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ZBTB17 loss-of-function mutation contributes to familial dilated cardiomyopathy
Yu-Min Sun1, Jun Wang2, Ying-Jia Xu3
1Department of Cardiology, Shanghai Jing'an District Central Hospital, Fudan University, Shanghai, 200040, China.
Insights
A novel ZBTB17 gene mutation (p.E243X) is linked to dilated cardiomyopathy (DCM). This loss-of-function mutation co-segregates with DCM in families, suggesting a new genetic cause for this heart condition.
Area of Science:
- Genetics
- Cardiology
- Molecular Biology
Background:
- Dilated cardiomyopathy (DCM) is a significant cause of heart failure with substantial, yet largely unexplained, genetic heterogeneity.
- Genetic factors play a crucial role in DCM, but the specific genetic underpinnings for many patients remain elusive.
Purpose of the Study:
- To investigate the association between a genetic variant in the ZBTB17 gene and idiopathic DCM.
- To identify novel genetic mutations contributing to the pathogenesis of DCM.
Main Methods:
- Sequencing of ZBTB17 coding exons and splicing boundaries in 158 DCM patients and 230 controls.
- Segregation analysis within affected families to confirm co-occurrence of the mutation with DCM.
- Functional characterization of the identified ZBTB17 mutation using a dual-luciferase reporter assay.
Main Results:
- A novel heterozygous nonsense mutation, ZBTB17 p.E243X, was identified in an index DCM patient.
- The mutation demonstrated complete penetrance, co-segregating with DCM in an autosomal dominant pattern within the family.
- Functional assays revealed that the truncated ZBTB17 protein lacked transcriptional activity compared to the wild-type protein.
Conclusions:
- This study establishes the first association between a ZBTB17 loss-of-function mutation and increased susceptibility to DCM in humans.
- The findings provide new insights into the molecular mechanisms of DCM and have implications for genetic counseling and personalized DCM management.
Abstract:
Dilated cardiomyopathy (DCM) is a common primary myocardial disease leading to congestive heart failure, arrhythmia and sudden cardiac death. Increasing studies demonstrate substantial genetic determinants for DCM. Nevertheless, DCM is of substantial genetic heterogeneity, and the genetic basis for DCM in most patients remains unclear. The present study was sought to investigate the association of a genetic variant in the ZBTB17 gene with DCM. A cohort of 158 unrelated patients with idiopathic DCM and a total of 230 unrelated, ethnically matched healthy individuals used as controls were recruited. The coding exons and splicing boundaries of ZBTB17 were sequenced in all study participants. The functional effect of the mutant ZBTB17 was characterized by a dual-luciferase reporter assay system. A novel heterozygous ZBTB17 mutation, p.E243X, was discovered in an index patient. Genetic scan of the mutation carrier's available relatives showed that the mutation was present in all affected family members but absent in unaffected family members. Analysis of the proband's pedigree revealed that the mutation co-segregated with DCM, which was transmitted in an autosomal dominant pattern with complete penetrance. The nonsense mutation was absent in the 460 control chromosomes. Functional assays demonstrated that the truncated ZBTB17 protein had no transcriptional activity as compared with its wild-type counterpart. This study firstly associates ZBTB17 loss-of-function mutation with enhanced susceptibility to DCM in humans, which provides novel insight into the molecular mechanism underpinning DCM, implying potential implications for genetic counseling and personalized management of DCM.
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