Key result
Depletion of obscurin in zebrafish resulted in diminished numbers and marked disarray of skeletal myofibrils, impaired lateral alignment, and abnormalities of cardiac structure and function.
Obscurin is required for vertebrate cardiac and skeletal muscle development, suggesting a potential role in the causation of or adaptation to myopathies.
Should not change clinical practice; extends vertebrate muscle data but leaves human myopathy relevance open.
Obscurin/obscurin-MLCK is a giant sarcomere-associated protein with multiple isoforms whose interactions with titin and small ankyrin-1 suggest that it has an important role in myofibril assembly, structural support, and the sarcomeric alignment of the sarcoplasmic reticulum. In this study, we characterized the zebrafish orthologue of obscurin and examined its role in striated myofibril assembly. Zebrafish obscurin was expressed in the somites and central nervous system by 24 hours post-fertilization (hpf) and in the heart by 48 hpf. Depletion of obscurin using two independent morpholino antisense oligonucleotides resulted in diminished numbers and marked disarray of skeletal myofibrils, impaired lateral alignment of adjacent myofibrils, disorganization of the sarcoplasmic reticulum, somite segmentation defects, and abnormalities of cardiac structure and function. This is the first demonstration that obscurin is required for vertebrate cardiac and skeletal muscle development. The diminished capacity to generate and organize new myofibrils in response to obscurin depletion suggests that it may have a vital role in the causation of or adaptation to cardiac and skeletal myopathies.
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Raeker et al. (2006) studied Cardiac and skeletal muscle development. Depletion of obscurin using morpholino antisense oligonucleotides was evaluated on Striated myofibril assembly, cardiac structure and function. Depletion of obscurin in zebrafish resulted in diminished numbers and marked disarray of skeletal myofibrils, impaired lateral alignment, and abnormalities of cardiac structure and function.
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