Abstract
BackgroundBiallelic pathogenic variants inFXR1have recently been associated with two congenital myopathy phenotypes: a severe form associated with hypotonia, long bone fractures, respiratory insufficiency and infantile death, and a milder form characterised by proximal muscle weakness with survival into adulthood.ObjectiveWe report eight patients from four unrelated families with biallelic pathogenic variants in exon 15 ofFXR1.MethodsWhole exome sequencing was used to detect variants inFXR1.ResultsCommon clinical features were noted for all patients, which included proximal myopathy, normal serum creatine kinase levels and diffuse muscle atrophy with relative preservation of the quadriceps femoris muscle on muscle imaging. Additionally, some patients withFXR1-related myopathy had respiratory involvement and required bilevel positive airway pressure support. Muscle biopsy showed multi-minicores and type I fibre predominance with internalised nuclei.ConclusionFXR1-related congenital myopathy is an emerging entity that is clinically recognisable. Phenotypic variability associated with variants inFXR1can result from differences in variant location and type and is also observed between patients homozygous for the same variant, rendering specific genotype–phenotype correlations difficult. Our work broadens the phenotypic spectrum ofFXR1-related congenital myopathy.
Funder
Broad Institute of MIT and Harvard Center for Mendelian Genomics
Samantha J. Brazzo Foundation, LGMD2D Foundation
Genzyme
National Institute of Neurological Disorders and Stroke
NIH
National Heart, Lung, and Blood Institute
Limb Girdle Muscular Dystrophy 2i Research Fund
National Human Genome Research Institute
NHMRC
National Eye Institute
Ultragenyx Pharmaceutical
Coalition to Cure Calpain 3
Kurt+Peter Foundation
Muscular Dystrophy UK
Subject
Genetics (clinical),Genetics
Cited by
1 articles.
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