PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
February 18, 2011ENLIGHTEN (Jurnal Bimbingan dan Konseling Islam)165 citationsOpen Access

cGMP Signals Modulate cAMP Levels in a Compartment-Specific Manner to Regulate Catecholamine-Dependent Signaling in Cardiac Myocytes

ASAlessandra StangherlinFGFrank GesellchenAZAnna Zoccarato

Key Result

cGMP signals exert opposing effects on local cAMP levels via PDE2 and PDE3 in spatially distinct subcellular domains, and inhibition of PDE2 selectively abolishes the negative effects of cGMP on cAMP.

Structured PICO

P
Population
living rat ventriculocytes expressing targeted cAMP and cGMP biosensors
I
Intervention
Isoproterenol with modulation of cGMP signals and PDE2/PDE3 inhibition
O
Outcome
local cAMP response to catecholamines in specific subcellular compartmentssurrogate

cGMP modulates cAMP levels in a compartment-specific manner via PDE2 and PDE3, affecting PKA target phosphorylation and myocyte contractility, suggesting PDE2 inhibition may have therapeutic potential.

Abstract

RATIONALE: cAMP and cGMP are intracellular second messengers involved in heart pathophysiology. cGMP can potentially affect cAMP signals via cGMP-regulated phosphodiesterases (PDEs). OBJECTIVE: To study the effect of cGMP signals on the local cAMP response to catecholamines in specific subcellular compartments. METHODS AND RESULTS: We used real-time FRET imaging of living rat ventriculocytes expressing targeted cAMP and cGMP biosensors to detect cyclic nucleotides levels in specific locales. We found that the compartmentalized, but not the global, cAMP response to isoproterenol is profoundly affected by cGMP signals. The effect of cGMP is to increase cAMP levels in the compartment where the protein kinase (PK)A-RI isoforms reside but to decrease cAMP in the compartment where the PKA-RII isoforms reside. These opposing effects are determined by the cGMP-regulated PDEs, namely PDE2 and PDE3, with the local activity of these PDEs being critically important. The cGMP-mediated modulation of cAMP also affects the phosphorylation of PKA targets and myocyte contractility. CONCLUSIONS: cGMP signals exert opposing effects on local cAMP levels via different PDEs the activity of which is exerted in spatially distinct subcellular domains. Inhibition of PDE2 selectively abolishes the negative effects of cGMP on cAMP and may have therapeutic potential.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Stangherlin et al. (2011) studied Heart pathophysiology. cGMP signals / PDE2 inhibition was evaluated on Local cAMP response to catecholamines in specific subcellular compartments. cGMP signals exert opposing effects on local cAMP levels via PDE2 and PDE3 in spatially distinct subcellular domains, and inhibition of PDE2 selectively abolishes the negative effects of cGMP on cAMP.

synapsesocial.com/papers/6a14f5f69ff8b2b0e129e011https://doi.org/10.1161/circresaha.110.230698
Ask AI
Helpful
Bookmark
Share
View Full Paper