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首页> 外文期刊>Toxins >Deoxynivalenol Affects Cell Metabolism and Increases Protein Biosynthesis in Intestinal Porcine Epithelial Cells (IPEC-J2): DON Increases Protein Biosynthesis
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Deoxynivalenol Affects Cell Metabolism and Increases Protein Biosynthesis in Intestinal Porcine Epithelial Cells (IPEC-J2): DON Increases Protein Biosynthesis

机译:脱氧雪腐烯酚影响肠道猪上皮细胞的细胞代谢并增加蛋白质的生物合成(IPEC-J2):DON增加蛋白质的生物合成

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摘要

Deoxynivalenol (DON) is a toxin found in cereals as well as in processed products such as pasta, and causes substantial economic losses for stock breeding as it induces vomiting, reduced feeding, and reduced growth rates in piglets. Oxidative phosphorylation, TCA-cycle, transcription, and translation have been hypothesized to be leading pathways that are affected by DON. We used an application of high and low glucose to examine oxidative phosphorylation and anaerobic glycolysis. A change in the metabolic status of IPEC-J2 was observed and confirmed by microarray data. Measurements of oxygen consumption resulted in a significant reduction, if DON attacks from the basolateral. Furthermore, we found a dose-dependent effect with a significant reduction at 2000 ng/mL. In addition, SLC7A11 and PHB, the genes with the highest regulation in our microarray analyses under low glucose supply, were investigated and showed a variable regulation on protein level. Lactate production and glucose consumption was investigated to examine the impact of DON on anaerobic glycolysis and we observed a significant increase in 2000 bl high and a decrease in 2000 ap high . Interestingly, both groups as well as 200 bl high showed a significant higher de novo protein synthesis when compared to the control. These results indicate the direct or indirect impact of DON on metabolic pathways in IPEC-J2.
机译:脱氧雪腐烯酚(DON)是谷物以及诸如面食之类的加工产品中发现的一种毒素,由于它会引起呕吐,减少饲喂和降低仔猪的生长速度,因此对畜牧业造成巨大的经济损失。氧化磷酸化,TCA循环,转录和翻译已被假设是受DON影响的主要途径。我们使用了高葡萄糖和低葡萄糖的应用来检查氧化磷酸化和厌氧糖酵解。观察到IPEC-J2的代谢状态变化,并通过微阵列数据确认。如果DON从基底外侧侵袭,则耗氧量的测量结果将显着降低。此外,我们发现剂量依赖性效应在2000 ng / mL时显着降低。此外,对SLC7A11和PHB(在我们的微阵列分析中在低葡萄糖供应下具有最高调控作用的基因)进行了调查,结果显示它们对蛋白质水平的调控作用可变。调查了乳酸的产生和葡萄糖的消耗,以研究DON对厌氧糖酵解的影响,我们观察到2000 bl high显着增加,2000 ap high显着下降。有趣的是,与对照组相比,两组以及200 bl高的从头蛋白合成均显示出显着更高的合成。这些结果表明DON对IPEC-J2代谢途径的直接或间接影响。

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