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PMID: 10856433 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Inhibition of platelet-derived growth factor-induced mitogenesis by phosphodiesterase 3 inhibitors: role of protein kinase A in vascular smooth muscle cell mitogenesis.

Biochemical pharmacology ·Vol. 60 ·No. 3 ·2000-08-01 ·Pages 381-7

Osinski MT, Schrör K

Abstract

Proliferation of vascular smooth muscle cells (SMC) in response to platelet-derived growth factor (PDGF) and other mitogens plays an important role in restenosis following coronary angioplasty. Elevation of adenosine 3',5'-cyclic monophosphate (cAMP) concentration in SMC has been shown to inhibit SMC mitogenesis and could be obtained either directly by stimulation of adenylyl cyclase-coupled receptors or indirectly by inhibition of cAMP-specific phosphodiesterase (PDE4) or the cyclic guanosine 3', 5'-monophosphate-inhibitable phosphodiesterase (PDE3). This study compared the effects of the selective PDE3 inhibitors trequinsin and quazinone with the selective PDE4 inhibitors Ro 20-1724 and rolipram on PDGF-induced DNA synthesis, mitogen-activated protein (MAP) kinase activation, cAMP levels, and protein kinase A (PKA) activation in SMC. Both PDE3 and PDE4 inhibitors stimulated intracellular PKA activation as seen from phosphorylation of vasodilator-stimulated phosphoprotein (VASP). However, only PDE3 inhibitors, and not inhibitors of PDE4, reduced PDGF-induced DNA synthesis and inhibited p42/p44 MAP kinase phosphorylation. At antimitogenic concentrations, the PDE3 inhibitors had only minor effects on cAMP levels. In contrast, PDE4 inhibitors increased the forskolin-induced cellular cAMP concentration 13- to 17-fold above control. These data demonstrate that inhibitors of PDE3 are potent antimitogenic agents and that a general increase in cellular cAMP levels and PKA activation per se are not sufficient to inhibit PDGF-induced SMC mitogenesis.

MeSH Terms
3',5'-Cyclic-AMP Phosphodiesterases/antagonists & inhibitors,metabolism Animals Cattle Cell Adhesion Molecules/metabolism Cell Division/drug effects Cell Survival/drug effects Cells, Cultured Cyclic AMP/metabolism Cyclic AMP-Dependent Protein Kinases/physiology Cyclic Nucleotide Phosphodiesterases, Type 3 DNA/biosynthesis,drug effects Microfilament Proteins Mitogen-Activated Protein Kinases/metabolism Muscle, Smooth, Vascular/cytology,drug effects Phosphodiesterase Inhibitors/pharmacology Phosphoproteins/metabolism Phosphorylation/drug effects Platelet-Derived Growth Factor/antagonists & inhibitors,physiology Thymidine/metabolism Tritium
Chemicals
Cell Adhesion Molecules Microfilament Proteins Phosphodiesterase Inhibitors Phosphoproteins Platelet-Derived Growth Factor vasodilator-stimulated phosphoprotein Tritium DNA Cyclic AMP Cyclic AMP-Dependent Protein Kinases Mitogen-Activated Protein Kinases 3',5'-Cyclic-AMP Phosphodiesterases Cyclic Nucleotide Phosphodiesterases, Type 3 Thymidine
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Osinski M T
Institut für Pharmakologie und Klinische Pharmakologie, Heinrich-Heine-Universität, Düsseldorf, Germany.
Schrör K
Article Info
Journal
Biochemical pharmacology
Abbr.
Biochem Pharmacol
ISSN
0006-2952
Published
2000-08-01
Pages
381-7
Language
English
Region
England
NLM ID
0101032
Subset
IM
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