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Differentiation of H9c2 cardiomyoblasts: The role of adenylate cyclase system
Author(s) -
Pagano M.,
Naviglio S.,
Spina A.,
Chiosi E.,
Castoria G.,
Romano M.,
Sorrentino A.,
Illiano F.,
Illiano G.
Publication year - 2004
Publication title -
journal of cellular physiology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.529
H-Index - 174
eISSN - 1097-4652
pISSN - 0021-9541
DOI - 10.1002/jcp.10420
Subject(s) - adenylate kinase , cyclase , microbiology and biotechnology , chemistry , biology , biochemistry , enzyme
The adenylate cyclase (AC)/cAMP/cAMP‐dependent protein kinase pathway controls many biological phenomena. The molecular mechanisms by which cAMP induces alternative commitment towards differentiation or proliferation are not still completely known. The differentiation of myoblast cell lines into myocytes/myotubes represents a well‐established model of skeletal muscle differentiation. We analyzed the AC/cAMP pathway during terminal differentiation of H9c2 myoblasts. When cultured in low‐serum containing medium, H9c2 myoblasts exit the cell cycle and differentiate into myocytes/myotubes. A key step of this process is the expression of myogenin, an essential transcription factor for the terminal differentiation into myocytes. During this phenomenon we observed a decrease in both cAMP levels and AC activity, which suggests a functional negative role of cAMP on the differentiation process of H9c2 cells. 8‐Br‐cAMP and other cAMP‐elevating agents, such as forskolin, IBMX, and isoproterenol, negatively affected skeletal muscle differentiation of H9c2 myoblasts. Both AC activity down‐regulation and intracellular cAMP reduction were accompanied by significant variations in the levels of membrane proteins belonging to the AC system (AC catalytic subunit, G αi−1 , G αs ). The functional relationship between intracellular cAMP content and protein levels of AC system is discussed. J. Cell. Physiol. 198: 408–416, 2004© 2003 Wiley‐Liss, Inc.

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