Targeting peroxisome proliferator‐activated receptor γ proteasomal degradation by magnolol is a potential avenue for adipogenesis‐mediated metabolic homeostasis

Author:

Li Peng‐Long12ORCID,Li Mei1,Wang Zhenya23,Wang Xiao‐Ming12,Liu Shuai‐Yang12,Tian Song12,Wang Zhou‐Xiang12,Cheng Xu45,Hu Yufeng45,Zhang Peng12,She Zhi‐Gang23,Yang Hailong45ORCID,Li Hongliang12346,Zhang Xiao‐Jing12

Affiliation:

1. School of Basic Medical Sciences Wuhan University Wuhan China

2. Institute of Model Animal Wuhan University Wuhan China

3. Department of Cardiology Renmin Hospital of Wuhan University Wuhan China

4. Gannan Innovation and Translational Medicine Research Institute Gannan Medical University Ganzhou China

5. Key Laboratory of Cardiovascular Disease Prevention and Control, Ministry of Education, First Affiliated Hospital Gannan Medical University Ganzhou China

6. Medical Science Research Center Zhongnan Hospital of Wuhan University Wuhan China

Abstract

AbstractObjectiveAdipogenesis has been recognized as an attractive avenue for maintaining systemic homeostasis, with peroxisome proliferator‐activated receptor γ (PPARγ) showing predominant roles in this process. This study aims to identify promising drug candidates by targeting PPARγ for adipogenesis‐based metabolic homeostasis and to clarify the detailed mechanisms.MethodsMolecular events contributing to adipogenesis were screened, which identified PPARγ as having the predominant role. Promising agents of adipogenesis agonism were screened using a PPARγ‐based luciferase reporter assay. The functional capacity and molecular mechanisms of magnolol were intensively examined using 3T3‐L1 preadipocytes and dietary models.ResultsThis study found that F‐box only protein 9 (FBXO9)‐mediated lysine 11 (K11)‐linked ubiquitination and proteasomal degradation of PPARγ are critically required during adipogenesis and systemic homeostasis. Notably, magnolol was identified as a potent adipogenesis activator by stabilizing PPARγ. The pharmacological mechanisms investigations clarified that magnolol directly binds to PPARγ and markedly interrupts its interaction with FBXO9, leading to a decline in K11‐linked ubiquitination and proteasomal degradation of PPARγ. Clinically important, magnolol treatment significantly facilitates adipogenesis in vitro and in vivo.ConclusionsThe downregulation of K11‐linked ubiquitination of PPARγ caused by FBOX9 is essentially required for adipogenesis, while targeting PPARγ‐FBXO9 interaction provides a new avenue for the therapy of adipogenesis‐related metabolic disorder.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Nutrition and Dietetics,Endocrinology,Endocrinology, Diabetes and Metabolism,Medicine (miscellaneous)

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