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Metabolic Regulation of Glycolysis and AMP Activated Protein Kinase Pathways during Black Raspberry-Mediated Oral Cancer Chemoprevention

机译:黑莓介导的口腔癌化学预防过程中糖酵解和AMP激活的蛋白激酶途径的代谢调控。

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Oral cancer is a public health problem with an incidence of almost 50,000 and a mortality of 10,000 each year in the USA alone. Black raspberries (BRBs) have been shown to inhibit oral carcinogenesis in several preclinical models, but our understanding of how BRB phytochemicals affect the metabolic pathways during oral carcinogenesis remains incomplete. We used a well-established rat oral cancer model to determine potential metabolic pathways impacted by BRBs during oral carcinogenesis. F344 rats were exposed to the oral carcinogen 4-nitroquinoline-1-oxide in drinking water for 14 weeks, then regular drinking water for six weeks. Carcinogen exposed rats were fed a 5% or 10% BRB supplemented diet or control diet for six weeks after carcinogen exposure. RNA-Seq transcriptome analysis on rat tongue, and mass spectrometry and NMR metabolomics analysis on rat urine were performed. We tentatively identified 57 differentially or uniquely expressed metabolites and over 662 modulated genes in rats being fed with BRB. Glycolysis and AMPK pathways were modulated during BRB-mediated oral cancer chemoprevention. Glycolytic enzymes Aldoa , Hk2 , Tpi1 , Pgam2 , Pfkl , and Pkm2 as well as the PKA-AMPK pathway genes Prkaa2 , Pde4a , Pde10a , Ywhag , and Crebbp were downregulated by BRBs during oral cancer chemoprevention. Furthermore, the glycolysis metabolite glucose-6-phosphate decreased in BRB-administered rats. Our data reveal the novel metabolic pathways modulated by BRB phytochemicals that can be targeted during the chemoprevention of oral cancer.
机译:口腔癌是一种公共卫生问题,仅在美国,每年的发病率就近50,000,死亡率为10,000。黑树莓(BRBs)在几种临床前模型中已显示出抑制口腔癌发生的作用,但我们对BRB植物化学物质如何影响口腔癌发生过程中代谢途径的理解仍不完全。我们使用完善的大鼠口腔癌模型来确定口腔癌发生过程中受BRB影响的潜在代谢途径。 F344大鼠在饮用水中暴露于口服致癌物4-硝基喹啉-1-氧化物14周,然后在正常饮用水中暴露6周。致癌物暴露的大鼠在致癌物暴露后六周接受5%或10%BRB补充饮食或对照饮食喂养。在大鼠舌上进行RNA-Seq转录组分析,并在大鼠尿液上进行质谱和NMR代谢组学分析。我们初步确定了接受BRB喂养的大鼠中57个差异表达或独特表达的代谢产物和662个以上的调节基因。糖酵解和AMPK通路在BRB介导的口腔癌化学预防过程中得到调节。口腔癌化学预防期间,BRBs降低了糖酵解酶Aldoa,Hk2,Tpi1,Pgam2,Pfkl和Pkm2以及PKA-AMPK通路基因Prkaa2,Pde4a,Pde10a,Ywhag和Crebbp的表达。此外,BRB给药大鼠的糖酵解代谢产物葡萄糖-6-磷酸减少。我们的数据揭示了由BRB植物化学物质调节的新型代谢途径,这些途径可在口腔癌化学预防期间靶向。

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