Neuro-Oncology Branch, National Cancer Institute, Center for Cancer Research, National Institutes of Health, Bethesda, MD, USA.
Institute for Lasers, Photonics and Biophotonics, University at Buffalo, State University of New York, Buffalo, NY, 14260, USA.
Nat Commun. 2021 Jan 27;12(1):614. doi: 10.1038/s41467-020-20752-6.
Infiltrating gliomas are devastating and incurable tumors. Amongst all gliomas, those harboring a mutation in isocitrate dehydrogenase 1 mutation (IDH1) acquire a different tumor biology and clinical manifestation from those that are IDH1. Understanding the unique metabolic profile reprogrammed by IDH1 mutation has the potential to identify new molecular targets for glioma therapy. Herein, we uncover increased monounsaturated fatty acids (MUFA) and their phospholipids in endoplasmic reticulum (ER), generated by IDH1 mutation, that are responsible for Golgi and ER dilation. We demonstrate a direct link between the IDH1 mutation and this organelle morphology via D-2HG-induced stearyl-CoA desaturase (SCD) overexpression, the rate-limiting enzyme in MUFA biosynthesis. Inhibition of IDH1 mutation or SCD silencing restores ER and Golgi morphology, while D-2HG and oleic acid induces morphological defects in these organelles. Moreover, addition of oleic acid, which tilts the balance towards elevated levels of MUFA, produces IDH1-specific cellular apoptosis. Collectively, these results suggest that IDH1-induced SCD overexpression can rearrange the distribution of lipids in the organelles of glioma cells, providing new insight into the link between lipid metabolism and organelle morphology in these cells, with potential and unique therapeutic implications.
浸润性神经胶质瘤是一种破坏性的、无法治愈的肿瘤。在所有神经胶质瘤中,携带异柠檬酸脱氢酶 1 突变(IDH1)的神经胶质瘤与 IDH1 神经胶质瘤在肿瘤生物学和临床表现上有所不同。了解 IDH1 突变重新编程的独特代谢特征有可能为神经胶质瘤治疗确定新的分子靶点。在这里,我们发现 IDH1 突变导致内质网(ER)中单不饱和脂肪酸(MUFA)及其磷脂增加,这是高尔基体和 ER 扩张的原因。我们通过 D-2HG 诱导的硬脂酰辅酶 A 去饱和酶(SCD)过度表达,证明了 IDH1 突变与这种细胞器形态之间的直接联系,SCD 是 MUFA 生物合成的限速酶。抑制 IDH1 突变或 SCD 沉默可恢复 ER 和高尔基体形态,而 D-2HG 和油酸诱导这些细胞器形态缺陷。此外,添加油酸会使 MUFA 的平衡水平升高,从而导致 IDH1 特异性细胞凋亡。总之,这些结果表明,IDH1 诱导的 SCD 过度表达可以重新排列神经胶质瘤细胞细胞器中的脂质分布,为这些细胞中脂质代谢和细胞器形态之间的联系提供了新的见解,具有潜在的独特治疗意义。