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脂肪酸合酶抑制剂对受体-PI3K-mTORC1的多级抑制作用对其抗卵巢癌细胞的疗效至关重要。

Multi-level suppression of receptor-PI3K-mTORC1 by fatty acid synthase inhibitors is crucial for their efficacy against ovarian cancer cells.

作者信息

Wagner Renate, Stübiger Gerald, Veigel Daniel, Wuczkowski Michael, Lanzerstorfer Peter, Weghuber Julian, Karteris Emmanouil, Nowikovsky Karin, Wilfinger-Lutz Nastasia, Singer Christian F, Colomer Ramón, Benhamú Bellinda, López-Rodríguez María Luz, Valent Peter, Grunt Thomas W

机构信息

Division of Oncology, Department of Medicine I, Medical University Vienna, Vienna, Austria.

Comprehensive Cancer Center, Medical University Vienna, Vienna, Austria.

出版信息

Oncotarget. 2017 Feb 14;8(7):11600-11613. doi: 10.18632/oncotarget.14591.

Abstract

Receptor-PI3K-mTORC1 signaling and fatty acid synthase (FASN)-regulated lipid biosynthesis harbor numerous drug targets and are molecularly connected. We hypothesize that unraveling the mechanisms of pathway cross-talk will be useful for designing novel co-targeting strategies for ovarian cancer (OC). The impact of receptor-PI3K-mTORC1 onto FASN is already well-characterized. However, reverse actions-from FASN towards receptor-PI3K-mTORC1-are still elusive. We show that FASN-blockade impairs receptor-PI3K-mTORC1 signaling at multiple levels. Thin-layer chromatography and MALDI-MS/MS reveals that FASN-inhibitors (C75, G28UCM) augment polyunsaturated fatty acids and diminish signaling lipids diacylglycerol (DAG) and phosphatidylinositol 3,4,5-trisphosphate (PIP3) in OC cells (SKOV3, OVCAR-3, A2780, HOC-7). Western blotting and micropatterning demonstrate that FASN-blockers impair phosphorylation/expression of EGF-receptor/ERBB/HER and decrease GRB2-EGF-receptor recruitment leading to PI3K-AKT suppression. FASN-inhibitors activate stress response-genes HIF-1α-REDD1 (RTP801/DIG2/DDIT4) and AMPKα causing mTORC1- and S6-repression. We conclude that FASN-inhibitor-mediated blockade of receptor-PI3K-mTORC1 occurs due to a number of distinct but cooperating processes. Moreover, decrease of PI3K-mTORC1 abolishes cross-repression of MEK-ERK causing ERK activation. Consequently, the MEK-inhibitor selumetinib/AZD6244, in contrast to the PI3K/mTOR-inhibitor dactolisib/NVP-BEZ235, increases growth inhibition when given together with a FASN-blocker. We are the first to provide deep insight on how FASN-inhibition blocks ERBB-PI3K-mTORC1 activity at multiple molecular levels. Moreover, our data encourage therapeutic approaches using FASN-antagonists together with MEK-ERK-inhibitors.

摘要

受体 - PI3K - mTORC1信号传导和脂肪酸合酶(FASN)调节的脂质生物合成包含众多药物靶点且在分子层面相互关联。我们推测,揭示信号通路相互作用的机制将有助于设计针对卵巢癌(OC)的新型联合靶向策略。受体 - PI3K - mTORC1对FASN的影响已得到充分表征。然而,FASN对受体 - PI3K - mTORC1的反向作用仍不清楚。我们发现FASN阻断在多个层面损害受体 - PI3K - mTORC1信号传导。薄层色谱法和基质辅助激光解吸电离串联质谱法(MALDI - MS/MS)显示,FASN抑制剂(C75、G28UCM)增加卵巢癌细胞(SKOV3、OVCAR - 3、A2780、HOC - 7)中的多不饱和脂肪酸,并减少信号脂质二酰基甘油(DAG)和磷脂酰肌醇3,4,5 - 三磷酸(PIP3)。蛋白质印迹法和微图案化显示,FASN阻断剂损害表皮生长因子受体(EGF - 受体)/ERBB/HER的磷酸化/表达,并减少GRB2 - EGF - 受体的募集,导致PI3K - AKT受抑制。FASN抑制剂激活应激反应基因HIF - 1α - REDD1(RTP801/DIG2/DDIT4)和AMPKα,导致mTORC1和S6受抑制。我们得出结论,FASN抑制剂介导的受体 - PI3K - mTORC1阻断是由于一些不同但相互协作的过程所致。此外,PI3K - mTORC1的减少消除了MEK - ERK的交叉抑制,导致ERK激活。因此,与PI3K/mTOR抑制剂达可替尼/NVP - BEZ235相反,MEK抑制剂司美替尼/AZD6244与FASN阻断剂联合使用时增加生长抑制作用。我们首次深入洞察了FASN抑制如何在多个分子水平阻断ERBB - PI3K - mTORC1活性。此外,我们的数据鼓励使用FASN拮抗剂与MEK - ERK抑制剂的治疗方法。

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