脂质代谢
内科学
内分泌学
脂肪变性
胆固醇
脂滴
脂肪组织
生物
心磷脂
新陈代谢
化学
磷脂
生物化学
医学
膜
作者
Miaomiao Du,Xueyun Li,Fangyi Xiao,Yinxu Fu,Yu Shi,Sihan Guo,Lifang Chen,Lu Shen,Lan Wang,Huang Cheng,Hao Li,Anran Xie,Yaping Zhou,Kaiqiang Yang,Hezhi Fang,Jianxin Lyu,Qiongya Zhao
标识
DOI:10.1016/j.metabol.2022.155244
摘要
Objective Although the serine active site containing 1 (SERAC1) protein is essential for cardiolipin remodeling and cholesterol transfer, its physiological role in whole-body energy metabolism remains unclear. Thus, we investigated the role of SERAC1 in lipid distribution and metabolism in mice. Methods CRISPR/Cas9 was used to create homozygous Serac1 knockout mice. A range of methods, including electron microscopy, histological analysis, DNA sequencing, glucose and insulin tolerance tests, and biochemical analysis of serum lipid levels, were used to assess lipid distribution and rates of lipid synthesis in mice. Results We found that Serac1 depletion in mice prevented high-fat diet-induced obesity but did not affect energy expenditure. The liver was affected by Serac1 depletion, but adipose tissues were not. Serac1 depletion was shown to impair cholesterol transfer from the liver to the serum and led to an imbalance in cholesterol distribution. The livers from mice with Serac1 depletion showed increased cholesterol synthesis because the levels of cholesterol synthesis enzymes were upregulated. Moreover, the accumulation of hepatic lipid droplets in mice with Serac1 depletion were decreased, suggesting that SERAC1 depletion may decrease the risk for hepatic steatosis in high fat diet-induced mice. Conclusion Our findings demonstrate that SERAC1 can serve as a potential target for the treatment or prevention of diet-induced hepatic lipid metabolic disorders.
科研通智能强力驱动
Strongly Powered by AbleSci AI