[Congenital myopathies - skeletal muscle diseases related to disorder of actin filament structure and functions].

Katarzyna Robaszkiewicz, Joanna Moraczewska

Instytut Biologii Eksperymentalnej, Uniwersytet Kazimierza Wielkiego w Bydgoszczy.

Journal Article: Postępy Higieny i Medycyny Doświadczalnej (Advances in Hygiene and Experimental Medicine) 01/2011; 65:347-56.

Abstract

Congenital myopathies are clinically and genetically heterogeneous disorders characterized by muscle structural abnormalities, muscle weakness and deformities. The clinical spectrum of the disease ranges from severe cases with early death to adult-onset cases with slow progression. In the skeletal muscle fibers, the specific structural changes are rod-shaped structures present in the sarcoplasm (nemaline myopathy – NM) or nuclei (intranuclear rod myopathy – IRM), cap-like structures peripherally located within muscle fibers (cap disease – CD), accumulations of actin filaments (actin myopathy – AM), changes in the fiber type proportion and size (congenital fiber type disproportion – CFTD), irregularity of Z-lines and abnormal localization of myofiber nuclei. Mutations in several genes encoding muscle proteins have been linked to congenital myopathy. These genes include a-skeletal actin (ACTA1), tropomyosin (TPM2 and TPM3), troponin (TNNT1) and nebulin (NEB). In vitro and in vivo studies show that mutations identified within these genes have varying impacts on thin filament protein structure, which affect polymerization and stabilization of actin filament, actin cellular localization and regulation of actin-myosin activity. Many lines of evidence suggest that mutated proteins have "toxic" effects. Unfortunately, there is no existing simple correlation between the degree of protein disruption, muscle pathologies and disease severity.

Source: PubMed

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Keywords

actin myopathy – AM
 
affect polymerization
 
cap-like structures peripherally
 
Congenital myopathies
 
congenital myopathy
 
disease ranges
 
disease severity
 
existing simple correlation
 
fiber type proportion
 
genes encoding muscle proteins
 
intranuclear rod myopathy – IRM
 
muscle fibers
 
muscle pathologies
 
mutated proteins
 
nemaline myopathy – NM
 
protein disruption
 
skeletal muscle fibers
 
slow progression
 
thin filament protein structure
 
Z-lines