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1.
J Neurol ; 266(3): 680-690, 2019 Mar.
Article in English | MEDLINE | ID: mdl-30666435

ABSTRACT

OBJECTIVE: Hereditary myopathy with early respiratory failure (HMERF) is caused by titin A-band mutations in exon 344 and considered quite rare. Respiratory insufficiency is an early symptom. A collection of families and patients with muscle disease suggestive of HMERF was clinically and genetically studied. METHODS: Altogether 12 new families with 19 affected patients and diverse nationalities were studied. Most of the patients were investigated using targeted next-generation sequencing; Sanger sequencing was applied in some of the patients and available family members. Histological data and muscle MRI findings were evaluated. RESULTS: Three families had several family members studied while the rest were single patients. Most patients had distal and proximal muscle weakness together with respiratory insufficiency. Five heterozygous TTN A-band mutations were identified of which two were novel. Also with the novel mutations the muscle pathology and imaging findings were compatible with the previous reports of HMERF. CONCLUSIONS: Our collection of 12 new families expands mutational spectrum with two new mutations identified. HMERF is not that rare and can be found worldwide, but maybe underdiagnosed. Diagnostic process seems to be complex as this study shows with mostly single patients without clear dominant family history.


Subject(s)
Connectin/genetics , Genetic Diseases, Inborn/genetics , Genetic Diseases, Inborn/physiopathology , Muscular Diseases/genetics , Muscular Diseases/physiopathology , Respiratory Insufficiency/genetics , Respiratory Insufficiency/physiopathology , Adult , Age of Onset , Female , Genetic Diseases, Inborn/diagnostic imaging , Genetic Diseases, Inborn/pathology , Humans , Male , Middle Aged , Muscle, Skeletal/diagnostic imaging , Muscle, Skeletal/pathology , Muscular Diseases/diagnostic imaging , Muscular Diseases/pathology , Mutation , Pedigree , Respiratory Insufficiency/diagnostic imaging , Respiratory Insufficiency/pathology , Young Adult
2.
Orphanet J Rare Dis ; 9: 121, 2014 Aug 01.
Article in English | MEDLINE | ID: mdl-25208129

ABSTRACT

BACKGROUND: Myofibrillar myopathies (MFM) are a group of phenotypically and genetically heterogeneous neuromuscular disorders, which are characterized by protein aggregations in muscle fibres and can be associated with multisystemic involvement. METHODS: We screened a large cohort of 38 index patients with MFM for mutations in the nine thus far known causative genes using Sanger and next generation sequencing (NGS). We studied the clinical and histopathological characteristics in 38 index patients and five additional relatives (n = 43) and particularly focused on the associated multisystemic symptoms. RESULTS: We identified 14 heterozygous mutations (diagnostic yield of 37%), among them the novel p.Pro209Gln mutation in the BAG3 gene, which was associated with onset in adulthood, a mild phenotype and an axonal sensorimotor polyneuropathy, in the absence of giant axons at the nerve biopsy. We revealed several novel clinical phenotypes and unusual multisystemic presentations with previously described mutations: hearing impairment with a FLNC mutation, dysphonia with a mutation in DES and the first patient with a FLNC mutation presenting respiratory insufficiency as the initial symptom. Moreover, we described for the first time respiratory insufficiency occurring in a patient with the p.Gly154Ser mutation in CRYAB. Interestingly, we detected a polyneuropathy in 28% of the MFM patients, including a BAG3 and a MYOT case, and hearing impairment in 13%, including one patient with a FLNC mutation and two with mutations in the DES gene. In four index patients with a mutation in one of the MFM genes, typical histological findings were only identified at the ultrastructural level (29%). CONCLUSIONS: We conclude that extraskeletal symptoms frequently occur in MFM, particularly cardiac and respiratory involvement, polyneuropathy and/or deafness. BAG3 mutations should be considered even in cases with a mild phenotype or an adult onset. We identified a genetic defect in one of the known genes in less than half of the MFM patients, indicating that more causative genes are still to be found. Next generation sequencing techniques should be helpful in achieving this aim.


Subject(s)
Adaptor Proteins, Signal Transducing/genetics , Apoptosis Regulatory Proteins/genetics , High-Throughput Nucleotide Sequencing/methods , Muscle, Skeletal/metabolism , Mutation , Adolescent , Adult , Aged , Female , Humans , Male , Middle Aged , Muscle, Skeletal/pathology , Myopathies, Structural, Congenital/complications , Myopathies, Structural, Congenital/genetics , Pedigree , Phenotype , Young Adult
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