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2-羟戊二酸介导的内质网自噬导致 IDH1 突变型神经胶质瘤中磷脂生物合成的异常下调。

2-Hydroxyglutarate-Mediated Autophagy of the Endoplasmic Reticulum Leads to an Unusual Downregulation of Phospholipid Biosynthesis in Mutant IDH1 Gliomas.

机构信息

Department of Radiology and Biomedical Imaging, University of California San Francisco, San Francisco, California.

Centro Nacional de Investigaciones Cardiovasculares (CNIC), Madrid, Spain.

出版信息

Cancer Res. 2018 May 1;78(9):2290-2304. doi: 10.1158/0008-5472.CAN-17-2926. Epub 2018 Jan 22.

Abstract

Tumor metabolism is reprogrammed to meet the demands of proliferating cancer cells. In particular, cancer cells upregulate synthesis of the membrane phospholipids phosphatidylcholine (PtdCho) and phosphatidylethanolamine (PtdE) in order to allow for rapid membrane turnover. Nonetheless, we show here that, in mutant isocitrate dehydrogenase 1 (IDHmut) gliomas, which produce the oncometabolite 2-hydroxyglutarate (2-HG), PtdCho and PtdE biosynthesis is downregulated and results in lower levels of both phospholipids when compared with wild-type IDH1 cells. 2-HG inhibited collagen-4-prolyl hydroxylase activity, leading to accumulation of misfolded procollagen-IV in the endoplasmic reticulum (ER) of both genetically engineered and patient-derived IDHmut glioma models. The resulting ER stress triggered increased expression of FAM134b, which mediated autophagic degradation of the ER (ER-phagy) and a reduction in the ER area. Because the ER is the site of phospholipid synthesis, ER-phagy led to reduced PtdCho and PtdE biosynthesis. Inhibition of ER-phagy via pharmacological or molecular approaches restored phospholipid biosynthesis in IDHmut glioma cells, triggered apoptotic cell death, inhibited tumor growth, and prolonged the survival of orthotopic IDHmut glioma-bearing mice, pointing to a potential therapeutic opportunity. Glioma patient biopsies also exhibited increased ER-phagy and downregulation of PtdCho and PtdE levels in IDHmut samples compared with wild-type, clinically validating our observations. Collectively, this study provides detailed and clinically relevant insights into the functional link between oncometabolite-driven ER-phagy and phospholipid biosynthesis in IDHmut gliomas. Downregulation of phospholipid biosynthesis via ER-phagy is essential for proliferation and clonogenicity of mutant IDH1 gliomas, a finding with immediate therapeutic implications. .

摘要

肿瘤代谢被重新编程以满足增殖癌细胞的需求。特别是,癌细胞上调膜磷脂磷脂酰胆碱(PtdCho)和磷脂酰乙醇胺(PtdE)的合成,以允许快速膜周转。尽管如此,我们在这里表明,在产生致癌代谢物 2-羟基戊二酸(2-HG)的突变型异柠檬酸脱氢酶 1(IDHmut)神经胶质瘤中,PtdCho 和 PtdE 生物合成被下调,与野生型 IDH1 细胞相比,两种磷脂的水平都较低。2-HG 抑制胶原-4-脯氨酰羟化酶活性,导致基因工程和患者来源的 IDHmut 神经胶质瘤模型中错误折叠的前胶原-IV 在内质网(ER)中积累。由此产生的 ER 应激触发 FAM134b 的表达增加,介导 ER(ER 自噬)的自噬降解和 ER 面积减少。由于 ER 是磷脂合成的部位,ER 自噬导致 PtdCho 和 PtdE 生物合成减少。通过药理学或分子方法抑制 ER 自噬可恢复 IDHmut 神经胶质瘤细胞中的磷脂生物合成,触发细胞凋亡,抑制肿瘤生长,并延长荷 IDHmut 神经胶质瘤的原位小鼠的存活时间,这为潜在的治疗机会提供了线索。与野生型相比,神经胶质瘤患者活检中也显示出 ER 自噬增加和 PtdCho 和 PtdE 水平下调,在 IDHmut 样本中,这验证了我们的观察结果。总的来说,这项研究提供了关于 IDHmut 神经胶质瘤中致癌代谢物驱动的 ER 自噬与磷脂生物合成之间功能联系的详细和临床相关见解。通过 ER 自噬下调磷脂生物合成对于突变型 IDH1 神经胶质瘤的增殖和集落形成至关重要,这一发现具有直接的治疗意义。

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