College of Animal Science and Technology, Yangzhou University, Yangzhou 225009, China.
Department of Animal Sciences, Division of Nutritional Sciences, University of Illinois, Urbana, IL 61801, USA.
Int J Mol Sci. 2024 Sep 10;25(18):9785. doi: 10.3390/ijms25189785.
The core clock gene is associated with mammary gland development and lipid synthesis in rodents and has recently been found to have a diurnal variation in the process of lactation, but has not yet been demonstrated in bovine mammary epithelial cells (BMECs). To explore the regulatory function of on milk fat synthesis in bovine mammary epithelial cells, we initially assessed the expression of clock genes and milk fat metabolism genes for 24 h using real-time quantitative PCR and fitted the data to a cosine function curve. Subsequently, we overexpressed the in BMECs using plasmid vector (pcDNA3.1-PER2), with empty vector pcDNA3.1-myc as the control. After transfecting BMECs for 48 h, we assessed the protein abundance related to milk fat synthesis by Western blot, the expression of genes coding for these proteins using real time-quantitative PCR, the production of triacylglycerol, and the fatty acid profile. The findings indicated that a total of nine clock genes (, , , , , , ), seven fatty acid metabolism genes (, , , , , , ), and six nuclear receptor-related genes (, , , , , ) exhibited oscillation with a period close to 24 h in non-transfected BMECs (R ≥ 0.7). Compared to the control group (transfected with empty pcDNA3.1-myc), the triglyceride content significantly increased in the overexpression group ( < 0.05). The lipogenic genes for fatty acid transport and triglyceride synthesis (, , , , and ) were upregulated after overexpression, along with the upregulation of related protein abundance ( < 0.05). The contents and ratios of palmitic acid (C16:0), oleic acid (C18:1n9c), and trans-oleic acid (C18:1n9t) were significantly increased in the overexpression group ( < 0.05). Overall, the data supported that participated in the process of milk fat metabolism and is potentially involved in the de novo synthesis and desaturation of fatty acid in bovine mammary epithelial cells.
核心时钟基因与啮齿动物的乳腺发育和脂质合成有关,最近发现在泌乳过程中昼夜节律变化,但尚未在牛乳腺上皮细胞(BMEC)中得到证实。为了探讨在牛乳腺上皮细胞中时钟基因对乳脂合成的调控作用,我们首先使用实时定量 PCR 评估了时钟基因和乳脂代谢基因在 24 小时内的表达,并将数据拟合到余弦函数曲线中。随后,我们使用质粒载体(pcDNA3.1-PER2)过表达 BMEC 中的,以空载体 pcDNA3.1-myc 作为对照。转染 BMEC 48 小时后,我们通过 Western blot 评估与乳脂合成相关的蛋白质丰度,使用实时定量 PCR 评估这些蛋白质编码基因的表达,测定三酰基甘油的产生和脂肪酸谱。结果表明,在未转染的 BMEC 中,共有 9 个时钟基因(、、、、、、、、)、7 个脂肪酸代谢基因(、、、、、、)和 6 个核受体相关基因(、、、、、)以接近 24 小时的周期振荡(R ≥ 0.7)。与对照组(转染空 pcDNA3.1-myc)相比,过表达组的甘油三酯含量显著增加(<0.05)。脂肪酸转运和甘油三酯合成的生脂基因(、、、和)上调,相关蛋白丰度上调(<0.05)。过表达组中棕榈酸(C16:0)、油酸(C18:1n9c)和反油酸(C18:1n9t)的含量和比例显著增加(<0.05)。综上所述,数据表明 参与了乳脂代谢过程,可能参与了牛乳腺上皮细胞中脂肪酸的从头合成和去饱和作用。