Mutations in the LMNA gene, which encodes the nuclear envelope (NE) proteins lamins A/C, cause Emery-Dreifuss muscular dystrophy, congenital muscular dystrophy and other diseases collectively known as laminopathies. The mechanisms responsible for these diseases remain incompletely understood. Using three mouse models of muscle laminopathies and muscle biopsies from individuals with LMNA-related muscular dystrophy, we found that Lmna mutations reduced nuclear stability and caused transient rupture of the NE in skeletal muscle cells, resulting in DNA damage, DNA damage response activation and reduced cell viability. NE and DNA damage resulted from nuclear migration during skeletal muscle maturation and correlated with disease severity in the ...
The nuclei of multinucleated skeletal muscles experience substantial external force during developme...
The nuclei of multinucleated skeletal muscles experience substantial external force during developme...
The nuclei of multinucleated skeletal muscles experience substantial external force during developme...
Laminopathies, a broad class of diseases that primarily impact mechanically active tissues such as c...
Lamins are intermediate filament proteins that assemble into a meshwork underneath the inner nuclear...
International audienceLMNA encodes for Lamin A/C, type V intermediate filaments that polymerize unde...
International audienceLaminopathies are a clinically heterogeneous group of disorders caused by muta...
International audienceSpecific mutations in LMNA, which encodes nuclear intermediate filament protei...
Nuclear lamin A and C alleles that are linked to three distinct human diseases have been expressed b...
LMNA-related congenital muscular dystrophy (L-CMD) is a rare disorder predominantly causing muscle w...
AbstractMuscular dystrophies are a heterogeneous group of disorders linked to defects in 20–30 diffe...
The nuclei of multinucleated skeletal muscles experience substantial external force during developme...
Laminopathies comprise a group of inherited diseases with variable clinical phenotypes, caused by mu...
The nuclei of multinucleated skeletal muscles experience substantial external force during developme...
The nuclei of multinucleated skeletal muscles experience substantial external force during developme...
The nuclei of multinucleated skeletal muscles experience substantial external force during developme...
Laminopathies, a broad class of diseases that primarily impact mechanically active tissues such as c...
Lamins are intermediate filament proteins that assemble into a meshwork underneath the inner nuclear...
International audienceLMNA encodes for Lamin A/C, type V intermediate filaments that polymerize unde...
International audienceLaminopathies are a clinically heterogeneous group of disorders caused by muta...
International audienceSpecific mutations in LMNA, which encodes nuclear intermediate filament protei...
Nuclear lamin A and C alleles that are linked to three distinct human diseases have been expressed b...
LMNA-related congenital muscular dystrophy (L-CMD) is a rare disorder predominantly causing muscle w...
AbstractMuscular dystrophies are a heterogeneous group of disorders linked to defects in 20–30 diffe...
The nuclei of multinucleated skeletal muscles experience substantial external force during developme...
Laminopathies comprise a group of inherited diseases with variable clinical phenotypes, caused by mu...
The nuclei of multinucleated skeletal muscles experience substantial external force during developme...
The nuclei of multinucleated skeletal muscles experience substantial external force during developme...
The nuclei of multinucleated skeletal muscles experience substantial external force during developme...