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Isolation of Human Myoblasts, Assessment of Myogenic Differentiation, and Store-operated Calcium Entry Measurement
Published on: July 26, 2017
Calcineurin localization in skeletal muscle offers insights into potential new targets
Carol E Torgan1, Mathew P Daniels
1Laboratory of Cell Biology, National Heart, Lung and Blood Institute, National Institutes of Health, 50 South Drive, Bethesda, Maryland 20892-8017, USA.
Abstract:
The Ca(2+)/calmodulin-activated protein phosphatase, calcineurin, is believed to regulate the development and function of skeletal and cardiac muscle. Striated muscle contains many calcineurin substrates, a few of which have been colocalized or found in molecular complexes with calcineurin. We examined the subcellular distribution of calcineurin in developing rat skeletal muscle cells and adult mouse skeletal muscle fibers by immunofluorescence microscopy. We found low levels of calcineurin immunoreactivity in the cytoplasm of myoblasts and higher levels in cytoplasmic vesicles of myotubes. Most of these vesicles were not immunoreactive for ryanodine receptors and, those that were, represented a small fraction of nascent triad junctions. In adult myofibers, calcineurin was largely associated with triads. Weaker calcineurin immunoreactivity occurred in the sarcoplasmic reticulum at the level of the M line. Unexpectedly, we found tiny clusters of calcineurin associated with nucleoli of developing myofiber nuclei. There were one to three clusters per nucleolus, either within or at the edges of fibrillar centers where ribosomal genes are transcribed. This suggests a role for calcineurin in regulating ribosome synthesis. Our findings suggest a variety of potential new targets and pathways through which calcineurin could regulate skeletal muscle development and plasticity and underscore the importance of spatial specificity in this regulation.
Insights
Calcineurin, a protein phosphatase, regulates muscle development. This study reveals calcineurin
Area of Science:
- Muscle Biology
- Cellular Biology
- Biochemistry
Background:
- Calcineurin (CaN) is a crucial Ca(2+)/calmodulin-activated protein phosphatase.
- Its role in skeletal and cardiac muscle development and function is established.
- The subcellular localization of CaN and its substrates in muscle is not fully understood.
Purpose of the Study:
- To investigate the subcellular distribution of calcineurin in developing and adult skeletal muscle.
- To identify potential novel roles of calcineurin in muscle regulation.
Main Methods:
- Immunofluorescence microscopy was employed.
- The study utilized developing rat skeletal muscle cells and adult mouse skeletal muscle fibers.
Main Results:
- Calcineurin levels were low in myoblast cytoplasm, increasing in myotube cytoplasmic vesicles.
- In adult myofibers, calcineurin primarily localized to triads and sarcoplasmic reticulum at the M line.
- Unexpectedly, calcineurin clusters were found in nucleoli, suggesting a role in ribosome synthesis.
Conclusions:
- Calcineurin exhibits distinct subcellular localizations in developing and adult skeletal muscle.
- The presence of calcineurin in nucleoli suggests a novel role in regulating ribosome synthesis.
- These findings highlight potential new pathways for calcineurin in skeletal muscle development and plasticity.
