Loss of Drosophila A-type lamin C initially causes tendon abnormality including disintegration of cytoskeleton and nuclear lamina in muscular defects
pmid: 22982669
Loss of Drosophila A-type lamin C initially causes tendon abnormality including disintegration of cytoskeleton and nuclear lamina in muscular defects
Lamins are the major components of nuclear envelope architecture, being required for both the structural and informational roles of the nuclei. Mutations of lamins cause a spectrum of diseases in humans, including muscular dystrophy. We report here that the loss of the A-type lamin gene, lamin C in Drosophila resulted in pupal metamorphic lethality caused by tendon defects, matching the characteristics of human A-type lamin revealed by Emery-Dreifuss muscular dystrophy (EDMD). In tendon cells lacking lamin C activity, overall cell morphology was affected and organization of the spectraplakin family cytoskeletal protein Shortstop which is prominently expressed in tendon cells gradually disintegrated, notably around the nucleus and in a manner correlating well with the degradation of musculature. Furthermore, lamin C null mutants were efficiently rescued by restoring lamin C expression to shortstop-expressing cells, which include tendon cells but exclude skeletal muscle cells. Thus the critical function of A-type lamin C proteins in Drosophila musculature is to maintain proper function and morphology of tendon cells.
Nuclear Lamina, Microfilament Proteins, Nuclear lamina, Pupa, Cell Biology, Muscular dystrophy, Lamin Type A, Immunohistochemistry, Tendon cells, Tendons, Proteolysis, A-type lamin, Animals, Drosophila Proteins, Drosophila, Molecular Biology, Cytoskeleton, Developmental Biology, DNA Primers
Nuclear Lamina, Microfilament Proteins, Nuclear lamina, Pupa, Cell Biology, Muscular dystrophy, Lamin Type A, Immunohistochemistry, Tendon cells, Tendons, Proteolysis, A-type lamin, Animals, Drosophila Proteins, Drosophila, Molecular Biology, Cytoskeleton, Developmental Biology, DNA Primers
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