Koronowicz Aneta A, Banks Paula, Domagała Dominik, Master Adam, Leszczyńska Teresa, Piasna Ewelina, Marynowska Mariola, Laidler Piotr
Department of Human Nutrition, Faculty of Food Technology, University of Agriculture, Krakow, Poland.
Department of Biochemistry and Molecular Biology, Medical Centre for Postgraduate Education, Warsaw, Poland.
Genes Nutr. 2016 Jul 27;11:22. doi: 10.1186/s12263-016-0537-z. eCollection 2016.
Our previous study showed that fatty acids extract obtained from CLA-enriched egg yolks (EFA-CLA) suppressed the viability of MCF-7 cancer cell line more effectively than extract from non-enriched egg yolks (EFA). In this study, we analysed the effect of EFA-CLA and EFA on transcriptome profile of MCF-7 cells by applying the whole Human Genome Microarray technology.
We found that EFA-CLA and EFA treated cells differentially regulated genes involved in cancer development and progression. EFA-CLA, compared to EFA, positively increased the mRNA expression of TSC2 and PTEN tumor suppressors as well as decreased the expression of NOTCH1, AGPS, GNA12, STAT3, UCP2, HIGD2A, HIF1A, PPKAR1A oncogenes.
We show for the first time that EFA-CLA can regulate genes engaged in AKT/mTOR pathway and inhibiting cell cycle progression. The observed results are most likely achieved by the combined effect of both: incorporated CLA isomers and other fatty acids in eggs organically modified through hens' diet. Our results suggest that CLA-enriched eggs could be easily available food products with a potential of a cancer chemopreventive agent.
我们之前的研究表明,从富含共轭亚油酸的蛋黄中提取的脂肪酸提取物(EFA-CLA)比从非富集蛋黄中提取的提取物(EFA)更有效地抑制MCF-7癌细胞系的活力。在本研究中,我们通过应用全人类基因组微阵列技术分析了EFA-CLA和EFA对MCF-7细胞转录组图谱的影响。
我们发现,EFA-CLA和EFA处理的细胞对参与癌症发展和进展的基因有不同的调控作用。与EFA相比,EFA-CLA正向增加了肿瘤抑制因子TSC2和PTEN的mRNA表达,同时降低了NOTCH1、AGPS、GNA12、STAT3、UCP2、HIGD2A、HIF1A、PPKAR1A等癌基因的表达。
我们首次表明,EFA-CLA可以调节参与AKT/mTOR途径的基因并抑制细胞周期进程。观察到的结果很可能是通过以下两者的联合作用实现的:掺入的共轭亚油酸异构体和通过母鸡饮食有机修饰的鸡蛋中的其他脂肪酸。我们的结果表明,富含共轭亚油酸的鸡蛋可能是易于获得的食品,具有作为癌症化学预防剂的潜力。