CLCF1 signaling restrains thermogenesis and disrupts metabolic homeostasis by inhibiting mitochondrial biogenesis in brown adipocytes

Author:

Ding Meng1,Xu Hong-yu1,Zhou Wei-yu1,Xia Yi-fan1ORCID,Li Bai-yu1,Shi Yi-jie1,Dou Xin2,Yang Qi-qi1,Qian Shu-wen1,Tang Yan1,Pan Dong-ning1ORCID,Liu Yang1ORCID,Tang Qi-qun1ORCID

Affiliation:

1. Key Laboratory of Metabolism and Molecular Medicine of the Ministry of Education, Department of Biochemistry and Molecular Biology of School of Basic Medical Sciences and Department of Endocrinology and Metabolism of Zhongshan Hospital, Fudan University, Shanghai 200032, China

2. Department of Clinical Laboratory, Shanghai Pudong Hospital, Fudan University, Shanghai, China

Abstract

Great progress has been made in identifying positive regulators that activate adipocyte thermogenesis, but negative regulatory signaling of thermogenesis remains poorly understood. Here, we found that cardiotrophin-like cytokine factor 1 (CLCF1) signaling led to loss of brown fat identity, which impaired thermogenic capacity. CLCF1 levels decreased during thermogenic stimulation but were considerably increased in obesity. Adipocyte-specific CLCF1 transgenic (CLCF1-ATG) mice showed impaired energy expenditure and severe cold intolerance. Elevated CLCF1 triggered whitening of brown adipose tissue by suppressing mitochondrial biogenesis. Mechanistically, CLCF1 bound and activated ciliary neurotrophic factor receptor (CNTFR) and augmented signal transducer and activator of transcription 3 (STAT3) signaling. STAT3 transcriptionally inhibited both peroxisome proliferator-activated receptor-γ coactivator (PGC) 1α and 1β, which thereafter restrained mitochondrial biogenesis in adipocytes. Inhibition of CNTFR or STAT3 could diminish the inhibitory effects of CLCF1 on mitochondrial biogenesis and thermogenesis. As a result, CLCF1-TG mice were predisposed to develop metabolic dysfunction even without external metabolic stress. Our findings revealed a brake signal on nonshivering thermogenesis and suggested that targeting this pathway could be used to restore brown fat activity and systemic metabolic homeostasis in obesity.

Funder

National Key R&D Program of China

Shanghai Rising-Star Program

MOST | National Natural Science Foundation of China

Scientific research projects of Shanghai Health Commission

Scientific Research Foundation provided by Pudong Hospital affiliated to Fudan university

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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