Key result
Z-disk protein mutations produce similar skeletal muscle pathology typical of myofibrillar myopathy despite genetic heterogeneity.
Why the study?
Recent discoveries of mutations in multiple genes causing myofibrillar myopathies have expanded genetic heterogeneity, but clinical and morphologic phenotypes remain homogeneous, necessitating an updated overview.
This review highlights that despite increasing genetic heterogeneity, myofibrillar myopathies share remarkably homogeneous clinical and morphologic phenotypes, including associated cardiomyopathy.
Warrants cardiomyopathy screening in myofibrillar myopathy; leaves open mutation-specific risk stratification.
PURPOSE OF REVIEW: The aim of this communication is to provide an up-to-date overview of myofibrillar myopathies. RECENT FINDINGS: The most important recent advance in the myofibrillar myopathies has been the discovery that mutations in Z band alternatively spliced PDZ-containing protein and filamin C, as well as in desmin, alphaB-crystallin and myotilin, result in similar pathologic alterations in skeletal muscle that are typical of myofibrillar myopathy. Despite the increasing genetic heterogeneity, the clinical and morphologic phenotypes are remarkably homogeneous. The typical clinical manifestation is slowly progressive proximal, distal or both proximal and distal limb muscle weakness. Cardiomyopathy can be associated and is sometimes the presenting finding. Peripheral neuropathy also occurs in some patients. In every myofibrillar myopathy, there is abnormal accumulation of an array of proteins at ectopic sites as well as accumulation of degraded myofibrillar proteins forming large aggregates. The key issue now is to analyze the molecular mechanisms underlying the cascade of events that destroy the myofibrillar architecture and trigger the aberrant expression of multiple proteins. SUMMARY: Several disease genes have recently been recognized in myofibrillar myopathies. So far, the disease proteins identified are components of or chaperone for the Z-disk. In each case, the molecular defect leads to a stereotyped cascade of structural events in the muscle fiber.
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Duygu Selcen (2008) conducted a review in Myofibrillar myopathies. Mutations in several Z-disk proteins result in similar pathologic alterations in skeletal muscle typical of myofibrillar myopathy, despite increasing genetic heterogeneity.
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