International audienceThe main histological abnormality in congenital fiber type disproportion (CFTD) is hypotrophy of type 1 (slow twitch) fibers compared to type 2 (fast twitch) fibers. To investigate whether mutations in RYR1 are a cause of CFTD we sequenced RYR1 in seven CFTD families in whom the other known causes of CFTD had been excluded. We identified compound heterozygous changes in the RYR1 gene in four families (five patients), consistent with autosomal recessive inheritance. Three out of five patients had ophthalmoplegia, which may be the most specific clinical indication of mutations in RYR1. Type 1 fibers were at least 50% smaller, on average, than type 2 fibers in all biopsies. Recessive mutations in RYR1 are a relatively com...
Dominant mutations in the skeletal muscle ryanodine receptor (RYR1) gene are well-recognized causes ...
Contains fulltext : 71222.pdf (publisher's version ) (Closed access)Mutations of t...
The ryanodine receptor 1-related congenital myopathies (RYR1-RM) comprise a spectrum of slow, rare n...
International audienceThe main histological abnormality in congenital fiber type disproportion (CFTD...
The main histological abnormality in congenital fiber type disproportion (CFTD) is hypotrophy of typ...
International audienceOBJECTIVE: Congenital fiber type disproportion (CFTD) is a rare form of congen...
Objective: Congenital fiber type disproportion (CFTD) is a rare form of congenital myopathy in which...
RYR1 mutations are the most common cause of structural congenital myopathies and may exhibit both do...
Ryanodine receptor 1 (RYR1) mutations are a common cause of congenital myopathies associated with bo...
Ryanodine receptor 1 (RYR1) mutations are a common cause of congenital myopathies associated with bo...
International audienceAIMS: To report the clinical, pathological and genetic findings in a group of ...
Novel heterogeneous missense mutations in five families with congenital fiber type disproportion (CF...
Aims: To report the clinical, pathological and genetic findings in a group of patients with a previ...
Congenital myopathy with fibre type disproportion (CFTD) has been associated with mutations in ACTA1...
Congenital myopathy with fibre type disproportion (CFTD) has been associated with mutations in ACTA1...
Dominant mutations in the skeletal muscle ryanodine receptor (RYR1) gene are well-recognized causes ...
Contains fulltext : 71222.pdf (publisher's version ) (Closed access)Mutations of t...
The ryanodine receptor 1-related congenital myopathies (RYR1-RM) comprise a spectrum of slow, rare n...
International audienceThe main histological abnormality in congenital fiber type disproportion (CFTD...
The main histological abnormality in congenital fiber type disproportion (CFTD) is hypotrophy of typ...
International audienceOBJECTIVE: Congenital fiber type disproportion (CFTD) is a rare form of congen...
Objective: Congenital fiber type disproportion (CFTD) is a rare form of congenital myopathy in which...
RYR1 mutations are the most common cause of structural congenital myopathies and may exhibit both do...
Ryanodine receptor 1 (RYR1) mutations are a common cause of congenital myopathies associated with bo...
Ryanodine receptor 1 (RYR1) mutations are a common cause of congenital myopathies associated with bo...
International audienceAIMS: To report the clinical, pathological and genetic findings in a group of ...
Novel heterogeneous missense mutations in five families with congenital fiber type disproportion (CF...
Aims: To report the clinical, pathological and genetic findings in a group of patients with a previ...
Congenital myopathy with fibre type disproportion (CFTD) has been associated with mutations in ACTA1...
Congenital myopathy with fibre type disproportion (CFTD) has been associated with mutations in ACTA1...
Dominant mutations in the skeletal muscle ryanodine receptor (RYR1) gene are well-recognized causes ...
Contains fulltext : 71222.pdf (publisher's version ) (Closed access)Mutations of t...
The ryanodine receptor 1-related congenital myopathies (RYR1-RM) comprise a spectrum of slow, rare n...