需的金属离子的结合。据报道,第三Mg 2 +至PP2Cα的结合具有毫米橄榄色的亲和力并促进熵驱动,表明它可以在结构上和催化是重要的。在此,我们报告使用氢气/氘交换质谱和分子动力学来表征活性和无活性状态之间的PP2Cα的构象变化。在毫米摩尔浓度的Mg2 +的存在下,PP2Cα活性位点中的金属配位残留物在30-300秒的催化相关的时间标度上保持更刚性的状态。 Demillimolar Mg2 +浓度或D146A突变的浓度增加了襟翼子域内的构象迁移率,并且在位于翼片亚域内的构象迁移率和192-200的支撑螺旋Al和Al残留物中,在襟翼亚域中的效果和D146A突变的效果之间的最大相互作用。分子动力学模拟表明,第三金属离子和D146A突变的存在各自在翼片子域中产生不同的构象重新构建。这些观察结果表明Mg2 +与D146 / d239结合位点的结合稳定了活性位点和翼片亚域的构象。

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