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1-(sulfonyl)-5-(arylsulfonyl)indoline as activators of the tumor cell specific M2 isoform of pyruvate kinase

机译:1-(磺酰基)-5-(芳基磺酰基)二氢吲哚作为丙酮酸激酶肿瘤细胞特异性M2亚型的激活剂

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摘要

Cancer cells preferentially use glycolysis rather than oxidative phosphorylation for their rapid growth. They consume large amount of glucose to produce lactate even when oxygen is abundant, a phenomenon known as the Warburg effect. This metabolic change originates from a shift in the expression of alternative spliced isoforms of the glycolytic enzyme pyruvate kinase (PK), from PKM1 to PKM2. While PKM1 is constitutively active, PKM2 is switched from an inactive dimer form to an active tetramer form by small molecule activators. The prevalence of PKM2 in cancer cells relative to the prevalence of PKM1 in many normal cells, suggests a therapeutic strategy whereby activation of PKM2 may counter the abnormal cellular metabolism in cancer cells, and consequently decreased cellular proliferation. Herein we describe the discovery and optimization of a series of PKM2 activators derived from the 2-((2,3-dihydrobenzo[b][1,4] dioxin-6-yl)thio)-1-(2-methyl-1-(methylsulfonyl) indolin-5-yl) ethanone scaffold. The synthesis, SAR analysis, enzyme active site docking, enzymatic reaction kinetics, selectivity and pharmaceutical properties are discussed.
机译:癌细胞优先使用糖酵解而非氧化磷酸化来快速生长。即使氧气充足,它们也会消耗大量的葡萄糖来产生乳酸,这种现象被称为沃伯格效应。这种代谢变化源自糖酵解丙酮酸激酶(PK)的其他剪接同工型的表达从PKM1到PKM2的转变。当PKM1具有组成性活性时,PKM2通过小分子激活剂从非活性二聚体形式转换为活性四聚体形式。相对于许多正常细胞中PKM1的普遍性,癌细胞中PKM2的普遍性提出了一种治疗策略,即PKM2的激活可以抵消癌细胞中异常的细胞代谢,从而降低细胞增殖。在这里,我们描述了从2-((2,3-dihydrobenzo [b] [1,4]二恶英-6-基)硫基)-1-(2-甲基-1)衍生的一系列PKM2激活剂的发现和优化。 -(甲基磺酰基)吲哚啉-5-基)乙酮支架。讨论了合成,SAR分析,酶活性位点对接,酶促反应动力学,选择性和药物性质。

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