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Published on: August 20, 2019
TBX20 loss-of-function mutation associated with familial dilated cardiomyopathy
Insights
A novel TBX20 gene mutation was identified as a cause of dilated cardiomyopathy (DCM). This loss-of-function mutation provides new insights into the genetic basis of DCM.
Area of Science:
- Cardiovascular Genetics
- Molecular Cardiology
- Genetic Basis of Heart Disease
Background:
- Dilated cardiomyopathy (DCM) is a primary cause of heart failure and sudden cardiac death.
- Genetic factors are increasingly recognized in DCM etiology, yet many genetic causes remain unidentified.
- DCM represents a genetically heterogeneous condition.
Purpose of the Study:
- To investigate the genetic underpinnings of idiopathic DCM.
- To identify novel gene mutations associated with DCM.
- To elucidate the functional consequences of identified mutations.
Main Methods:
- Sequencing of the TBX20 gene in 120 idiopathic DCM patients.
- Genotyping of TBX20 in affected family members and 300 healthy controls.
- Functional analysis of mutant TBX20 using a dual-luciferase reporter assay.
Main Results:
- A novel heterozygous TBX20 mutation (p.F256I) was identified in a DCM family with autosomal dominant inheritance and complete penetrance.
- The mutation was absent in 600 control chromosomes and affected a conserved amino acid.
- Functional assays demonstrated reduced transcriptional activity of the mutant TBX20, impairing its interaction with NKX2-5 and GATA4.
Conclusions:
- This study establishes a link between TBX20 loss-of-function mutations and idiopathic DCM in humans.
- The findings offer new insights into the molecular mechanisms of DCM pathogenesis.
- TBX20 mutations represent a novel genetic cause of dilated cardiomyopathy.
Background:
Dilated cardiomyopathy (DCM) is a major cause of congestive heart failure, sudden cardiac death and cardiac transplantation. Aggregating evidence highlights the genetic origin of DCM. However, DCM is a genetically heterogeneous disorder, and the genetic components underlying DCM in most cases remain unknown.
Methods:
The coding regions and splicing junction sites of the TBX20 gene were sequenced in 120 unrelated patients with idiopathic DCM. The available close relatives of the index patient carrying an identified mutation and 300 unrelated ethnically matched healthy individuals used as controls were genotyped for TBX20. The functional characteristics of the mutant TBX20 were assayed in contrast to its wild-type counterpart by using a dual-luciferase reporter assay system.
Results:
A novel heterozygous TBX20 mutation, p.F256I, was identified in a family with DCM transmitted in an autosomal dominant fashion, which co-segregated with DCM in the family with complete penetrance. The missense mutation was absent in 600 control chromosomes and the altered amino acid was completely conserved evolutionarily among various species. Functional assays revealed that the mutant TBX20 had significantly diminished transcriptional activity. Furthermore, the mutation markedly reduced the synergistic activation of TBX20 with NKX2-5 or GATA4.
Conclusions:
This study links TBX20 loss-of-function mutation to idiopathic DCM in humans for the first time, providing novel insight into the molecular mechanism underpinning DCM.
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