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Inhibition of malic enzyme 1 disrupts cellular metabolism and leads to vulnerability in cancer cells in glucose-restricted conditions

机译:苹果酸酶1的抑制作用会破坏细胞代谢,并导致葡萄糖受限条件下癌细胞的脆弱性

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Malic enzyme 1 (ME1) regulates one of the main pathways that provide nicotinamide adenine dinucleotide phosphate (NADPH), which is essential for cancer cell growth through maintenance of redox balance and biosynthesis processes in the cytoplasm. In this study, we found that ME1 inhibition disrupted metabolism in cancer cells and inhibited cancer cell growth by inducing senescence or apoptosis. In glucose-restricted culture conditions, cancer cells increased ME1 expression, and tracer experiments with labelled glutamine revealed that the flux of ME1-derived pyruvate to citrate was enhanced. In addition, cancer cells showed higher sensitivity to ME1 depletion in glucose-restricted conditions compared to normal culture conditions. These results suggest that in a low-glucose environment, where glycolysis and the pentose phosphate pathway (PPP) is attenuated, cancer cells become dependent on ME1 for the supply of NADPH and pyruvate. Our data demonstrate that ME1 is a promising target for cancer treatment, and a strategy using ME1 inhibitors combined with inhibition of glycolysis, PPP or redox balance regulators may provide an effective therapeutic option.
机译:苹果酸酶1(ME1)调节提供烟酰胺腺嘌呤二核苷酸磷酸(NADPH)的主要途径之一,该途径通过维持氧化还原平衡和细胞质中的生物合成过程对癌细胞的生长至关重要。在这项研究中,我们发现ME1抑制通过诱导衰老或凋亡来破坏癌细胞的代谢并抑制癌细胞的生长。在葡萄糖限制的培养条件下,癌细胞增加了ME1的表达,用标记的谷氨酰胺进行的示踪实验表明,ME1衍生的丙酮酸向柠檬酸的通量增加。此外,与葡萄糖水平受限的条件相比,癌细胞对ME1耗竭的敏感性更高。这些结果表明,在低糖环境中,糖酵解作用和磷酸戊糖途径(PPP)减弱,癌细胞变得依赖ME1来供应NADPH和丙酮酸。我们的数据表明,ME1是治疗癌症的有希望的靶标,使用ME1抑制剂结合抑制糖酵解,PPP或氧化还原平衡调节剂的策略可能提供有效的治疗选择。

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