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Ets-1 global gene expression profile reveals associations with metabolism and oxidative stress in ovarian and breast cancers

机译:Ets-1全球基因表达谱揭示与卵巢癌和乳腺癌的代谢和氧化应激相关

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BackgroundThe Ets-1 proto-oncogene is frequently upregulated in cancer cells, with known involvement in cancer angiogenesis, metastasis, and more recently energy metabolism. In this study we have performed various bioinformatic analyses on existing microarray data to further clarify the role of Ets-1 in ovarian cancer, and validated these results with functional assays. MethodsFunctional pathway analyses were conducted on existing microarray data comparing 2008 and 2008-Ets1 ovarian cancer cells. Methods included over-representation analysis, functional class scoring and pathway topology, and network representations were visualized in Cytoscape. Oxidative stress regulation was examined in ovarian cancer cells by measuring protein expression and enzyme activity of glutathione peroxidases, as well as intracellular reactive oxygen species using dichlorofluorescin fluorescence. A stable Ets-1 knockdown MDA-MB-231 cell line was created using short hairpin RNA, and glycolytic dependence of these cells was measured following treatment with 2-deoxy-D-glucose and Hoechst nuclear staining to determine cell number. High-resolution respirometry was performed to measure changes in basal oxygen flux between MDA-MB-231 cells and MDA-Ets1KD variants. ResultsEnrichments in oxidoreductase activity and various metabolic pathways were observed upon integration of the different analyses, suggesting that Ets-1 is important in their regulation. As oxidative stress is closely associated with these pathways, we functionally validated our observations by showing that Ets-1 overexpression resulted in decreased reactive oxygen species with increased glutathione peroxidase expression and activity, thereby regulating cellular oxidative stress. To extend our findings to another cancer type, we developed an Ets-1 knockdown breast cancer cell model, which displayed decreased glycolytic dependence and increased oxygen consumption following Ets-1 knockdown confirming our earlier findings. ConclusionsCollectively, this study confirms the important role of Ets-1 in the regulation of cancer energy metabolism in ovarian and breast cancers. Furthermore, Ets-1 is a key regulator of oxidative stress in ovarian cancer cells by mediating alterations in glutathione antioxidant capacity.
机译:背景Ets-1原癌基因经常在癌细胞中上调,已知参与癌症的血管生成,转移以及最近的能量代谢。在这项研究中,我们对现有的微阵列数据进行了各种生物信息学分析,以进一步阐明Ets-1在卵巢癌中的作用,并通过功能分析验证了这些结果。方法对现有的微阵列数据进行功能通路分析,比较2008年和2008-Ets1卵巢癌细胞。方法包括过度表示分析,功能类别评分和路径拓扑,并且在Cytoscape中可视化网络表示。通过测量谷胱甘肽过氧化物酶的蛋白质表达和酶活性以及使用二氯荧光素荧光的细胞内活性氧物种,研究了卵巢癌细胞中的氧化应激调节。使用短发夹RNA产生稳定的Ets-1敲低MDA-MB-231细胞系,并在用2-脱氧-D-葡萄糖和Hoechst核染色处理以确定细胞数之后,测量了这些细胞的糖酵解依赖性。进行了高分辨率呼​​吸测定,以测量MDA-MB-231细胞和MDA-Ets1KD变体之间的基础氧通量变化。结果整合不同分析后,观察到氧化还原酶活性和各种代谢途径的富集,这表明Ets-1在其调节中很重要。由于氧化应激与这些途径密切相关,因此我们通过显示Ets-1过表达导致活性氧种类减少,谷胱甘肽过氧化物酶表达和活性增加而功能上验证了我们的观察结果,从而调节了细胞氧化应激。为了将我们的发现扩展到另一种癌症类型,我们开发了Ets-1敲低乳腺癌细胞模型,该模型在Ets-1敲低后显示出降低的糖酵解依赖性和增加的耗氧量,证实了我们之前的发现。结论总之,本研究证实了Ets-1在调节卵巢癌和乳腺癌癌能量代谢中的重要作用。此外,Ets-1通过介导谷胱甘肽抗氧化能力的变化,是卵巢癌细胞氧化应激的关键调节剂。

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