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Comprehensive Myocardial Proteogenomics Profiling Reveals C/EBPα as the Key Factor in the Lipid Storage of ARVC
Liang Chen1, Fan Yang2, Xiao Chen1
1State Key Laboratory of Cardiovascular Disease, Fuwai Hospital, National Center for Cardiovascular Diseases, Chinese Academy of Medical Sciences and Peking Union Medical College , 167A Beilishi Road, Xi Cheng District, Beijing 100037, China.
Insights
Arrhythmogenic right ventricular cardiomyopathy (ARVC) involves fibro-fatty replacement. This study reveals lipid metabolism reprogramming and C/EBPα activation as key hallmarks of ARVC, differentiating it from dilated cardiomyopathy (DCM).
Area of Science:
- Cardiovascular Biology
- Molecular Cardiology
- Proteomics and Genomics
Background:
- Arrhythmogenic right ventricular cardiomyopathy (ARVC) is an inherited heart muscle disease characterized by fibro-fatty tissue replacement.
- The molecular and genetic underpinnings of ARVC remain incompletely understood due to limited comprehensive profiling studies.
Purpose of the Study:
- To comprehensively profile the proteome and transcriptome of ARVC hearts.
- To identify characteristic molecular patterns distinguishing ARVC from dilated cardiomyopathy (DCM) and non-diseased hearts.
Main Methods:
- Quantitative proteomics using TMT-labeled LC-MS/MS on explanted ARVC, DCM, and normal human ventricular myocardium.
- RNA sequencing of ARVC and non-diseased right ventricles for proteogenomic validation.
Main Results:
- ARVC hearts showed downregulation of mitochondrial proteins and altered heart failure regulators (e.g., TGFB, RICTOR, KDM5A).
- Inflammatory signaling, particularly the complement system, was significantly more activated in ARVC than DCM.
- A key finding was the reprogramming of lipid metabolism with upregulated lipogenesis factors (e.g., FABP4, FASN), regulated by C/EBPα, identified as a hallmark of ARVC.
Conclusions:
- Proteogenomic profiling reveals significant lipid metabolism reprogramming and C/EBPα activation as a defining characteristic of ARVC.
- These findings provide novel insights into ARVC pathogenesis and potential therapeutic targets.
Abstract:
Arrhythmogenic right ventricular cardiomyopathy (ARVC) is hereditary cardiomyopathy characterized by the fibro-fatty replacement of the myocardium. A small number of noncomprehensive profiling studies based on human cardiac tissues have been conducted and reported; consequently, ARVC's gene expression pattern characteristics remain largely undocumented. Our study applies large-scaled, quantitative proteomics based on TMT-labeled LC-MS/MS to analyze the left and right ventricular myocardium of four ARVC and four DCM explanted hearts to compare them with normal hearts. Our objective is to reveal the characteristic proteome pattern in ARVC compared with DCM as well as nondiseased heart. We also conducted the RNA sequencing of 10 right ventricles from ARVC hearts paired with four nondiseased donor hearts to validate the proteome results. In a manner similar to that of the well-defined DCM heart failure model, the ARVC model demonstrates the downregulation of mitochondrial function proteins and the effects of many heart failure regulators such as TGFB, RICTOR, and KDM5A. In addition, the inflammatory signaling, especially the complement system, was activated much more severely in ARVC than in DCM. Our most significant discovery was the lipid metabolism reprogramming of both ARVC ventricles in accordance with the upregulation of lipogenesis factors such as FABP4 and FASN. We identified the key upstream regulator of lipogenesis as C/EBPα. Transcriptome profiling verified the consistency with proteome alterations. This comprehensive proteogenomics profiling study reveals that an activation of C/EBPα, along with the upregulation of its lipogenesis targets, accounts for lipid storage and acts as a hallmark of ARVC.
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