Structural and functional analysis of a new desmin variant causing desmin-related myopathy.

Hum Mutat

Laboratoire Cytosquelette et Développement, UMR CNRS 7000, Faculté de Médecine, Paris, France.

Published: November 2001

Desmin-related myopathy is a familial or sporadic disease characterized by skeletal muscle weakness and cardiomyopathy as well as the presence of intracytoplasmic aggregates of desmin-reactive material in the muscle cells. Previously, two kinds of deletions and eight missense mutations have been identified in the desmin gene and proven to be responsible for the disorder. The present study was conducted to determine structural and functional defects in a pathogenic desmin variant that caused a disabling disorder in an isolated case presenting with distal and proximal limb muscle weakness and cardiomyopathy. We identified a novel heterozygous Q389P desmin mutation located at the C-terminal part of the rod domain as the causative mutation in this case. Transfection of desmin cDNA containing the patient's mutation into C2.7, MCF7, and SW13 cells demonstrated that the Q389P mutant is incapable of constructing a functional intermediate filament network and has a dominant negative effect on filament formation. We conclude that Q389P mutation is the molecular event leading to the development of desmin-related myopathy.

Download full-text PDF

Source
http://dx.doi.org/10.1002/humu.1210DOI Listing

Publication Analysis

Top Keywords

desmin-related myopathy
12
structural functional
8
desmin variant
8
muscle weakness
8
weakness cardiomyopathy
8
desmin
5
functional analysis
4
analysis desmin
4
variant causing
4
causing desmin-related
4

Similar Publications

Desmin is a type III intermediate filament protein specifically expressed in muscle cells, which is encoded by the gene. Defects in the desmin protein and cytoskeletal instability may interfere with cardiac muscle conduction signals, a fundamental mechanism for arrhythmias in patients with desmin-related myopathy. This current case report presents a female patient in her early 20s who presented with early-onset complete atrioventricular block and complete left bundle branch block over the previous decade.

View Article and Find Full Text PDF

Myofibrillar myopathy (MFM) is a group of hereditary myopathies that mainly involves striated muscles. This study aimed to use tandem mass tag (TMT)-based proteomics to investigate the underlying pathomechanisms of two of the most common MFM subtypes, desminopathy and titinopathy. Muscles from 7 patients with desminopathy, 5 with titinopathy and 5 control individuals were included.

View Article and Find Full Text PDF

Expanding the Phenotypic Spectrum of Desminopathy.

JACC Clin Electrophysiol

June 2024

Genomics and Inherited Disease Program, Garvan Institute of Medical Research, University of New South Wales (UNSW) Sydney, Sydney, New South Wales, Australia. Electronic address:

View Article and Find Full Text PDF

Partial loss of desmin expression due to a leaky splice site variant in the human DES gene is associated with neuromuscular transmission defects.

Neuromuscul Disord

June 2024

Childrens Hospital of Eastern Ontario Research Institute, Ottawa, Canada; Centro Nacional de Análisis Genómico, Baldiri Reixac 4, Barcelona 08028, Spain; Division of Neurology, Department of Medicine, The Ottawa Hospital, Ottawa, Canada; Brain and Mind Research Institute, University of Ottawa, Ottawa, Canada; Department of Neuropediatrics and Muscle Disorders, Medical Center - University of Freiburg, Faculty of Medicine, Freiburg, Germany. Electronic address:

Recessive desminopathies are rare and often present as severe early-onset myopathy. Here we report a milder phenotype in three unrelated patients from southern India (2 M, 1F) aged 16, 21, and 22 years, who presented with childhood-onset, gradually progressive, fatigable limb-girdle weakness, ptosis, speech and swallowing difficulties, without cardiac involvement. Serum creatine kinase was elevated, and repetitive nerve stimulation showed decrement in all.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!