Myofibrillogenesis in skeletal muscle cells in zebrafish
- 20 April 2009
- journal article
- research article
- Published by Wiley in Cell Motility
- Vol. 66 (8), 556-566
- https://doi.org/10.1002/cm.20365
Abstract
The “premyofibril” model of myofibrillogenesis, based on observations in cultured avian muscle cells, proposes that mature myofibrils are preceded by two intermediary structures: premyofibrils and nascent myofibrils. To determine if this model applies to zebrafish skeletal muscle development, we stained developing embryos with antibodies to sarcomeric alpha‐actinin and myosin II. In the youngest muscle cells, sarcomeric alpha‐actinin and non‐muscle myosin II were each localized in linear arrays of small bands that resembled the premyofibrils in avian myocytes. The distribution of muscle‐specific myosin II began as scattered short filaments followed in time by overlapping bundles of filaments and organized A‐bands in the older somites. Alpha‐actinin organization changed from small z‐bodies to beaded Z‐bands and ordered Z‐bands in myofibrils that extended the length of the elongating somites. In older somites with mature myofibrils, premyofibrils were also present at the ends of the mature myofibrils, suggesting that as the cells and somites grew longer, premyofibrils were involved in the elongation of existing mature myofibrils. Fluorescence Recovery After Photobleaching showed that the exchange of proteins (actin, alpha‐actinin, FATZ, myotilin and telethonin) between sarcoplasm and the Z‐bands of mature myofibrils in zebrafish resembled that seen for the same proteins in cultured avian myotubes, suggesting that myofibril assembly and maintenance in zebrafish share common properties with avian muscle. Cell Motil. Cytoskeleton 2009.Keywords
This publication has 46 references indexed in Scilit:
- Embryonic cardiomyocytes beat best on a matrix with heart-like elasticity: scar-like rigidity inhibits beatingJournal of Cell Science, 2008
- Cardiac myofibrillogenesis inside intact embryonic heartsDevelopmental Biology, 2008
- Shuttling of the chaperones Unc45b and Hsp90a between the A band and the Z line of the myofibrilThe Journal of cell biology, 2008
- Depletion of Zebrafish Titin Reduces Cardiac Contractility by Disrupting the Assembly of Z-Discs and A-BandsCirculation Research, 2007
- How to build a myofibrilJournal of Muscle Research and Cell Motility, 2006
- Independent Assembly of 1.6 .MU.m Long Bipolar MHC Filaments and I-Z-I Bodies.Cell Structure and Function, 1997
- Stages of embryonic development of the zebrafishDevelopmental Dynamics, 1995
- Large-scale mutagenesis in the zebrafish: in search of genes controlling development in a vertebrateCurrent Biology, 1994
- The premyofibril: Evidence for its role in myofibrillogenesisCell Motility, 1994
- Electron microscope studies on the structure of natural and synthetic protein filaments from striated muscleJournal of Molecular Biology, 1963