Phosphodiesterases are key enzymes in the cAMP signaling cascade. They convert cAMP in its inactive form 5′-AMP and critically regulate the intensity and the duration of cAMP-mediated signals. Multiple isoforms exist that possess different intracellular distributions, different affinities for cAMP, and different catalytic and regulatory properties. This complex repertoire of enzymes provides a multiplicity of ways to modulate cAMP levels, to integrate more signaling pathways, and to respond to the specific needs of the cell within distinct subcellular domains. In this review we summarize key findings on phosphodiesterase compartmentalization in the cardiovascular system
beta-Adrenergic signalling mediates the positive inotropic effect of catecholamines on cardiomyocyte...
cAMP is the archetypal and ubiquitous second messenger utilised for the fine control of many cardiov...
cAMP is the archetypal and ubiquitous second messenger utilised for the fine control of many cardiov...
Phosphodiesterases are key enzymes in the cAMP signaling cascade. They convert cAMP in its inactive ...
A key feature of the cAMP/cAMP-dependent protein kinase (PKA) transduction system is the compartment...
Abstract—Cyclic AMP regulates a vast number of distinct events in all cells. Early studies establish...
Cardiac myocytes have provided a key paradigm for the concept of the compartmentalized cAMP generati...
Phosphodiesterases regulate levels of the cyclic nucleotides cyclic adenosine monophosphate and cycl...
beta-Adrenergic signaling via cAMP generation and PKA activation mediates the positive inotropic eff...
Cardiac myocytes have provided a key paradigm for the concept of the compartmentalized cAMP generati...
beta-Adrenergic signalling mediates the positive inotropic effect of catecholamines on cardiomyocyte...
β-Adrenergic signalling mediates the positive inotropic effect of catecholamines on cardiomyocytes, ...
beta-Adrenergic signaling via cAMP generation and PKA activation mediates the positive inotropic eff...
beta-Adrenergic signaling via cAMP generation and PKA activation mediates the positive inotropic eff...
cAMP is the archetypal and ubiquitous second messenger utilised for the fine control of many cardiov...
beta-Adrenergic signalling mediates the positive inotropic effect of catecholamines on cardiomyocyte...
cAMP is the archetypal and ubiquitous second messenger utilised for the fine control of many cardiov...
cAMP is the archetypal and ubiquitous second messenger utilised for the fine control of many cardiov...
Phosphodiesterases are key enzymes in the cAMP signaling cascade. They convert cAMP in its inactive ...
A key feature of the cAMP/cAMP-dependent protein kinase (PKA) transduction system is the compartment...
Abstract—Cyclic AMP regulates a vast number of distinct events in all cells. Early studies establish...
Cardiac myocytes have provided a key paradigm for the concept of the compartmentalized cAMP generati...
Phosphodiesterases regulate levels of the cyclic nucleotides cyclic adenosine monophosphate and cycl...
beta-Adrenergic signaling via cAMP generation and PKA activation mediates the positive inotropic eff...
Cardiac myocytes have provided a key paradigm for the concept of the compartmentalized cAMP generati...
beta-Adrenergic signalling mediates the positive inotropic effect of catecholamines on cardiomyocyte...
β-Adrenergic signalling mediates the positive inotropic effect of catecholamines on cardiomyocytes, ...
beta-Adrenergic signaling via cAMP generation and PKA activation mediates the positive inotropic eff...
beta-Adrenergic signaling via cAMP generation and PKA activation mediates the positive inotropic eff...
cAMP is the archetypal and ubiquitous second messenger utilised for the fine control of many cardiov...
beta-Adrenergic signalling mediates the positive inotropic effect of catecholamines on cardiomyocyte...
cAMP is the archetypal and ubiquitous second messenger utilised for the fine control of many cardiov...
cAMP is the archetypal and ubiquitous second messenger utilised for the fine control of many cardiov...