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磷酸酶肝再生-3 调节多发性骨髓瘤中癌细胞的代谢。

Phosphatase of regenerating liver-3 regulates cancer cell metabolism in multiple myeloma.

机构信息

Department of Clinical and Molecular Medicine, Faculty of Medicine and Health Sciences, Norwegian University of Science and Technology, Trondheim, Norway.

Laboratory Clinic, St. Olavs University Hospital, Trondheim, Norway.

出版信息

FASEB J. 2021 Mar;35(3):e21344. doi: 10.1096/fj.202001920RR.

Abstract

Cancer cells often depend on microenvironment signals from molecules such as cytokines for proliferation and metabolic adaptations. PRL-3, a cytokine-induced oncogenic phosphatase, is highly expressed in multiple myeloma cells and associated with poor outcome in this cancer. We studied whether PRL-3 influences metabolism. Cells transduced to express PRL-3 had higher aerobic glycolytic rate, oxidative phosphorylation, and ATP production than the control cells. PRL-3 promoted glucose uptake and lactate excretion, enhanced the levels of proteins regulating glycolysis and enzymes in the serine/glycine synthesis pathway, a side branch of glycolysis. Moreover, mRNAs for these proteins correlated with PRL-3 expression in primary patient myeloma cells. Glycine decarboxylase (GLDC) was the most significantly induced metabolism gene. Forced GLDC downregulation partly counteracted PRL-3-induced aerobic glycolysis, indicating GLDC involvement in a PRL-3-driven Warburg effect. AMPK, HIF-1α, and c-Myc, important metabolic regulators in cancer cells, were not mediators of PRL-3's metabolic effects. A phosphatase-dead PRL-3 mutant, C104S, promoted many of the metabolic changes induced by wild-type PRL-3, arguing that important metabolic effects of PRL-3 are independent of its phosphatase activity. Through this study, PRL-3 emerges as one of the key mediators of metabolic adaptations in multiple myeloma.

摘要

癌细胞通常依赖于细胞因子等分子的微环境信号来进行增殖和代谢适应。PRL-3 是一种细胞因子诱导的致癌磷酸酶,在多发性骨髓瘤细胞中高度表达,并与这种癌症的不良预后相关。我们研究了 PRL-3 是否影响代谢。过表达 PRL-3 的细胞比对照细胞具有更高的有氧糖酵解率、氧化磷酸化和 ATP 产生。PRL-3 促进葡萄糖摄取和乳酸排泄,增强调节糖酵解的蛋白质和丝氨酸/甘氨酸合成途径(糖酵解的分支)中的酶的水平。此外,这些蛋白质的 mRNA 与原代患者骨髓瘤细胞中的 PRL-3 表达相关。甘氨酸脱羧酶(GLDC)是最显著诱导的代谢基因。强制下调 GLDC 部分抵消了 PRL-3 诱导的有氧糖酵解,表明 GLDC 参与了 PRL-3 驱动的瓦伯格效应。AMPK、HIF-1α 和 c-Myc 是癌细胞中重要的代谢调节剂,它们不是 PRL-3 代谢作用的介导物。一种磷酸酶失活的 PRL-3 突变体 C104S 促进了野生型 PRL-3 诱导的许多代谢变化,这表明 PRL-3 的重要代谢作用与其磷酸酶活性无关。通过这项研究,PRL-3 成为多发性骨髓瘤中代谢适应的关键介质之一。

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