Osteocytes/Osteoblasts Produce SAA3 to Regulate Hepatic Metabolism of Cholesterol

Author:

Huang Shijiang1,Jiang Yuanjun1,Li Jing2,Mao Linlin1,Qiu Zeyou34,Zhang Sheng1,Jiang Yuhui1,Liu Yong1,Liu Wen1,Xiong Zhi1,Zhang Wuju15,Liu Xiaolin1,Zhang Yue1,Bai Xiaochun16,Guo Bin17

Affiliation:

1. State Key Laboratory of Organ Failure Research Department of Cell Biology School of Basic Medical Sciences Southern Medical University Guangzhou Guangdong 510515 China

2. Department of Obstetrics and Gynecology Nanfang Hospital Southern Medical University Guangzhou Guangdong 510515 China

3. Department of Biochemistry and Molecular Biology School of Basic Medical Sciences Southern Medical University Guangzhou Guangdong 510515 China

4. Equipment Material Department West China Xiamen Hospital of Sichuan University Xiamen Fujian 361000 China

5. Central Laboratory The Fifth Affiliated Hospital Southern Medical University Guangzhou Guangdong 510900 China

6. Guangdong Provincial Key Laboratory of Bone and Joint Degenerative Diseases The Third Affiliated Hospital of Southern Medical University Guangzhou Guangdong 510630 China

7. The Tenth Affiliated Hospital Southern Medical University Dongguan Guangdong 523018 China

Abstract

AbstractHypercholesterolaemia is a systemic metabolic disease, but the role of organs other than liver in cholesterol metabolism is unappreciated. The phenotypic characterization of the Tsc1Dmp1 mice reveal that genetic depletion of tuberous sclerosis complex 1 (TSC1) in osteocytes/osteoblasts (Dmp1Cre) triggers progressive increase in serum cholesterol level. The resulting cholesterol metabolic dysregulation is shown to be associated with upregulation and elevation of serum amyloid A3 (SAA3), a lipid metabolism related factor, in the bone and serum respectively. SAA3, elicited from the bone, bound to toll‐like receptor 4 (TLR4) on hepatocytes to phosphorylate c‐Jun, and caused impeded conversion of cholesterol to bile acids via suppression on cholesterol 7 α‐hydroxylase (Cyp7a1) expression. Ablation of Saa3 in Tsc1Dmp1 mice prevented the CYP7A1 reduction in liver and cholesterol elevation in serum. These results expand the understanding of bone function and hepatic regulation of cholesterol metabolism and uncover a potential therapeutic use of pharmacological modulation of SAA3 in hypercholesterolaemia.

Funder

National Natural Science Foundation of China

China Postdoctoral Science Foundation

Publisher

Wiley

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