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Structural insight into mechanisms for dynamic regulation of PKM2

机译:对PKM2动态调节机制的结构见解

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Pyruvate kinase isoform M2 (PKM2) converts phosphoenolpyruvate (PEP) to pyruvate and plays an important role in cancer metabolism. Here, we show that post-translational modifications and a patient-derived mutation regulate pyruvate kinase activity of PKM2 through modulating the conformation of the PKM2 tetramer. We determined crystal structures of human PKM2 mutants and proposed a “seesaw” model to illustrate conformational changes between an inactive T-state and an active R-state tetramers of PKM2. Biochemical and structural analyses demonstrate that PKM2Y105E (phosphorylation mimic of Y105) decreases pyruvate kinase activity by inhibiting FBP (fructose 1,6-bisphosphate)-induced R-state formation, and PKM2K305Q (acetylation mimic of K305) abolishes the activity by hindering tetramer formation. K422R, a patient-derived mutation of PKM2, favors a stable, inactive T-state tetramer because of strong intermolecular interactions. Our study reveals the mechanism for dynamic regulation of PKM2 by post-translational modifications and a patient-derived mutation and provides a structural basis for further investigation of other modifications and mutations of PKM2 yet to be discovered
机译:丙酮酸激酶同工型M2(PKM2)将磷酸烯醇丙酮酸(PEP)转化为丙酮酸,并在癌症代谢中起重要作用。在这里,我们显示翻译后修饰和患者衍生的突变通过调节PKM2四聚体的构象来调节PKM2的丙酮酸激酶活性。我们确定了人类PKM2突变体的晶体结构,并提出了一个“跷跷板”模型来说明PKM2的非活性T状态和活性R状态四聚体之间的构象变化。生化和结构分析表明,PKM2 Y105E (Y105的磷酸化模拟物)通过抑制FBP(果糖1,6-双磷酸酯)诱导的R状态形成而降低了丙酮酸激酶活性,而PKM2 K305Q < (K305的乙酰化模拟物)通过阻碍四聚体形成而消除了活性。 K422R是患者衍生的PKM2突变,由于其强烈的分子间相互作用,因此倾向于稳定,无活性的T状态四聚体。我们的研究揭示了通过翻译后修饰和患者衍生的突变动态调节PKM2的机制,并为进一步研究尚未发现的PKM2的其他修饰和突变提供了结构基础

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