Tumor Necrosis Factor Receptor–Associated Factor 3 Is a Positive Regulator of Pathological Cardiac Hypertrophy

Author:

Jiang Xi1,Deng Ke-Qiong1,Luo Yuxuan1,Jiang Ding-Sheng1,Gao Lu1,Zhang Xiao-Fei1,Zhang Peng1,Zhao Guang-Nian1,Zhu Xueyong1,Li Hongliang1

Affiliation:

1. From the Department of Cardiology, Renmin Hospital (X.J., K.-Q.D., D.-S.J., P.Z., G.-N.Z., H.L.), Cardiovascular Research Institute (X.J., K.-Q.D., D.-S.J., P.Z., G.-N.Z., X.Z., H.L.), and College of Life Sciences (X.-F.Z., G.-N.Z.), Wuhan University, Wuhan, PR China; Institute for Viral Hepatitis, Key Laboratory of Molecular Biology for Infectious Diseases, Ministry of Education, Second Affiliated Hospital of Chongqing Medical University, Chongqing, PR China (Y.L.); and Department of Cardiology,...

Abstract

Cardiac hypertrophy, a common early symptom of heart failure, is regulated by numerous signaling pathways. Here, we identified tumor necrosis factor receptor–associated factor 3 (TRAF3), an adaptor protein in tumor necrosis factor–related signaling cascades, as a key regulator of cardiac hypertrophy in response to pressure overload. TRAF3 expression was upregulated in hypertrophied mice hearts and failing human hearts. Four weeks after aortic banding, cardiac-specific conditional TRAF3-knockout mice exhibited significantly reduced cardiac hypertrophy, fibrosis, and dysfunction. Conversely, transgenic mice overexpressing TRAF3 in the heart developed exaggerated cardiac hypertrophy in response to pressure overload. TRAF3 also promoted an angiotensin II– or phenylephrine-induced hypertrophic response in isolated cardiomyocytes. Mechanistically, TRAF3 directly bound to TANK-binding kinase 1 (TBK1), causing increased TBK1 phosphorylation in response to hypertrophic stimuli. This interaction between TRAF3 and TBK1 further activated AKT signaling, which ultimately promoted the development of cardiac hypertrophy. Our findings not only reveal a key role of TRAF3 in regulating the hypertrophic response but also uncover TRAF3–TBK1–AKT as a novel signaling pathway in the development of cardiac hypertrophy and heart failure. This pathway may represent a potential therapeutic target for this pathological process.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Internal Medicine

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