JAZF1 ameliorates age and diet-associated hepatic steatosis through SREBP-1c -dependent mechanism

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作者
Qin Wei
Baoyong Zhou
Gangyi Yang
Wenjing Hu
Lili Zhang
Rui Liu
Minyan Li
Kuan Wang
Harvest F. Gu
Youfei Guan
Zhiming Zhu
Hongting Zheng
Jun Peng
Ling Li
机构
[1] College of Laboratory Medicine,Key Laboratory of Diagnostic Medicine (Ministry of Education) and Department of Clinical Biochemistry
[2] Chongqing Medical University,Department of Endocrinology, the Second Affiliated Hospital
[3] Chongqing Medical University,Department of Hepatobiliary Surgery
[4] First Affiliated Hospital,School of Basic Medicine and Clinical Pharmacy
[5] Chongqing Medical University,Department of Clinical Science
[6] China Pharmaceutical University,Advanced Institute for Medical Sciences
[7] Intervention and Technology,Department of Hypertension and Endocrinology
[8] Karolinska University Hospital,Department of Endocrinology
[9] Karolinska Institutet,undefined
[10] Huddinge,undefined
[11] Dalian Medical University,undefined
[12] Daping Hospital,undefined
[13] Third Military Medical University,undefined
[14] Chongqing Institute of Hypertension,undefined
[15] Xinqiao Hospital,undefined
[16] Third Military Medical University,undefined
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摘要
JAZF zinc finger 1 (JAZF1) is involved in glucose and lipid metabolisms. However, its role in aging- and nutrient-related hepatic steatosis is unclear. In the current study, we demonstrated that JAZF1 expression was markedly down-regulated in obesity-associated mice and nonalcoholic fatty liver disease (NAFLD) patients. During aging, JAZF1 expression was gradually down-regulated in both C57BL/6 J and JAZF1-Tg mice. In JAZF1-Tg mice, body fat content and hepatosteatosis were protected from HFD-induced steatosis, and accompanied by decreased lipogenesis gene expression. The inhibitory effects of hepatic steatosis in JAZF1-Tg mice, however, were disappeared during aging. In hepatocytes, over-expression of JAZF1 attenuated, while knockdown of JAZF1 enhanced the expression of lipogenesis genes. The over-expressing of JAZF1 in hepatocytes displayed the increased adenosine monophosphate-activated protein kinase (AMPK) phosphorylation and decreased sterol regulatory element-binding protein 1c (SREBP-1c) expression. The roles of JAZF1 were partially attenuated by Compound C. Mechanistically, JAZF1 suppressed SREBP-1c expression through the inhibition of transcriptional activity of liver X receptor response elements (LXREs) in the SREBP-1c promoter. Data illustrate that JAZF1 may have a crucial role in the regulation of age and nutrient-associated hepatosteatosis through an AMPK/SREBP-1c-dependent mechanism.
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