Cytoskeletal derangements in hereditary myopathy with a desmin L345P mutation

Cytoskeletal derangements in hereditary myopathy with a desmin L345P mutation

Lena Carlsson;Christine Fischer;Gunnnar Sjöberg;Richard M. Robson;Thomas Sejersen;Lars-Eric Thornell;Lena Carlsson;Christine Fischer;Gunnnar Sjöberg;Richard M. Robson;Thomas Sejersen;Lars-Eric Thornell;
acta neuropathologica 1970 Vol. 104 pp. 493-504
131
carlsson1970actacytoskeletal

Abstract

Patients with abnormal accumulations of desmin have been described in myopathies with or without cardiac involvement. Desmin deposits were sometimes associated with abnormal aggregates of other cytoskeletal proteins. In the present study we present how the cytoskeletal organisation of desmin, nestin, synemin, paranemin, plectin and αB-crystallin is altered in skeletal muscles from a patient with a L345P mutation in the desmin gene. In general, accumulations of desmin together with synemin, nestin, plectin and αB-crystallin were present between myofibrils and beneath the sarcolemma. However, as the biopsy samples were very myopathic, large variability in fibre size and fibre maturation was seen, thus the myofibrillar content and the cytoskeletal organisation varied considerably. In cultured satellite cells from the patient, desmin aggregates were not observed in initial passages, but occurred over time in culture in the form of perinuclear, peripheral or cytoplasmic deposits. Nestin colocalised to the abnormal desmin deposits to a larger extent than did vimentin. αB-Crystallin was only present in cells with a disrupted desmin network. Plectin was altered in a subset of cells with a disrupted desmin network, whereas synemin and paranemin were not detected. We conclude that the L345P desmin mutation has a profound influence on the cytoskeletal organisation both in vivo and in vitro, which reflects the pathogenesis of the desmin myopathy.

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