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首页> 外文期刊>Molecular cancer research: MCR >EWS/FLI is a Master Regulator of Metabolic Reprogramming in Ewing Sarcoma
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EWS/FLI is a Master Regulator of Metabolic Reprogramming in Ewing Sarcoma

机译:EWS / FLI是ewing Sarcoma的代谢重编程主稳定剂

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摘要

Ewing sarcoma is a bone malignancy driven by a translocation event resulting in the fusion protein EWS/FLI1 (EF). EF functions as an aberrant and oncogenic transcription factor that misregulates the expression of thousands of genes. Previous work has focused principally on determining important transcriptional targets of EF, as well as characterizing important regulatory partnerships in EF-dependent transcriptional programs. Less is known, however, about EF-dependent metabolic changes or their role in Ewing sarcoma biology. Therefore, the metabolic effects of silencing EF in Ewing sarcoma cells were determined. Metabolomic analyses revealed distinct separation of metabolic profiles in EF-knockdown versus control-knockdown cells. Mitochondrial stress tests demonstrated that knockdown of EF increased respiratory as well as glycolytic functions. Enzymes and metabolites in several metabolic pathways were altered, including de novo serine synthesis and elements of one-carbon metabolism. Furthermore, phosphoglycerate dehydrogenase (PHGDH) was found to be highly expressed in Ewing sarcoma and correlated with worse patient survival. PHGDH knockdown or pharmacologic inhibition in vitro caused impaired proliferation and cell death. Interestingly, PHGDH modulation also led to elevated histone expression and methylation. These studies demonstrate that the translocation-derived fusion protein EF is a master regulator of metabolic reprogramming in Ewing sarcoma, diverting metabolites toward biosynthesis. As such, these data suggest that the metabolic aberrations induced by EF are important contributors to the oncogenic biology of these tumors.
机译:EWING SARCOMA是一种由易位事件驱动的骨骼恶性肿瘤,导致融合蛋白EWS / FLI1(EF)。 EF用作异常和致癌转录因子,以误解成千上万基因的表达。以前的工作主要专注于确定EF的重要转述目标,以及在依赖于EF依赖转录方案中的重要监管伙伴关系。然而,较少是已知的关于EF依赖性代谢变化或其在EWINGSARCOMA生物学中的作用。因此,确定了沉默EF在育种肉瘤细胞中的代谢效应。代谢物分析揭示了EF敲低与控制敲低细胞中代谢谱的不同分离。线粒体压力测试证明,EF敲低增加了呼吸道以及糖酵解功能。改变了几种代谢途径中的酶和代谢物,包括德诺丝氨酸合成和单碳代谢的元素。此外,发现磷酸性脱氢酶(PHGHDH)在EWINS SARCOMA中高度表达,并与较差的患者存活率相关。 PHGDH敲低或药理学抑制体外导致增殖和细胞死亡受损。有趣的是,PHGDH调制也导致了升高的组蛋白表达和甲基化。这些研究表明,易位衍生的融合蛋白EF是ewing Sarcoma中代谢重编程的主调节因子,转移代谢物朝向生物合成。因此,这些数据表明,EF诱导的代谢像差是这些肿瘤的致癌生物​​学的重要贡献者。

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