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Molecular dynamics simulation reveals how phosphorylation of tyrosine 26 of phosphoglycerate mutase 1 upregulates glycolysis and promotes tumor growth

机译:分子动力学模拟揭示了磷酸甘油酸突变酶1的酪氨酸26的磷酸化如何上调糖酵解并促进肿瘤生长

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摘要

Phosphoglycerate mutase 1 (PGAM1) catalyzes the eighth step of glycolysis and is often found upregulated in cancer cells. To test the hypothesis that the phosphorylation of tyrosine 26 residue of PGAM1 greatly enhances its activity, we performed both conventional and steered molecular dynamics simulations on the binding and unbinding of PGAM1 to its substrates, with tyrosine 26 either phosphorylated or not. We analyzed the simulated data in terms of structural stability, hydrogen bond formation, binding free energy, etc. We found that tyrosine 26 phosphorylation enhances the binding of PGAM1 to its substrates through generating electrostatic environment and structural features that are advantageous to the binding. Our results may provide valuable insights into computer-aided design of drugs that specifically target cancer cells with PGAM1 tyrosine 26 phosphorylated.
机译:磷酸甘油酸突变酶1(PGAM1)催化糖酵解的第八步,通常在癌细胞中被上调。为了测试PGAM1的酪氨酸26残基的磷酸化大大增强其活性的假设,我们对PGAM1与其底物的结合和未结合进行了常规的分子动力学模拟和操纵分子动力学模拟,酪氨酸26磷酸化与否。我们从结构稳定性,氢键形成,结合自由能等方面分析了模拟数据。我们发现,酪氨酸26的磷酸化通过产生静电环境和有利于结合的结构特征,增强了PGAM1与其底物的结合。我们的结果可能为计算机辅助药物设计提供有价值的见解,这些药物专门针对具有磷酸化PGAM1酪氨酸26的癌细胞。

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