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首页> 外文期刊>The FASEB Journal >Lower miR-26a levels in breastmilk affect gene expression in adipose tissue of offspring
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Lower miR-26a levels in breastmilk affect gene expression in adipose tissue of offspring

机译:母乳中的较低miR-26a水平影响后代脂肪组织中的基因表达

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Breastmilk miRNAs may act as epigenetic regulators of metabolism and energy homeostasis in offspring. Here, we aimed to investigate the regulatory effects of miR-26a on adipose tissue development. First, the 3T3-L1 cell model was used to identify putative target genes for miR-26a. Then, target genes were analysed in adipose tissue of offspring from dams that supplied lower levels of breastmilk miR-26a to determine whether miR-26a milk concentration might have a longlasting impact on adipose tissue in the progeny. In the in vitro model, both overand under-expression of miR-26a were induced by transfecting into 3T3-L1 with miR-26a mimic and inhibitor. Array analysis was performed after induction of miR-26a to ascertain the impact on mRNA target genes and influence of differentiation status. Focusing on genes related to adipose tissue development, transfection with miR-26a mimic reduced the expression of Pten, Hmga1, Stk11, Rb1, and Adam17 in both pre- and mature adipocytes. Data mostly confirmed the results found in the animal model. After weaning, descendants of cafeteria-fed dams breastfed with lower levels of miR-26a displayed greater expression of Hmag1, Rb1, and Adam17 in retroperitoneal white adipose tissue in comparison with controls. Hence, alterations in the amount of miR-26a supplied through milk during lactation is able to alter the expression of target genes in the descendants and may affect adipose tissue development. Thus, milk miR-26a may act as an epigenetic regulator influencing early metabolic program in the progeny, which emerges as a relevant component of an optimal milk composition for correct development.
机译:母乳麦克纳斯可以作为后代代谢和能量稳态的表观遗传调节因子。在这里,我们旨在探讨miR-26a对脂肪组织发育的调节作用。首先,3T3-L1细胞模型用于鉴定miR-26a的推定靶基因。然后,在从水坝的后代的后代的脂肪组织中分析靶基因,该坝体提供较低水平的母乳MIR-26a,以确定miR-26a牛奶浓度是否可能对后代的脂肪组织产生长效果。在体外模型中,通过用miR-26a模拟物和抑制剂转化为3t3-l1,诱导miR-26a的二次表达。在诱导miR-26a后进行阵列分析,以确定对mRNA靶基因的影响和分化状态的影响。专注于与脂肪组织发育有关的基因,用miR-26a转染模仿PTEN,HMGA1,STK11,RB1和ADAM17中的PTEN,HMGA1,STK11,RB1和ADAM17中的表达。数据主要确认了动物模型中的结果。断奶后,与对照相比,母乳喂养母乳喂养的自由型母乳喂养的母乳喂养的母乳喂养的母乳喂养的母乳喂养的母乳喂养的表达更大表达HMAG1,RB1和ADAM17。因此,在泌乳期间通过牛奶提供的miR-26a的变化能够改变后代靶基因的表达,并且可能影响脂肪组织发育。因此,乳miR-26a可以作为影响后代的表观遗传调节剂,其作为正确发育的最佳牛奶组合物的相关组成部分。

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