Department of Animal Sciences, Purdue University, West Lafayette, IN, 47907, USA.
Department of Comparative Pathobiology, Purdue University, West Lafayette, IN, 47907, USA.
Oncogene. 2023 Aug;42(34):2521-2535. doi: 10.1038/s41388-023-02768-6. Epub 2023 Jul 11.
Human dedifferentiated liposarcoma (DDLPS) is a rare but lethal cancer with no driver mutations being identified, hampering the development of targeted therapies. We and others recently reported that constitutive activation of Notch signaling through overexpression of the Notch1 intracellular domain (NICD) in murine adipocytes leads to tumors resembling human DDLPS. However, the mechanisms underlying the oncogenic functions of Notch activation in DDLPS remains unclear. Here, we show that Notch signaling is activated in a subset of human DDLPS and correlates with poor prognosis and expression of MDM2, a defining marker of DDLPS. Metabolic analyses reveal that murine NICD DDLPS cells exhibit markedly reduced mitochondrial respiration and increased glycolysis, mimicking the Warburg effect. This metabolic switch is associated with diminished expression of peroxisome proliferator-activated receptor gamma coactivator 1α (Ppargc1a, encoding PGC-1α protein), a master regulator of mitochondrial biogenesis. Genetic ablation of the NICD cassette rescues the expression of PGC-1α and mitochondrial respiration. Similarly, overexpression of PGC-1α is sufficient to rescue mitochondria biogenesis, inhibit the growth and promote adipogenic differentiation of DDLPS cells. Together, these data demonstrate that Notch activation inhibits PGC-1α to suppress mitochondrial biogenesis and drive a metabolic switch in DDLPS.
人类去分化脂肪肉瘤(DDLPS)是一种罕见但致命的癌症,目前尚未发现驱动突变,这阻碍了靶向治疗的发展。我们和其他人最近报道称,通过在小鼠脂肪细胞中过表达 Notch1 细胞内结构域(NICD)来持续激活 Notch 信号通路,会导致类似于人类 DDLPS 的肿瘤。然而, Notch 激活在 DDLPS 中的致癌功能的机制仍不清楚。在这里,我们表明 Notch 信号在一部分人类 DDLPS 中被激活,并与不良预后和 MDM2 的表达相关,MDM2 是 DDLPS 的一个明确标志物。代谢分析表明,小鼠 NICD DDLPS 细胞表现出明显降低的线粒体呼吸和增加的糖酵解,模拟了沃伯格效应。这种代谢转换与过氧化物酶体增殖物激活受体γ共激活因子 1α(Ppargc1a,编码 PGC-1α 蛋白)的表达减少有关,后者是线粒体生物发生的主要调节剂。NICD 盒的基因缺失可挽救 PGC-1α 的表达和线粒体呼吸。同样,过表达 PGC-1α 足以挽救线粒体生物发生,抑制 DDLPS 细胞的生长并促进其向脂肪细胞分化。总之,这些数据表明 Notch 激活抑制 PGC-1α 以抑制线粒体生物发生并在 DDLPS 中驱动代谢转换。