TRIM21enhances IL-17A signaling and drives autoimmune myocarditis by promoting TRAF3 lysosomaldegradation in cardiac fibroblasts

Y Yahui Song (Institutes of Biology and Medical Sciences, Soochow University) X Xuege Huang (Institutes of Biology and Medical Sciences, Soochow University) L Lin Wei (Department of Infectious Diseases, The Second Affiliated Hospital of Anhui Medical University) W Wenwen Shen (Institutes of Biology and Medical Sciences, Soochow University) J Jiapeng Gao (Institutes of Biology and Medical Sciences, Soochow University) K Kai Hou (Research Center, Pu’er People’s Hospital, School of Medicine, Kunming University of Science and Technology) B Bin Yang Y Yi Wang G Guang Hu (Ministry of Education Key Laboratory of Geriatric Diseases and Immunology, Suzhou Key Laboratory of Pathogen Bioscience and Anti-infective Medicine, Center for Systems Biology, School of Life Sciences, Suzhou Medical College of Soochow University) W Wei Xu J Jing Guo W Wenlong Lin (The Second Affiliated Hospital, Department of Orthopedics, Zhejiang University School of Medicine) M Min Li

Abstract

Myocarditis is a potentially fatal disease that can progress to inflammatory dilated cardiomyopathy (DCMi), a condition that is a leading cause of noncongenital heart failure in young adults. However, the mechanisms driving the transition from acute myocarditis to DCMi remain poorly understood. Although IL-17A-mediated inflammation is a well-known driver of this progression, the intracellular regulators that sustain and amplify this response remain unclear. Here, we identify the E3 ubiquitin ligase TRIM21, which is upregulated in the hearts of DCMi patients and experimental autoimmune myocarditis (EAM) mice, as a key amplifier of IL-17A-driven inflammation in cardiac fibroblasts (CFs), promoting disease progression and fibrosis. TRIM21 deficiency significantly attenuates EAM progression, reducing inflammatory cell infiltration and fibrotic remodeling. Mechanistically, TRIM21 is induced by IL-17A in CFs and promotes K27-linked polyubiquitination and lysosomal degradation of TRAF3, a negative regulator of IL-17A signaling, thereby establishing a self-reinforcing IL-17A-TRIM21–TRAF3 positive feedback loop. Finally, specific knockdown of TRIM21 in CFs via the AAV9-Postn strategy effectively alleviates EAM severity. These findings identify TRIM21 as an intracellular mediator of sustained IL-17A signaling in myocarditis and highlight its potential as a therapeutic target for preventing progression to DCMi.

Article Details

Volume / Issue Vol. 123, Issue 6
Published February 10, 2026
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (13)

Y

Yahui Song

Institutes of Biology and Medical Sciences, Soochow University

X

Xuege Huang

Institutes of Biology and Medical Sciences, Soochow University

L

Lin Wei

Department of Infectious Diseases, The Second Affiliated Hospital of Anhui Medical University

W

Wenwen Shen

Institutes of Biology and Medical Sciences, Soochow University

J

Jiapeng Gao

Institutes of Biology and Medical Sciences, Soochow University

K

Kai Hou

Research Center, Pu’er People’s Hospital, School of Medicine, Kunming University of Science and Technology

B

Bin Yang

Y

Yi Wang

G

Guang Hu

Ministry of Education Key Laboratory of Geriatric Diseases and Immunology, Suzhou Key Laboratory of Pathogen Bioscience and Anti-infective Medicine, Center for Systems Biology, School of Life Sciences, Suzhou Medical College of Soochow University

W

Wei Xu

J

Jing Guo

W

Wenlong Lin

The Second Affiliated Hospital, Department of Orthopedics, Zhejiang University School of Medicine

M

Min Li