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Regulator of G-protein signaling subtype 4 mediates antihypertrophic effect of locally secreted natriuretic peptides in the heart

  • Takeshi Tokudome
  • , Ichiro Kishimoto
  • , Takeshi Horio
  • , Yuji Arai
  • , Daryl O. Schwenke
  • , Jun Hino
  • , Ichiro Okano
  • , Yuhei Kawano
  • , Masakazu Kohno
  • , Mikiya Miyazato
  • , Kazuwa Nakao
  • , Kenji Kangawa
  • National Cerebral and Cardiovascular Center
  • Kagawa University
  • Kyoto University

Research output: Contribution to journalArticlepeer-review

92 Scopus citations

Abstract

BACKGROUND - Mice lacking guanylyl cyclase-A (GC-A), a natriuretic peptide receptor, have pressure-independent cardiac hypertrophy. However, the mechanism underlying GC-A-mediated inhibition of cardiac hypertrophy remains to be elucidated. In the present report, we examined the role of regulator of G-protein signaling subtype 4 (RGS4), a GTPase activating protein for Gq and Gi, in the antihypertrophic effects of GC-A. METHODS AND RESULTS - In cultured cardiac myocytes, treatment of atrial natriuretic peptide stimulated the binding of guanosine 3′,5′-cyclic monophosphate-dependent protein kinase (PKG) I-α to RGS4, PKG-dependent phosphorylation of RGS4, and association of RGS4 and Gαq. In contrast, blockade of GC-A by an antagonist, HS-142-1, attenuated the phosphorylation of RGS4 and association of RGS4 and Gαq. Moreover, overexpressing a dominant negative form of RGS4 diminished the inhibitory effects of atrial natriuretic peptide on endothelin-1-stimulated inositol 1,4,5-triphosphate production, [H]leucine incorporation, and atrial natriuretic peptide gene expression. Furthermore, expression and phosphorylation of RGS4 were significantly reduced in the hearts of GC-A knockout (GC-A-KO) mice compared with wild-type mice. For further investigation, we constructed cardiomyocyte-specific RGS4 transgenic mice and crossbred them with GC-A-KO mice. The cardiac RGS4 overexpression in GC-A-KO mice significantly reduced the ratio of heart to body weight (P<0.001), cardiomyocyte size (P<0.01), and ventricular calcineurin activity (P<0.05) to 80%, 76%, and 67% of nontransgenic GC-A-KO mice, respectively. It also significantly suppressed the augmented cardiac expression of hypertrophy-related genes in GC-A-KO mice. CONCLUSIONS - These results provide evidence that GC-A activates cardiac RGS4, which attenuates Gαq and its downstream hypertrophic signaling, and that RGS4 plays important roles in GC-A-mediated inhibition of cardiac hypertrophy.

Original languageEnglish
Pages (from-to)2329-2339
Number of pages11
JournalCirculation
Volume117
Issue number18
DOIs
StatePublished - May 2008
Externally publishedYes

Keywords

  • Calcineurin
  • Hypertrophy
  • Natriuretic peptides
  • Regulators of G-protein signaling proteins
  • Remodeling

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