Recessive truncating titin gene, TTN , mutations presenting as centronuclear myopathy

Adult Male 0301 basic medicine Adolescent Tumor Suppressor Proteins Nuclear Proteins Genes, Recessive Protein Tyrosine Phosphatases, Non-Receptor 3. Good health Cohort Studies Dynamin II Young Adult 03 medical and health sciences Phenotype Child, Preschool Mutation Humans Connectin Female Single-Blind Method Child Adaptor Proteins, Signal Transducing Myopathies, Structural, Congenital
DOI: 10.1212/wnl.0b013e3182a6ca62 Publication Date: 2013-08-24T03:58:56Z
ABSTRACT
To identify causative genes for centronuclear myopathies (CNM), a heterogeneous group of rare inherited muscle disorders that often present in infancy or early life with weakness and hypotonia, using next-generation sequencing of whole exomes and genomes.Whole-exome or -genome sequencing was performed in a cohort of 29 unrelated patients with clinicopathologic diagnoses of CNM or related myopathy depleted for cases with mutations of MTM1, DNM2, and BIN1. Immunofluorescence analyses on muscle biopsies, splicing assays, and gel electrophoresis of patient muscle proteins were performed to determine the molecular consequences of mutations of interest.Autosomal recessive compound heterozygous truncating mutations of the titin gene, TTN, were identified in 5 individuals. Biochemical analyses demonstrated increased titin degradation and truncated titin proteins in patient muscles, establishing the impact of the mutations.Our study identifies truncating TTN mutations as a cause of congenital myopathy that is reported as CNM. Unlike the classic CNM genes that are all involved in excitation-contraction coupling at the triad, TTN encodes the giant sarcomeric protein titin, which forms a myofibrillar backbone for the components of the contractile machinery. This study expands the phenotypic spectrum associated with TTN mutations and indicates that TTN mutation analysis should be considered in cases of possible CNM without mutations in the classic CNM genes.
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