Titin and myosin, but not desmin, are linked during myofibrillogenesis in postmitotic mononucleated myoblasts.
Open Access
- 1 December 1986
- journal article
- research article
- Published by Rockefeller University Press in The Journal of cell biology
- Vol. 103 (6) , 2185-2196
- https://doi.org/10.1083/jcb.103.6.2185
Abstract
Monoclonal antibodies specific for the muscle protein titin have been used in conjunction with muscle-specific antibodies against myofibrillar myosin heavy chains (MHCs) and desmin to study myogenesis in cultured cells. Desmin synthesis is initiated in replicating presumptive myoblasts, whereas the synthesis of titin and MHC is initiated simultaneously in their progeny, the postmitotic, mononucleated myoblasts. Both titin and MHC are briefly localized to nonstriated and thereafter to definitively striated myofibrils. At no stage during myofibrillogenesis is either protein observed as part of a sequence of mini-sarcomeres. Titin antibodies bind to the A-I junction, MHC antibodies to the A bands in nascent, maturing, and mature myofibrils. In contrast, desmin remains distributed as longitudinal filaments until well after the definitive myofibrils have aligned laterally. This tight temporal and topographical linkage between titin and myosin is also observed in postmitotic, mononucleated myoblasts and multinucleated myotubes when myofibrillogenesis is perturbed with Colcemid or taxol. Colcemid induces elongating postmitotic mononucleated myoblasts and multinucleated myotubes to round up and form Colcemid myosacs. The myofibrils that emerge in these rounded cells are deployed in convoluted circles. The time required for their nonstriated myofibrils to transform into striated myofibrils is greatly protracted. Furthermore, as Colcemid induces immense desmin intermediate filament cables, the normal spatial relationships between emerging individual myofibrils is distorted. Despite these disturbances at all stages, the characteristic temporal and spatial relationship observed in normal myofibrils between titin and MHC is observed in myofibrils assembling in Colcemid-treated cells. Newly born postmitotic mononucleated myoblasts, or maturing myotubes, reared in taxol acquire a star-shaped configuration and are induced to assemble "pseudo-striated myofibrils." Pseudo-striated myofibrils consist of laterally aggregated 1.6-micron long, thick filaments that interdigitate, not with thin filaments, but with long microtubules. These atypical myofibrils lack Z bands. Despite the absence of thin filaments and Z bands, titin localizes with its characteristics sarcomeric periodicity in pseudo-striated myofibrils. We conclude that the initiation and subsequent regulation of titin and myosin synthesis, and their spatial deployment within developing sarcomeres are tightly coupled events. These findings are discussed in terms of a model that proposes interaction between two relatively autonomous "organizing centers" in the assembly of each sarcomere.This publication has 44 references indexed in Scilit:
- The effect of cell density, conditioned medium and cytosine arabinoside on myogenesis in primary and secondary culturesExperimental Cell Research, 1977
- Myosin accumulation in mononucleated cells of chick muscle culturesDevelopmental Biology, 1976
- Myosin synthesis by fusion-arrested chick embryo myoblasts in cell cultureDevelopmental Biology, 1976
- Coordinated synthesis and degradation of actin and myosin in a variety of myogenic and non-myogenic cellsExperimental Cell Research, 1976
- Differences among myosins synthesized in non-myogenic cells, presumptive myoblasts, and myoblasts.Proceedings of the National Academy of Sciences, 1975
- Synthesis of myosin heavy and light chains in muscle cultures.The Journal of cell biology, 1975
- Response of myogenic and fibrogenic cells to cytochalasin B and to colcemid. I. Light microscope observations.The Journal of cell biology, 1975
- Effects of cytochaslasin B and colcemide on myogenic cultures.Proceedings of the National Academy of Sciences, 1975
- AN ANALYSIS OF MYOGENESIS IN VITRO USING FLUORESCEIN-LABELED ANTIMYOSINJournal of Histochemistry & Cytochemistry, 1965
- AN ANALYSIS OF MYOGENESIS BY THE USE OF FLUORESCENT ANTIMYOSINThe Journal of cell biology, 1957