Extracellular ATP signaling during differentiation of C2C12 skeletal muscle cells: role in proliferation
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作者:
Tiziana Martinello
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机构:University of Padova,Department of Biomedical Sciences
Tiziana Martinello
Maria Cristina Baldoin
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机构:University of Padova,Department of Biomedical Sciences
Maria Cristina Baldoin
Laura Morbiato
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机构:University of Padova,Department of Biomedical Sciences
Laura Morbiato
Maddalena Paganin
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机构:University of Padova,Department of Biomedical Sciences
Maddalena Paganin
Elena Tarricone
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机构:University of Padova,Department of Biomedical Sciences
Elena Tarricone
Giorgio Schiavo
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机构:University of Padova,Department of Biomedical Sciences
Giorgio Schiavo
Elisa Bianchini
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机构:University of Padova,Department of Biomedical Sciences
Elisa Bianchini
Dorianna Sandonà
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机构:University of Padova,Department of Biomedical Sciences
Dorianna Sandonà
Romeo Betto
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机构:University of Padova,Department of Biomedical Sciences
Romeo Betto
机构:
[1] University of Padova,Department of Biomedical Sciences
[2] C.N.R. Institute of Neuroscience,undefined
来源:
Molecular and Cellular Biochemistry
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2011年
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351卷
关键词:
Myogenesis;
Satellite cells;
Extracellular ATP signaling;
ATP release;
Ectonucleotidases;
P2 receptors;
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暂无
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学科分类号:
摘要:
Evidence shows that extracellular ATP signals influence myogenesis, regeneration and physiology of skeletal muscle. Present work was aimed at characterizing the extracellular ATP signaling system of skeletal muscle C2C12 cells during differentiation. We show that mechanical and electrical stimulation produces substantial release of ATP from differentiated myotubes, but not from proliferating myoblasts. Extracellular ATP-hydrolyzing activity is low in myoblasts and high in myotubes, consistent with the increased expression of extracellular enzymes during differentiation. Stimulation of cells with extracellular nucleotides produces substantial Ca2+ transients, whose amplitude and shape changed during differentiation. Consistently, C2C12 cells express several P2X and P2Y receptors, whose level changes along with maturation stages. Supplementation with either ATP or UTP stimulates proliferation of C2C12 myoblasts, whereas excessive doses were cytotoxic. The data indicate that skeletal muscle development is accompanied by major functional changes in extracellular ATP signaling.