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Changing potency by spontaneous fusion | Nature
Changing potency by spontaneous fusion | Nature

Interactions of Calcium Fluctuations during Cardiomyocyte Contraction with  Real-Time cAMP Dynamics Detected by FRET
Interactions of Calcium Fluctuations during Cardiomyocyte Contraction with Real-Time cAMP Dynamics Detected by FRET

PDF) An anchored PKA and PDE4 complex regulates subplasmalemmal cAMP  dynamics
PDF) An anchored PKA and PDE4 complex regulates subplasmalemmal cAMP dynamics

Cyclic Amp In Plants | Encyclopedia
Cyclic Amp In Plants | Encyclopedia

The protein kinase A anchoring protein mAKAP coordinates two integrated  cAMP effector pathways | Nature
The protein kinase A anchoring protein mAKAP coordinates two integrated cAMP effector pathways | Nature

Cyclic nucleotide research — still expanding after half a century | Nature  Reviews Molecular Cell Biology
Cyclic nucleotide research — still expanding after half a century | Nature Reviews Molecular Cell Biology

IJMS | Free Full-Text | Guanylyl Cyclase-cGMP Signaling Pathway in  Melanocytes: Differential Effects of Altered Gravity in Non-Metastatic and  Metastatic Cells | HTML
IJMS | Free Full-Text | Guanylyl Cyclase-cGMP Signaling Pathway in Melanocytes: Differential Effects of Altered Gravity in Non-Metastatic and Metastatic Cells | HTML

cAMP/PKA signaling compartmentalization in cardiomyocytes: Lessons from  FRET-based biosensors - Journal of Molecular and Cellular Cardiology
cAMP/PKA signaling compartmentalization in cardiomyocytes: Lessons from FRET-based biosensors - Journal of Molecular and Cellular Cardiology

Interactions of Calcium Fluctuations during Cardiomyocyte Contraction with  Real-Time cAMP Dynamics Detected by FRET
Interactions of Calcium Fluctuations during Cardiomyocyte Contraction with Real-Time cAMP Dynamics Detected by FRET

Frontiers | Visualizing Cyclic Adenosine Monophosphate in Cardiac  Microdomains Involved in Ion Homeostasis | Physiology
Frontiers | Visualizing Cyclic Adenosine Monophosphate in Cardiac Microdomains Involved in Ion Homeostasis | Physiology

Cyclic nucleotide research - Still expanding after half a century
Cyclic nucleotide research - Still expanding after half a century

Cyclic nucleotide research — still expanding after half a century | Nature  Reviews Molecular Cell Biology
Cyclic nucleotide research — still expanding after half a century | Nature Reviews Molecular Cell Biology

Identification of novel Epac2 antagonists through in silico and in vitro  analyses - ScienceDirect
Identification of novel Epac2 antagonists through in silico and in vitro analyses - ScienceDirect

Cyclic nucleotide research — still expanding after half a century | Nature  Reviews Molecular Cell Biology
Cyclic nucleotide research — still expanding after half a century | Nature Reviews Molecular Cell Biology

JCDD | Free Full-Text | PDE4-Mediated cAMP Signalling | HTML
JCDD | Free Full-Text | PDE4-Mediated cAMP Signalling | HTML

Compartmentation of Cyclic Nucleotide Signaling in the Heart | Circulation  Research
Compartmentation of Cyclic Nucleotide Signaling in the Heart | Circulation Research

Frontiers | Dual Activation of Phosphodiesterases 3 and 4 Regulates Basal  Spontaneous Beating Rate of Cardiac Pacemaker Cells: Role of  Compartmentalization? | Physiology
Frontiers | Dual Activation of Phosphodiesterases 3 and 4 Regulates Basal Spontaneous Beating Rate of Cardiac Pacemaker Cells: Role of Compartmentalization? | Physiology

Real-Time Monitoring of Cyclic Nucleotide Changes in Living Cells |  SpringerLink
Real-Time Monitoring of Cyclic Nucleotide Changes in Living Cells | SpringerLink

PDF] Cyclic nucleotide research — still expanding after half a century |  Semantic Scholar
PDF] Cyclic nucleotide research — still expanding after half a century | Semantic Scholar

Cyclic nucleotide research — still expanding after half a century | Nature  Reviews Molecular Cell Biology
Cyclic nucleotide research — still expanding after half a century | Nature Reviews Molecular Cell Biology

Cyclic nucleotide research — still expanding after half a century | Nature  Reviews Molecular Cell Biology
Cyclic nucleotide research — still expanding after half a century | Nature Reviews Molecular Cell Biology

Regulating cellular cyclic adenosine monophosphate: “Sources,” “sinks,” and  now, “tunable valves” - Getz - 2020 - WIREs Systems Biology and Medicine -  Wiley Online Library
Regulating cellular cyclic adenosine monophosphate: “Sources,” “sinks,” and now, “tunable valves” - Getz - 2020 - WIREs Systems Biology and Medicine - Wiley Online Library

Epac: a new cAMP target and new avenues in cAMP research | Nature Reviews  Molecular Cell Biology
Epac: a new cAMP target and new avenues in cAMP research | Nature Reviews Molecular Cell Biology

Targeting protein–protein interactions within the cyclic AMP signaling  system as a therapeutic strategy for cardiovascular disease | Future  Medicinal Chemistry
Targeting protein–protein interactions within the cyclic AMP signaling system as a therapeutic strategy for cardiovascular disease | Future Medicinal Chemistry

Roles of phosphodiesterases in the regulation of the cardiac cyclic  nucleotide cross-talk signaling network - Journal of Molecular and Cellular  Cardiology
Roles of phosphodiesterases in the regulation of the cardiac cyclic nucleotide cross-talk signaling network - Journal of Molecular and Cellular Cardiology

FRET biosensor uncovers cAMP nano-domains at β-adrenergic targets that  dictate precise tuning of cardiac contractility | Nature Communications
FRET biosensor uncovers cAMP nano-domains at β-adrenergic targets that dictate precise tuning of cardiac contractility | Nature Communications

IJMS | Free Full-Text | Therapeutic Implications for PDE2 and cGMP/cAMP  Mediated Crosstalk in Cardiovascular Diseases | HTML
IJMS | Free Full-Text | Therapeutic Implications for PDE2 and cGMP/cAMP Mediated Crosstalk in Cardiovascular Diseases | HTML