首页> 美国卫生研究院文献>Neuro-Oncology >CBMT-29. PROMOTING FATTY ACID STORAGE BY DIACYLGLYCEROL-ACYLTRANSFERASE 1 PROTECTS GLIOBLASTOMA AGAINST OXIDATIVE STRESS AND MAINTAINS LIPID HOMEOSTASIS FOR RAPID TUMOR GROWTH
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CBMT-29. PROMOTING FATTY ACID STORAGE BY DIACYLGLYCEROL-ACYLTRANSFERASE 1 PROTECTS GLIOBLASTOMA AGAINST OXIDATIVE STRESS AND MAINTAINS LIPID HOMEOSTASIS FOR RAPID TUMOR GROWTH

机译:CBMT-29。通过二酰基甘油 - 酰基转移酶1促进脂肪酸储存保护胶质母细胞瘤免受氧化应激并保持脂质稳态的快速肿瘤生长

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摘要

Fatty acids are essential building blocks and energy substrates of lipids in cells. They constitute the major structural components of membrane lipids, i.e., glycerophospholipids and sphingolipids, and also serve as an important energy resource. Whereas excess fatty acids or dysregulation of fatty acid metabolism causes lipotoxicity, leading to severe cell damage. We previously identified that lipid metabolism is dramatically altered in glioblastoma (GBM), especially fatty acid synthesis, which is greatly elevated in various types of cancers. However, how tumor cells prevent excessive fatty acids accumulation from inducing lipotoxicity has rarely been studied. We recently identified that GBM greatly upregulates diacylglycerol-acyltransferase 1 (DGAT1) to direct excess fatty acids into triglycerides and lipid droplets to prevent oxidative stress. Inhibiting DGAT1 disrupts lipid homeostasis and shifts excessive fatty acids moving into mitochondria for oxidation, resulting in a high level of reactive oxygen species (ROS), mitochondrial damage, cytochrome c release and apoptosis. Inhibiting carnitine palmitoyltransferase to reduce fatty acids shuttling into mitochondria significantly decreases ROS and rescues cell death caused by DGAT1 inhibition. Xenograft models show that genetic or pharmacological inhibition of DGAT1 blocks lipid droplet formation, induces tumor cell apoptosis and markedly suppresses GBM tumor growth. Together, our study demonstrates that DGAT1 upregulation protects GBM from oxidative damage and maintains lipid homeostasis by facilitating excess fatty acids storage. Our data further show that targeting DGAT1 specifically induces lipotoxicity in tumor cells, while sparing normal brain, which is a very promising therapeutic strategy antagonizing GBM and has a high potential to shift current paradigm in treating GBM.
机译:脂肪酸是细胞中脂质的基本构建块和能量底物。它们构成膜脂质的主要结构组分,即甘油磷脂和鞘脂,也是重要的能量资源。虽然过量的脂肪酸或脂肪酸代谢的失调导致脂肪毒性,导致严重的细胞损伤。我们以前认为脂质母细胞瘤(GBM),特别是脂肪酸合成的脂质代谢显着改变,其在各种类型的癌症中大大升高。然而,肿瘤细胞如何防止过量的脂肪酸从诱导脂毒性中积累的积累很少已经研究过。我们最近发现GBM大大推翻了二酰基甘油 - 酰基转移酶1(DGAT1)将过量脂肪酸直接成甘油三酯和脂液滴以防止氧化应激。抑制DGAT1破坏了脂质稳态,使过量的脂肪酸移入线粒体进行氧化,导致高水平的活性氧(ROS),线粒体损伤,细胞色素C释放和细胞凋亡。抑制肉毒氨基丙酰氨酰转移酶将脂肪酸穿梭于线粒体中显着降低了DGAT1抑制引起的ROS并拯救细胞死亡。异种移植模型表明,DGAT1阻断脂质液滴形成的遗传或药理抑制,诱导肿瘤细胞凋亡并显着抑制GBM肿瘤生长。我们的研究在一起表明DGAT1上调保护GBM免受氧化损伤,并通过促进过量的脂肪酸储存来维持脂质稳态。我们的数据进一步表明,靶向DGAT1特异性地诱导肿瘤细胞中的脂毒性,同时施加正常的脑,这是一种非常有前途的治疗策略拮抗GBM,并且具有高潜力来改变对治疗GBM的电流范例。

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