Liu Jie, Wei Xiangfei, Zhang Yan, Ran Yaoxiang, Qu Bo, Wang Chunmei, Zhao Feng, Zhang Li
The Key Laboratory of Dairy Science of Education Ministry, Northeast Agricultural University, Harbin, China.
Cell Biol Int. 2024 Mar;48(3):300-310. doi: 10.1002/cbin.12106. Epub 2023 Dec 15.
Mastitis is among the main factors affecting milk quality and yield. Although DNA methylation is associated with mastitis, its role in mastitis remains unclear. In this study, a bovine mastitis mammary epithelial cells (BMMECs) model was established via Staphylococcus aureus infection of bovine mammary gland epithelial cells (BMECs). Bisulfite sequencing PCR was used to determine the methylation status of the AKT1 promoter in BMMECs. We found that the degree of the AKT1 promoter methylation in BMMECs was significantly greater than that in BMECs, and the expression levels of genes related to milk protein synthesis were significantly decreased. We used the pdCas9-C-Tet1-SgRNA 2.0 system to regulate the methylation status of the AKT1 promoter. High-efficiency sgRNAs were screened and dCas9-guided AKT1 promoter demethylation vectors were constructed. Following transfection with the vectors, the degree of methylation of the AKT1 promoter was significantly reduced in BMMECs, while AKT1 protein levels increased. When the methylation level of the AKT1 promoter decreased, the synthesis of milk proteins and the expression levels of genes related to milk protein synthesis increased significantly. The viability of the BMMECs was enhanced. Taken together, these results indicate that demethylation guided by the pdCas9-C-Tet1-SgRNA 2.0 system on the AKT1 promoter can reactivate the expression of AKT1 and AKT1/mTOR signaling pathway-related proteins by reducing the AKT1 promoter methylation level and promoting the recovery milk protein expression in BMMECs, thereby alleviating the symptoms of mastitis.
乳腺炎是影响牛奶质量和产量的主要因素之一。尽管DNA甲基化与乳腺炎有关,但其在乳腺炎中的作用仍不清楚。在本研究中,通过用金黄色葡萄球菌感染牛乳腺上皮细胞(BMECs)建立了牛乳腺炎乳腺上皮细胞(BMMECs)模型。采用亚硫酸氢盐测序PCR法检测BMMECs中AKT1启动子的甲基化状态。我们发现,BMMECs中AKT1启动子的甲基化程度显著高于BMECs,且与乳蛋白合成相关的基因表达水平显著降低。我们使用pdCas9-C-Tet1-SgRNA 2.0系统来调节AKT1启动子的甲基化状态。筛选出高效的sgRNAs并构建了dCas9引导的AKT1启动子去甲基化载体。用这些载体转染后,BMMECs中AKT1启动子的甲基化程度显著降低,而AKT1蛋白水平升高。当AKT1启动子的甲基化水平降低时,可以显著提高乳蛋白的合成以及与乳蛋白合成相关的基因表达水平。BMMECs的活力增强。综上所述,这些结果表明,pdCas9-C-Tet1-SgRNA 2.0系统引导的AKT1启动子去甲基化可以通过降低AKT1启动子甲基化水平,促进BMMECs中乳蛋白表达的恢复,从而重新激活AKT1及AKT1/mTOR信号通路相关蛋白的表达,进而缓解乳腺炎症状。