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Bidirectional Risk Modulator and Modifier Variant of Dilated and Hypertrophic Cardiomyopathy in BAG3
Joseph Park1,2,3,4, Michael G Levin2, David Zhang1,2,3
1Department of Genetics, Perelman School of Medicine, University of Pennsylvania, Philadelphia.
Insights
The BAG3 C151R variant modulates dilated cardiomyopathy (DCM) and hypertrophic cardiomyopathy (HCM) risk, acting as a protective factor in DCM, especially when TTN variants are present. This finding enhances understanding of DCM
Area of Science:
- Cardiovascular Genetics
- Molecular Cardiology
- Genetic Epidemiology
Background:
- Heritable dilated cardiomyopathy (DCM) exhibits reduced penetrance and variable expressivity, with underlying genetic factors largely unknown.
- BAG3 genetic variants are implicated in both DCM and hypertrophic cardiomyopathy (HCM), suggesting BAG3 harbors potential modifier variants for DCM.
Purpose of the Study:
- To investigate the clinical traits and diseases associated with BAG3 coding variation.
- To identify genetic modifiers influencing DCM penetrance and expressivity.
Main Methods:
- Cross-sectional study utilizing the Penn Medicine BioBank (PMBB) with whole-exome sequencing (WES) linked to electronic health record (EHR) data.
- Association analysis of BAG3 coding variants with clinical diagnoses, echocardiographic traits, and longitudinal outcomes.
- Replication studies in BioVU, UK Biobank, MyCode, and the DCM Precision Medicine Study.
Main Results:
- The common BAG3 C151R variant was associated with decreased risk for DCM (OR, 0.85) and increased risk for HCM (OR, 1.59), confirmed across replication cohorts.
- C151R carriers showed improved longitudinal outcomes, including delayed age at death and reduced heart transplant rates.
- Among individuals with truncating TTN variants, C151R was linked to a reduced risk of DCM (OR, 0.42) and heart failure (OR, 0.27).
Conclusions:
- BAG3 C151R acts as a bidirectional risk modulator on the DCM-HCM spectrum and is a significant genetic modifier in TTN-mediated DCM.
- This study expands the understanding of DCM etiology and penetrance, highlighting BAG3 C151R's role in DCM's variable expressivity.
- Further research into BAG3 C151R mechanisms and other genetic modifiers in DCM is warranted.
Importance:
The genetic factors that modulate the reduced penetrance and variable expressivity of heritable dilated cardiomyopathy (DCM) are largely unknown. BAG3 genetic variants have been implicated in both DCM and hypertrophic cardiomyopathy (HCM), nominating BAG3 as a gene that harbors potential modifier variants in DCM.
Objective:
To interrogate the clinical traits and diseases associated with BAG3 coding variation.
Design, Setting, And Participants:
This was a cross-sectional study in the Penn Medicine BioBank (PMBB) enrolling patients of the University of Pennsylvania Health System's clinical practice sites from 2014 to 2023. Whole-exome sequencing (WES) was linked to electronic health record (EHR) data to associate BAG3 coding variants with EHR phenotypes. This was a health care population-based study including individuals of European and African genetic ancestry in the PMBB with WES linked to EHR phenotypes, with replication studies in BioVU, UK Biobank, MyCode, and DCM Precision Medicine Study.
Exposures:
Carrier status for BAG3 coding variants.
Main Outcomes And Measures:
Association of BAG3 coding variation with clinical diagnoses, echocardiographic traits, and longitudinal outcomes.
Results:
In PMBB (n = 43 731; median [IQR] age, 65 [50-76] years; 21 907 female [50.1%]), among 30 324 European and 11 198 African individuals, the common C151R variant was associated with decreased risk for DCM (odds ratio [OR], 0.85; 95% CI, 0.78-0.92) and simultaneous increased risk for HCM (OR, 1.59; 95% CI, 1.25-2.02), which was confirmed in the replication cohorts. C151R carriers exhibited improved longitudinal outcomes compared with noncarriers as assessed by age at death (hazard ratio [HR], 0.85; 95% CI, 0.74-0.96; median [IQR] age, 71.8 [63.1-80.7] in carriers and 70.3 [61.6-79.2] in noncarriers) and heart transplant (HR, 0.81; 95% CI, 0.66-0.99; median [IQR] age, 56.7 [46.1-63.1] in carriers and 55.6 [45.2-62.9] in noncarriers). C151R was associated with reduced risk of DCM (OR, 0.42; 95% CI, 0.24-0.74) and heart failure (OR, 0.27; 95% CI, 0.14-0.50) among individuals harboring truncating TTN variants in exons with high cardiac expression (n = 358).
Conclusions And Relevance:
BAG3 C151R was identified as a bidirectional modulator of risk along the DCM-HCM spectrum, as well as an important genetic modifier variant in TTN-mediated DCM. This work expands on the understanding of the etiology and penetrance of DCM, suggesting that BAG3 C151R is an important genetic modifier variant contributing to the variable expressivity of DCM, warranting further exploration of its mechanisms and of genetic modifiers in DCM more broadly.
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