College of Animal Science and Technology, Northeast Agricultural University, Harbin 150030, China.
School of Nursing, Yangzhou University, Yangzhou 225009, China.
Genes (Basel). 2020 Feb 13;11(2):196. doi: 10.3390/genes11020196.
The aim of the study was to understand the internal relationship between milk quality and lipid metabolism in cow mammary glands. A serial of studies was conducted to assess the molecular mechanism of PRL/microRNA-183/IRS1 (Insulin receptor substrate) pathway, which regulates milk fat metabolism in dairy cows. microRNA-183 (miR-183) was overexpressed and inhibited in cow mammary epithelial cells (CMECs), and its function was detected. The function of miR-183 in inhibiting milk fat metabolism was clarified by triglycerides (TAG), cholesterol and marker genes. There is a CpG island in the 5'-flanking promoter area of miR-183, which may inhibit the expression of miR-183 after methylation. Our results showed that prolactin (PRL) inhibited the expression of miR-183 by methylating the 5' terminal CpG island of miR-183. The upstream regulation of PRL on miR-183 was demonstrated, and construction of the lipid metabolism regulation network of microRNA-183 and target gene IRS1 was performed. These results reveal the molecular mechanism of PRL/miR-183/IRS1 pathway regulating milk fat metabolism in dairy cows, thus providing an experimental basis for the improvement of milk quality.
本研究旨在了解奶牛乳腺中牛奶质量与脂质代谢之间的内在关系。进行了一系列研究来评估 PRL/microRNA-183/IRS1(胰岛素受体底物)通路调节奶牛乳脂代谢的分子机制。microRNA-183(miR-183)在奶牛乳腺上皮细胞(CMECs)中过表达和抑制,并检测其功能。通过甘油三酯(TAG)、胆固醇和标记基因阐明了 miR-183 抑制乳脂代谢的功能。miR-183 的 5'侧翼启动子区域存在一个 CpG 岛,甲基化后可能会抑制 miR-183 的表达。我们的结果表明,催乳素(PRL)通过甲基化 miR-183 的 5'端 CpG 岛抑制 miR-183 的表达。证明了 PRL 对 miR-183 的上游调控,并构建了 microRNA-183 和靶基因 IRS1 的脂质代谢调控网络。这些结果揭示了 PRL/miR-183/IRS1 通路调节奶牛乳脂代谢的分子机制,为改善牛奶质量提供了实验依据。