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全蛋摄入增加了 Zucker 糖尿病肥胖大鼠肝脏中谷胱甘肽途径的基因表达。

Whole egg consumption increases gene expression within the glutathione pathway in the liver of Zucker Diabetic Fatty rats.

机构信息

Department of Food Science and Human Nutrition, Iowa State University, Ames, IA, United States of America.

Interdepartmental Graduate Program in Nutritional Sciences, Iowa State University, Ames, IA, United States of America.

出版信息

PLoS One. 2020 Nov 3;15(11):e0240885. doi: 10.1371/journal.pone.0240885. eCollection 2020.

Abstract

Nutrigenomic evidence supports the idea that Type 2 Diabetes Mellitus (T2DM) arises due to the interactions between the transcriptome, individual genetic profiles, lifestyle, and diet. Since eggs are a nutrient dense food containing bioactive ingredients that modify gene expression, our goal was to examine the role of whole egg consumption on the transcriptome during T2DM. We analyzed whether whole egg consumption in Zucker Diabetic Fatty (ZDF) rats alters microRNA and mRNA expression across the adipose, liver, kidney, and prefrontal cortex tissue. Male ZDF (fa/fa) rats (n = 12) and their lean controls (fa/+) (n = 12) were obtained at 6 wk of age. Rats had ad libitum access to water and were randomly assigned to a modified semi-purified AIN93G casein-based diet or a whole egg-based diet, both providing 20% protein (w/w). TotalRNA libraries were prepared using QuantSeq 3' mRNA-Seq and Lexogen smallRNA library prep kits and were further sequenced on an Illumina HighSeq3000. Differential gene expression was conducted using DESeq2 in R and Benjamini-Hochberg adjusted P-values controlling for false discovery rate at 5%. We identified 9 microRNAs and 583 genes that were differentially expressed in response to 8 wk of consuming whole egg-based diets. Kyto Encyclopedia of Genes and Genomes/Gene ontology pathway analyses demonstrated that 12 genes in the glutathione metabolism pathway were upregulated in the liver and kidney of ZDF rats fed whole egg. Whole egg consumption primarily altered glutathione pathways such as conjugation, methylation, glucuronidation, and detoxification of reactive oxygen species. These pathways are often negatively affected during T2DM, therefore this data provides unique insight into the nutrigenomic response of dietary whole egg consumption during the progression of T2DM.

摘要

营养基因组学证据支持这样一种观点,即 2 型糖尿病(T2DM)是由于转录组、个体遗传特征、生活方式和饮食之间的相互作用而产生的。由于鸡蛋是一种营养丰富的食物,含有可修饰基因表达的生物活性成分,我们的目标是研究在 T2DM 期间全蛋消费对转录组的影响。我们分析了在 Zucker 糖尿病肥胖(ZDF)大鼠中消耗全蛋是否会改变脂肪、肝脏、肾脏和前额叶皮层组织中的 microRNA 和 mRNA 表达。雄性 ZDF(fa/fa)大鼠(n = 12)及其瘦对照(fa/+)(n = 12)在 6 周龄时获得。大鼠可自由饮水,并随机分配到改良的半纯化 AIN93G 酪蛋白基础饮食或全蛋基础饮食,两者均提供 20%的蛋白质(w/w)。使用 QuantSeq 3' mRNA-Seq 和 Lexogen smallRNA 文库制备试剂盒制备总 RNA 文库,并在 Illumina HighSeq3000 上进一步测序。在 R 中使用 DESeq2 进行差异基因表达分析,并使用 Benjamini-Hochberg 调整 P 值控制假发现率在 5%以内。我们鉴定出 9 个 microRNA 和 583 个基因,这些基因在 8 周消耗全蛋饮食后表达差异。京都基因与基因组百科全书/基因本体论途径分析表明,在喂食全蛋的 ZDF 大鼠的肝脏和肾脏中,谷胱甘肽代谢途径中的 12 个基因上调。全蛋消耗主要改变了谷胱甘肽途径,如共轭、甲基化、葡萄糖醛酸化和活性氧的解毒。这些途径在 T2DM 期间通常受到负面影响,因此该数据为在 T2DM 进展过程中全蛋饮食的营养基因组反应提供了独特的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6144/7608885/03e7c544d71e/pone.0240885.g001.jpg

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