BackgroundMutations in LMNA, encoding lamin A/C, lead to a variety of diseases known as laminopathies including dilated cardiomyopathy (DCM) and skeletal abnormalities. Though previous studies have investigated the dysregulation of gene expression in cells from patients with DCM, the role of epigenetic (gene regulatory) mechanisms, such as DNA methylation, has not been thoroughly investigated. Furthermore, the impact of family-specific LMNA mutations on DNA methylation is unknown. Here, we performed reduced representation bisulfite sequencing on ten pairs of fibroblasts and their induced pluripotent stem cell (iPSC) derivatives from two families with DCM due to distinct LMNA mutations, one of which also induces brachydactyly.ResultsFamily-s...
Dilated cardiomyopathy (DCM) is one of the leading causes of heart failure and heart transplant. Mut...
Inherited mutations cause approximately 35 percent of cases of dilated cardiomyopathy; however, few ...
Nuclear lamin A/C are crucial components of the intricate protein mesh that underlies the inner nucl...
Pathogenic mutations in LAMIN A/C (LMNA) cause abnormal nuclear structure and laminopathies. These d...
Lamin A/C are intermediate filament proteins that construct the nuclear lamina of a cell encoded by ...
BackgroundIntermediate filament proteins that construct the nuclear lamina of a cell include the Lam...
International audienceCardiomyopathy is a myocardial disorder, in which the heart muscle is structur...
Epigenetic mechanisms such as microRNA and histone modification are crucially responsible for dysreg...
Rationale: Mutations in the LMNA gene, encoding LMNA (lamin A/C), are responsible for laminopathies....
Dilated cardiomyopathy (DCM) is a disease of the heart muscle characterized by cardiac chamber enlar...
Lamins A and C, encoded by the LMNA gene, are filamentous proteins that form the core scaffold of th...
aminopathies represent a heterogeneous group of genetic disorders characterised by mutations in the ...
Lamins A and C are type V intermediate filament proteins, which are components of the nuclear envel...
The familial form of dilated cardiomyopathy (DCM) occurs in about 20%-50% of DCM cases. It is a hete...
AbstractAlterations in DNA methylation and gene expression have been implicated in the development o...
Dilated cardiomyopathy (DCM) is one of the leading causes of heart failure and heart transplant. Mut...
Inherited mutations cause approximately 35 percent of cases of dilated cardiomyopathy; however, few ...
Nuclear lamin A/C are crucial components of the intricate protein mesh that underlies the inner nucl...
Pathogenic mutations in LAMIN A/C (LMNA) cause abnormal nuclear structure and laminopathies. These d...
Lamin A/C are intermediate filament proteins that construct the nuclear lamina of a cell encoded by ...
BackgroundIntermediate filament proteins that construct the nuclear lamina of a cell include the Lam...
International audienceCardiomyopathy is a myocardial disorder, in which the heart muscle is structur...
Epigenetic mechanisms such as microRNA and histone modification are crucially responsible for dysreg...
Rationale: Mutations in the LMNA gene, encoding LMNA (lamin A/C), are responsible for laminopathies....
Dilated cardiomyopathy (DCM) is a disease of the heart muscle characterized by cardiac chamber enlar...
Lamins A and C, encoded by the LMNA gene, are filamentous proteins that form the core scaffold of th...
aminopathies represent a heterogeneous group of genetic disorders characterised by mutations in the ...
Lamins A and C are type V intermediate filament proteins, which are components of the nuclear envel...
The familial form of dilated cardiomyopathy (DCM) occurs in about 20%-50% of DCM cases. It is a hete...
AbstractAlterations in DNA methylation and gene expression have been implicated in the development o...
Dilated cardiomyopathy (DCM) is one of the leading causes of heart failure and heart transplant. Mut...
Inherited mutations cause approximately 35 percent of cases of dilated cardiomyopathy; however, few ...
Nuclear lamin A/C are crucial components of the intricate protein mesh that underlies the inner nucl...