Obese Skeletal Muscle–Expressed Interferon Regulatory Factor 4 Transcriptionally Regulates Mitochondrial Branched-Chain Aminotransferase Reprogramming Metabolome

Author:

Yao Ting123,Yan Hongmei45ORCID,Zhu Xiaopeng45,Zhang Qiongyue67,Kong Xingyu1,Guo Shanshan1,Feng Yonghao6,Wang Hui7,Hua Yinghui8,Zhang Jing45,Mittelman Steven D.3,Tontonoz Peter9,Zhou Zhenqi10,Liu Tiemin147,Kong Xingxing1367ORCID

Affiliation:

1. 1State Key Laboratory of Genetic Engineering and School of Life Sciences, Fudan University, Shanghai, China

2. 2Department of Physiology and Pathophysiology, School of Basic Medical Sciences, Xi’an Jiaotong University School of Medicine, Xi’an, Shaanxi, China

3. 3Division of Pediatric Endocrinology, Department of Pediatrics, UCLA Children’s Discovery and Innovation Institute, David Geffen School of Medicine at UCLA, Los Angeles, CA

4. 4Department of Endocrinology and Metabolism, Zhongshan Hospital, Fudan University, Shanghai, China

5. 5Fudan Institute for Metabolic Disease, Fudan University, Shanghai, China

6. 6Department of Endocrinology and Metabolism, Huashan Hospital, Fudan University, Shanghai, China

7. 7Shanghai Key Laboratory of Metabolic Remodeling and Health, Institute of Metabolism & Integrative Biology, Fudan University, Shanghai, China

8. 8Department of Sports Medicine, Huashan Hospital, Fudan University, Shanghai, China

9. 9Department of Pathology and Laboratory Medicine, University of California, Los Angeles, Los Angeles, CA

10. 10Division of Endocrinology, Diabetes and Hypertension, Department of Medicine, David Geffen School of Medicine at UCLA, Los Angeles, CA

Abstract

In addition to the significant role in physical activity, skeletal muscle also contributes to health through the storage and use of macronutrients associated with energy homeostasis. However, the mechanisms of regulating integrated metabolism in skeletal muscle are not well-defined. Here, we compared the skeletal muscle transcriptome from obese and lean control subjects in different species (human and mouse) and found that interferon regulatory factor 4 (IRF4), an inflammation-immune transcription factor, conservatively increased in obese subjects. Thus, we investigated whether IRF4 gain of function in the skeletal muscle predisposed to obesity and insulin resistance. Conversely, mice with specific IRF4 loss in skeletal muscle showed protection against the metabolic effects of high-fat diet, increased branched-chain amino acids (BCAA) level of serum and muscle, and reprogrammed metabolome in serum. Mechanistically, IRF4 could transcriptionally upregulate mitochondrial branched-chain aminotransferase (BCATm) expression; subsequently, the enhanced BCATm could counteract the effects caused by IRF4 deletion. Furthermore, we demonstrated that IRF4 ablation in skeletal muscle enhanced mitochondrial activity, BCAA, and fatty acid oxidation in a BCATm-dependent manner. Taken together, these studies, for the first time, established IRF4 as a novel metabolic driver of macronutrients via BCATm in skeletal muscle in terms of diet-induced obesity.

Funder

American Heart Association

National Natural Science Foundation of China

NIH

National Key R&D Program of China

Young Foundation of Zhongshan Hospital Fudan University

China Scholarship Council

Publisher

American Diabetes Association

Subject

Endocrinology, Diabetes and Metabolism,Internal Medicine

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