Junying Jiao, Ning Xu, Zhixuan Hong, Lei Chang, Derong Huang, Yang Yu, Zhendi Wang, Yibai Li, Jiaxin Yu, Juntao Guo, You Wang, Lirun Kuang, Yong Wang, Bei Yang, Rui Zhao, Yongyong Hou, Huihui Wang, Qiang Zhang, Ping Xu, Yuanyuan Xu, Jingbo Pi, Jingqi Fu
Hypercholesterolemia and hyperlipidemia are major contributors to the pathogenesis and progression of atherosclerosis and cardiovascular diseases (CVDs). Nuclear factor erythroid-derived 2-like 2 (NRF2) exerts antioxidant and anti-inflammatory effects while regulating glucose and lipid metabolism. However, the precise role and molecular mechanisms of NRF2 in hepatic cholesterol metabolism remain incompletely understood. Approach and Results: ApoE-knockout (ApoE-KO) mice were crossed with hepatocyte-specific Nrf2-knockout (Nrf2(H)-KO) mice to explore how NRF2 modulated cholesterol metabolism and the progression of atherosclerosis in vivo. Atherosclerotic lesion areas in Nrf2(H)-KO;ApoE-KO mice were significantly reduced compared with control counterparts (Nrf2-LoxP;ApoE-KO). Total cholesterol and LDL-cholesterol levels in plasma of Nrf2(H)-KO;ApoE-KO mice were significantly decreased, consistent with atherosclerotic phenotypes. Furthermore, hepatic triglyceride levels and cholesterol contents were increased in Nrf2(H)-KO;ApoE-KO mice. The hepatic transcriptomic analysis highlighted lipid metabolism pathway alterations in Nrf2(H)-KO;ApoE-KO mice, and carboxylesterase 1 (Ces1s) and lipocalin gene family member major urinary proteins (Mups) clusters markedly reduced expression in Nrf2(H)-KO;ApoE-KO livers. Liver proteomics analysis corroborated the transcriptomic findings. The current findings suggest that NRF2-modulated CES1s and MUPs may regulate cholesterol metabolism in the ApoE-KO model. Conclusions: Hepatocyte-specific Nrf2 deficiency significantly reduced plasma cholesterol levels, thereby attenuating atherosclerotic plaque formation and progression in the ApoE-KO background. This study established NRF2 in hepatocytes as a potential therapeutic target for controlling hypercholesterolemia and preventing atherosclerosis development.