Heterogeneity of nemaline myopathy cases with skeletal muscle α‐actin gene mutations
- 28 June 2004
- journal article
- research article
- Published by Wiley in Annals of Neurology
- Vol. 56 (1), 86-96
- https://doi.org/10.1002/ana.20157
Abstract
Nemaline myopathy (NM) is the most common of several congenital myopathies that present with skeletal muscle weakness and hypotonia. It is clinically heterogeneous and the diagnosis is confirmed by identification of nemaline bodies in affected muscles. The skeletal muscle α-actin gene (ACTA1) is one of five genes for thin filament proteins identified so far as responsible for different forms of NM. We have screened the ACTA1 gene in a cohort of 109 unrelated patients with NM. Here, we describe clinical and pathological features associated with 29 ACTA1 mutations found in 38 individuals from 28 families. Although ACTA1 mutations cause a remarkably heterogeneous range of phenotypes, they were preferentially associated with severe clinical presentations (p < 0.0001). Most pathogenic ACTA1 mutations were missense changes with two instances of single base pair deletions. Most patients with ACTA1 mutations had no prior family history of neuromuscular disease (24/28). One severe case, caused by compound heterozygous recessive ACTA1 mutations, demonstrated increased α-cardiac actin expression, suggesting that cardiac actin might partially compensate for ACTA1 abnormalities in the fetal/neonatal period. This cohort also includes the first instance of an ACTA1 mutation manifesting with adult-onset disease and two pedigrees exhibiting potential incomplete penetrance. Overall, ACTA1 mutations are a common cause of NM, accounting for more than half of severe cases and 26% of all NM cases in this series. Ann Neurol 2004;56:86–96Keywords
This publication has 31 references indexed in Scilit:
- Molecular classification of nemaline myopathies: “nontyping” specimens exhibit unique patterns of gene expressionNeurobiology of Disease, 2004
- Expression profiling and identification of novel genes involved in myogenic differentiationThe FASEB Journal, 2003
- A mutation in alpha-tropomyosinslow affects muscle strength, maturation and hypertrophy in a mouse model for nemaline myopathyHuman Molecular Genetics, 2001
- A Novel Nemaline Myopathy in the Amish Caused by a Mutation in Troponin T1American Journal of Human Genetics, 2000
- Homozygosity for a nonsense mutation in the alpha-tropomyosin slow gene TPM3 in a patient with severe infantile nemaline myopathyNeuromuscular Disorders, 1999
- Human Skeletal Muscle-Specific α-Actinin-2 and -3 Isoforms Form Homodimers and Heterodimersin Vitroandin VivoBiochemical and Biophysical Research Communications, 1998
- Nemaline myopathy: current concepts. The ENMC International Consortium and Nemaline Myopathy.Journal of Medical Genetics, 1997
- Fetal Akinesia Sequence Caused by Nemaline MyopathyNeuropediatrics, 1997
- Specific immunohistochemical detection of cardiac/fetal α-actin in human cardiomyocytes and regenerating skeletal muscle cellsDifferentiation, 1996
- A mutation in the α tropomyosin gene TPM3 associated with autosomal dominant nemaline myopathyNature Genetics, 1995