Liu Ruili, Liu Xianxun, Bai Xuejin, Xiao Chaozhu, Dong Yajuan
Laboratory of Animal Physiology and Biochemistry, Animal Embryo Center, College of Animal Science, Qingdao Agricultural University, Qingdao, China.
Laboratory of Animal Molecular Shandong Black Cattle Breeding Engineering Technology Center, College of Animal Science, Qingdao Agricultural University, Qingdao, China.
Front Genet. 2021 May 4;12:631187. doi: 10.3389/fgene.2021.631187. eCollection 2021.
Fat metabolism is closely related to the economic characteristics of beef cattle. Therefore, regulating fat deposition and increasing intramuscular fat deposition are among the main goals of breeders. In this study, we aim to explore the regulatory role of CB1 gene on PPARγ2/PLIN1/HSL pathway in fat metabolism, and to further explore the differential expression of regulatory factors of this pathway in Shandong black cattle and Luxi cattle. In this study, CB1 overexpression stimulated lipid synthesis in adipocytes to some extent by increasing the levels of FASN and ACSL1. CB1 inhibitors reduce the lipid content in adipocytes and reduce the expression of GLUT1 and Insig1. In addition, overexpression of CB1 decreased the expression of PPARγ2 and led to an increase in PLIN1 expression and a decrease in HSL expression in adipocytes. We also found that the CB1/PPARγ2/PLIN1/HSL was differentially expressed in the different breeds of cattle and was involved in the regulation of fat metabolism, which affected the fatty acid content in the longissimus dorsi muscle of the two breeds. In short, CB1 participates in lipid metabolism by regulating HSL in the PPARγ2 and PLIN1 pathways, and improves lipid formation in adipocytes. In conclusion, CB1/PPARγ2/PLIN1/HSL pathway may be involved in the regulation of lipid metabolism.
脂肪代谢与肉牛的经济特性密切相关。因此,调节脂肪沉积和增加肌内脂肪沉积是育种者的主要目标之一。在本研究中,我们旨在探讨CB1基因对脂肪代谢中PPARγ2/PLIN1/HSL途径的调控作用,并进一步探究该途径调控因子在山东黑牛和鲁西牛中的差异表达。在本研究中,CB1过表达通过提高FASN和ACSL1的水平在一定程度上刺激了脂肪细胞中的脂质合成。CB1抑制剂降低了脂肪细胞中的脂质含量,并降低了GLUT1和Insig1的表达。此外,CB1过表达降低了PPARγ2的表达,并导致脂肪细胞中PLIN1表达增加和HSL表达降低。我们还发现,CB1/PPARγ2/PLIN1/HSL在不同品种的牛中存在差异表达,并参与脂肪代谢的调控,这影响了两个品种牛背最长肌中的脂肪酸含量。简而言之,CB1通过在PPARγ2和PLIN1途径中调节HSL参与脂质代谢,并改善脂肪细胞中的脂质形成。总之,CB1/PPARγ2/PLIN1/HSL途径可能参与脂质代谢的调控。