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Maternal Low-Protein Diet Affects Epigenetic Regulation of Hepatic Mitochondrial DNA Transcription in a Sex-Specific Manner in Newborn Piglets Associated with GR Binding to Its Promoter

机译:母体低蛋白饮食以遗传特异的方式影响新生仔猪肝线粒体DNA转录的表观遗传调控其性别特异性。

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摘要

Mitochondrial oxidative phosphorylation (OXPHOS) plays an important role in energy homeostasis by controlling electron transfer and ATP generation. Maternal malnutrition during pregnancy affects mitochondrial (mt) DNA-encoded OXPHOS activity in offspring, yet it is unknown whether epigenetic mechanism is involved in the transcriptional regulation of mtDNA-encoded OXPHOS genes. In this study, 14 primiparous purebred Meishan sows were fed either standard- (SP, 12% crude protein) or low-protein (LP; 6% crude protein) diets throughout gestation, and the hepatic expression and transcriptional regulation of mtDNA-encoded OXPHOS genes were analyzed in newborn piglets. Maternal low protein diet decreased hepatic mtDNA copy number in males, but not in females. LP male piglets had significantly higher hepatic AMP concentration and low energy charge, which was accompanied by enhanced mRNA expression of NADH dehydrogenase subunits 6, cytochrome c oxidase subunit 1, 2, 3 and cytochrome b, as well as increased cytochrome c oxidase enzyme activity. In contrast, LP female piglets showed significantly lower hepatic AMP concentrations and higher energy charge with no alterations in OXPHOS gene expression. Moreover, LP males demonstrated higher glucocorticoid receptor (GR) binding to the mtDNA promoter compared with SP males, which was accompanied by lower cytosine methylation and hydroxymethylation on mtDNA promoter. Interestingly, opposite changes were seen in females, which showed diminished GR binding and enriched cytosine methylation and hydroxymethylation on mtDNA promoter. These results suggest that maternal low protein diet during pregnancy causes sex-dependent epigenetic alterations in mtDNA-encoded OXPHOS gene expression, possibly GR is involved in mtDNA transcription regulation.
机译:线粒体氧化磷酸化(OXPHOS)通过控制电子转移和ATP的生成在能量稳态中发挥重要作用。怀孕期间的母亲营养不良会影响后代的线粒体(mt)DNA编码的OXPHOS活性,但尚不清楚表观遗传机制是否参与mtDNA编码的OXPHOS基因的转录调控。在这项研究中,在整个妊娠过程中,对14头初产纯种梅山母猪饲喂标准(SP,12%粗蛋白)或低蛋白(LP; 6%粗蛋白)日粮,以及mtDNA编码的OXPHOS的肝表达和转录调控对新生仔猪的基因进行了分析。母体低蛋白饮食降低了男性的肝mtDNA拷贝数,但没有降低女性。 LP雄性仔猪的肝AMP浓度显着升高,能量电荷低,同时伴随着NADH脱氢酶亚基6,细胞色素c氧化酶亚基1、2、3和细胞色素b的mRNA表达增强,以及细胞色素c氧化酶活性增加。相反,LP雌猪显示出较低的肝AMP浓度和较高的能量电荷,而OXPHOS基因表达没有变化。而且,与SP雄性相比,LP雄性表现出更高的糖皮质激素受体(GR)与mtDNA启动子的结合,同时伴随着mtDNA启动子较低的胞嘧啶甲基化和羟甲基化。有趣的是,在雌性中观察到相反的变化,这表明GR结合减少,mtDNA启动子上的胞嘧啶甲基化和羟甲基化富集。这些结果表明,孕妇低蛋白饮食在怀孕期间会导致mtDNA编码的OXPHOS基因表达的性别依赖性表观遗传学改变,可能是GR参与了mtDNA转录调控。

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