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首页> 外文期刊>The British Journal of Nutrition >Effects of two types of energy restriction on methylation levels of adiponectin receptor 1 and leptin receptor overlapping transcript in a mouse mammary tumour virus-transforming growth factor-alpha breast cancer mouse model
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Effects of two types of energy restriction on methylation levels of adiponectin receptor 1 and leptin receptor overlapping transcript in a mouse mammary tumour virus-transforming growth factor-alpha breast cancer mouse model

机译:两种能量限制对小鼠乳腺肿瘤病毒转化生长因子-α乳腺癌模型中脂联素受体1和瘦蛋白受体1和瘦蛋白受体重叠转录物的甲基化水平的影响

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The role of adiponectin and leptin signalling pathways has been suggested to play important roles in the protective effects of energy restriction (ER) on mammary tumour (MT) development. To study the effects of ER on the methylation levels in adiponectin receptor 1 (AdipoR1) and leptin receptor overlapping transcript (Leprot) genes using the pyrosequencing method in mammary fat pad tissue, mouse mammary tumour virus-transforming growth factor-alpha (MMTV-TGF-alpha) female mice were randomly assigned to ad libitum (AL), chronic ER (CER, 15 % ER) or intermittent ER (3 weeks AL and 1 week 60 % ER in cyclic periods) groups at 10 weeks of age until 82 weeks of age. The methylation levels of AdipoR1 in the CER group were higher than those in the AL group at week 49/50 (P < 0 center dot 05), while the levels of methylation for AdipoR1 and Leprot genes were similar among the other groups. Also, the methylation levels at CpG2 and CpG3 regions of the promoter region of the AdipoR1 gene in the CER group were three times higher (P < 0 center dot 05), while CpG1 island of Leprot methylation was significantly lower compared with the other groups (P < 0 center dot 05). Adiponectin and leptin gene expression levels were consistent with the methylation levels. We also observed a change with ageing in methylation levels of these genes. These results indicate that different types of ER modify methylation levels of AdipoR1 and Leprot in different ways and CER had a more significant effect on methylation levels of both genes. Epigenetic regulation of these genes may play important roles in the preventive effects of ER against MT development and ageing processes.
机译:脂联素和瘦素信号通路在能量限制(ER)对乳腺肿瘤(MT)发展的保护作用中起着重要作用。为了研究ER对乳腺脂肪垫组织中脂联素受体1(AdipoR1)和瘦素受体重叠转录物(Leprot)基因甲基化水平的影响,采用焦磷酸测序法,将小鼠乳腺肿瘤病毒转化生长因子α(MMTV TGFα)雌性小鼠随机分配到随意(AL)组,慢性ER(CER,15%ER)或间歇性ER(周期性周期为3周AL和1周60%ER)组在10周龄至82周龄之间。在第49/50周,CER组的AdipoR1甲基化水平高于AL组(P<0.05),而其他组的AdipoR1和Leprot基因甲基化水平相似。此外,CER组AdipoR1基因启动子区CpG2和CpG3区域的甲基化水平是其他组的三倍(P<0.05),而Leprot甲基化的CpG1岛显著低于其他组(P<0.05)。脂联素和瘦素基因表达水平与甲基化水平一致。我们还观察到这些基因的甲基化水平随着年龄的增长而发生变化。这些结果表明,不同类型的内质网以不同的方式改变AdipoR1和Leprot的甲基化水平,CER对这两个基因的甲基化水平有更显著的影响。这些基因的表观遗传调控可能在ER对MT发育和衰老过程的预防作用中发挥重要作用。

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