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半胱氨酸介导的丙酮酸激酶肌肉同工酶 2 抑制的机制和结构见解。

Mechanistic and Structural Insights into Cysteine-Mediated Inhibition of Pyruvate Kinase Muscle Isoform 2.

机构信息

Department of Chemistry , The University of Iowa , Iowa City , Iowa 52242 , United States.

出版信息

Biochemistry. 2019 Sep 3;58(35):3669-3682. doi: 10.1021/acs.biochem.9b00349. Epub 2019 Aug 20.

Abstract

Cancer cells regulate key enzymes in the glycolytic pathway to control the glycolytic flux, which is necessary for their growth and proliferation. One of the enzymes is pyruvate kinase muscle isoform 2 (PKM2), which is allosterically regulated by various small molecules. Using detailed biochemical and kinetic studies, we demonstrate that cysteine inhibits wild-type (wt) PKM2 by shifting from an active tetramer to a mixture of a tetramer and a less active dimer/monomer equilibrium and that the inhibition is dependent on cysteine concentration. The cysteine-mediated PKM2 inhibition is reversed by fructose 1,6-bisphosphate, an allosteric activator of PKM2. Furthermore, kinetic studies using two dimeric PKM2 variants, S437Y PKM2 and G415R PKM2, show that the reversal is caused by the tetramerization of wtPKM2. The crystal structure of the wtPKM2-Cys complex was determined at 2.25 Å, which showed that cysteine is held to the amino acid binding site via its main chain groups, similar to that observed for phenylalanine, alanine, serine, and tryptophan. Notably, ligand binding studies using fluorescence and isothermal titration calorimetry show that the presence of phosphoenolpyruvate alters the binding affinities of amino acids for wtPKM2 and vice versa, thereby unravelling the existence of a functionally bidirectional coupling between the amino acid binding site and the active site of wtPKM2.

摘要

癌细胞调节糖酵解途径中的关键酶来控制糖酵解通量,这对于它们的生长和增殖是必要的。其中一种酶是丙酮酸激酶肌肉同工酶 2(PKM2),它受到各种小分子的变构调节。通过详细的生化和动力学研究,我们证明半胱氨酸通过从活性四聚体转变为四聚体和较少活性的二聚体/单体平衡混合物来抑制野生型(wt)PKM2,并且抑制依赖于半胱氨酸浓度。半胱氨酸介导的 PKM2 抑制可被果糖 1,6-二磷酸逆转,这是 PKM2 的变构激活剂。此外,使用两种二聚体 PKM2 变体 S437Y PKM2 和 G415R PKM2 的动力学研究表明,逆转是由 wtPKM2 的四聚化引起的。wtPKM2-Cys 复合物的晶体结构在 2.25 Å 处确定,结果表明半胱氨酸通过其主链基团结合到氨基酸结合位点,类似于观察到的苯丙氨酸、丙氨酸、丝氨酸和色氨酸。值得注意的是,使用荧光和等温滴定量热法的配体结合研究表明,磷酸烯醇丙酮酸的存在改变了氨基酸与 wtPKM2 的结合亲和力,反之亦然,从而揭示了 wtPKM2 的氨基酸结合位点和活性位点之间存在功能双向偶联。

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