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PMID: 10783386 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Cyclic GMP-dependent protein kinase signaling pathway inhibits RhoA-induced Ca2+ sensitization of contraction in vascular smooth muscle.

The Journal of biological chemistry ·Vol. 275 ·No. 28 ·2000-07-14 ·Pages 21722-9

Sauzeau V, Le Jeune H, Cario-Toumaniantz C, Smolenski A, Lohmann SM, Bertoglio J, Chardin P, Pacaud P, Loirand G

Abstract

The potent vasodilator action of cyclic GMP-dependent protein kinase (cGK) involves decreasing the Ca(2+) sensitivity of contraction of smooth muscle via stimulation of myosin light chain phosphatase through unknown mechanisms (Wu, X., Somlyo, A. V., and Somlyo, A. P. (1996) Biochem. Biophys. Res. Commun. 220, 658-663). Myosin light chain phosphatase activity is controlled by the small GTPase RhoA and its target Rho kinase. Here we demonstrate cGMP effects mediated by cGK that inhibit RhoA-dependent Ca(2+) sensitization of contraction of blood vessels and actin cytoskeleton organization in cultured vascular myocytes. Ca(2+) sensitization and actin organization were inhibited by both 8-bromo-cGMP and sodium nitroprusside (SNP). SNP also caused translocation of activated RhoA from the membrane to the cytosol. SNP-induced actin disassembly was lost in vascular myocytes in culture after successive passages but was restored by transfection of cells with cGK I. Furthermore, cGK phosphorylated RhoA in vitro, and addition of cGK I inhibited RhoA-induced Ca(2+) sensitization in permeabilized smooth muscle. 8-Bromo-cGMP-induced actin disassembly was inhibited in vascular myocytes expressing RhoA(Ala-188), a mutant that could not be phosphorylated. Collectively, these results indicate that cGK phosphorylates and inhibits RhoA and suggest that the consequent inhibition of RhoA-induced Ca(2+) sensitization and actin cytoskeleton organization contributes to the vasodilator action of nitric oxide.

MeSH Terms
Actins/drug effects,metabolism Animals Aorta/physiology Calcium/physiology Calcium Signaling/physiology Cells, Cultured Cyclic GMP/analogs & derivatives,pharmacology Cyclic GMP-Dependent Protein Kinases/metabolism Cytoskeleton/drug effects,physiology Gallopamil/pharmacology Guanosine 5'-O-(3-Thiotriphosphate)/pharmacology Guinea Pigs In Vitro Techniques Isometric Contraction/physiology Muscle, Smooth, Vascular/drug effects,physiology Nitroprusside/pharmacology Phenylephrine/pharmacology Phosphorylation Portal Vein/physiology Pulmonary Artery/physiology Rabbits Rats Rats, Wistar Signal Transduction Thapsigargin/pharmacology rhoA GTP-Binding Protein/metabolism
Chemicals
Actins Nitroprusside Phenylephrine 8-bromocyclic GMP Guanosine 5'-O-(3-Thiotriphosphate) Gallopamil Thapsigargin Cyclic GMP-Dependent Protein Kinases rhoA GTP-Binding Protein Cyclic GMP Calcium
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Sauzeau V
Laboratoire de Physiologie Cellulaire et Moléculaire, INSERM U-533, Faculté des Sciences, 44322 Nantes, France.
Le Jeune H
Cario-Toumaniantz C
Smolenski A
Lohmann S M
Bertoglio J
Chardin P
Pacaud P
Loirand G
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
2000-07-14
Pages
21722-9
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
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