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首页> 外文期刊>Journal of cellular biochemistry. >Does endogenous fatty acid metabolism allow cancer cells to sense hypoxia and mediate hypoxic vasodilatation? Characterization of a novel molecular connection between fatty acid synthase (FAS) and hypoxia-inducible factor-1alpha (HIF-1alpha)-related
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Does endogenous fatty acid metabolism allow cancer cells to sense hypoxia and mediate hypoxic vasodilatation? Characterization of a novel molecular connection between fatty acid synthase (FAS) and hypoxia-inducible factor-1alpha (HIF-1alpha)-related

机译:内源性脂肪酸代谢是否会让癌细胞感觉缺氧并介导缺氧血管舒张?脂肪酸合酶(FAS)和缺氧诱导因子1α(HIF-1alpha)相关的新型分子连接的表征

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Her-2eu (erbB-2) oncogene overexpression is associated with increased tumor progression and metastasis. Fatty acid synthase (FAS), the key lipogenic enzyme responsible for the endogenous synthesis of fatty acids, has been shown to be one of the genes regulated by Her-2eu at the level of transcription, translation, and biosynthetic activity. Interestingly, we recently established that both pharmacological inhibition of FAS activity and silencing of FAS gene expression specifically suppress Her-2eu oncoprotein expression and tyrosine-kinase activity in breast and ovarian Her-2eu overexpressors. Unraveling the functional organization of this novel bi-directional molecular connection between Her-2eu and FAS-dependent neoplastic lipogenesis is a major challenge that the field is only beginning to take on. Considering that Her-2eu overexpression correlates with increased expression of the hypoxia inducible factor-1alpha (HIF-1alpha), which, in a mitogen-activated protein kinase (MAPK)-dependent manner, plays a key role in the expression of several genes including cytokines such as vascular endothelial growth factor (VEGF), we hypothesized that FAS blockade should result in a concomitant down-regulation of VEGF. Unexpectedly, the specific inhibition of the de novo fatty acid synthesis with the small-molecule inhibitor of FAS activity C75 resulted in a dramatic dose-dependent enhancement (up to 500% increase) of VEGF secretion in Her-2eu-overexpressing SK-Br3, BT-474, and SKOV3 cancer cells. Concurrently, FAS blockade drastically activated MAPK and promoted further a prominent accumulation of HIF-1alpha in Her-2eu overexpressors. Moreover, U0126-induced inhibition of MAPK activity completely abolished C75-induced up-regulation of HIF-1alpha expression and VEGF secretion, whereas it did not modulate C75-induced down-regulation of Her-2eu oncogene. Importantly, RNA interference (RNAi)-mediated silencing of the FAS gene recapitulated C75's effects by up-regulating VEGF secretion, MAPK activation and HIF-1alpha expression. Therefore, it appears that perturbation of cancer-associated endogenous fatty metabolism triggers a "hypoxia-like" (oxygen-independent) condition that actively rescues Her-2eu-dependent MAPK --> HIP-1alpha --> VEGF cascade. It is tempting to suggest that an intact FAS-catalyzed endogenous fatty acid metabolism is a necessary metabolic adaptation to support the enhanced ability of Her-2eu-overexpressing cancer cells to survive cellular hypoxia in a HIF-alpha-dependent manner. J. Cell. Biochem. 94: 857-863, 2005. (c) 2005 Wiley-Liss, Inc.
机译:Her-2 / neu(erbB-2)癌基因过度表达与肿瘤进展和转移相关。脂肪酸合酶(FAS)是负责脂肪酸内源性合成的关键脂肪生成酶,已被证明是在转录,翻译和生物合成活性水平上受Her-2 / neu调控的基因之一。有趣的是,我们最近确定,FAS活性的药理抑制作用和FAS基因表达的沉默都可以特异性抑制乳腺癌和卵巢Her-2 / neu过表达者中Her-2 / neu癌蛋白的表达和酪氨酸激酶的活性。揭开Her-2 / neu和FAS依赖的赘生性脂肪形成之间这种新型双向分子连接的功能组织是该领域才刚刚开始的主要挑战。考虑到Her-2 / neu过表达与缺氧诱导因子1α(HIF-1alpha)的表达增加有关,缺氧诱导因子1α(MIF)依赖于丝裂素活化蛋白激酶(MAPK),在多种细胞的表达中起关键作用包括细胞因子(例如血管内皮生长因子(VEGF))的基因,我们假设FAS阻滞应导致VEGF的同时下调。出乎意料的是,FAS活性C75的小分子抑制剂对从头脂肪酸合成的特异性抑制导致Her-2 / neu过表达的SK-VEGF的VEGF分泌显着剂量依赖性增强(最多增加500%)。 Br3,BT-474和SKOV3癌细胞。同时,FAS阻滞大幅度激活了MAPK,并进一步促进了Her-2 / neu过表达者中HIF-1alpha的显着积累。此外,U0126诱导的MAPK活性抑制作用完全消除了C75诱导的HIF-1α表达和VEGF分泌的上调,而它并未调节C75诱导的Her-2 / neu癌基因的下调。重要的是,RNA干扰(RNAi)介导的FAS基因沉默通过上调VEGF分泌,MAPK激活和HIF-1alpha表达来概括C75的作用。因此,似乎与癌症相关的内源性脂肪代谢紊乱会触发“缺氧样”(氧依赖性)病状,从而主动挽救Her-2 / neu依赖性MAPK-> HIP-1alpha-> ​​VEGF级联反应。诱人的建议是,完整的FAS催化的内源性脂肪酸代谢是必需的代谢适应,以支持增强的Her-2 / neu过表达的癌细胞以HIF-alpha依赖的方式在细胞缺氧中生存的能力增强。 J.细胞。生化。 94:857-863,2005。(c)2005 Wiley-Liss,Inc.

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