Natriuretic peptides regulate heart rate and sinoatrial node function by activating multiple natriuretic peptide receptors

scientific article

Natriuretic peptides regulate heart rate and sinoatrial node function by activating multiple natriuretic peptide receptors is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1016/J.YJMCC.2012.08.020
P698PubMed publication ID22960454

P2093author name stringRui Hua
Robert A Rose
John Azer
Kimberly Vella
P2860cites workMolecular mechanism of convergent regulation of brain Na(+) channels by protein kinase C and protein kinase A anchored to AKAP-15.Q44163841
Inhibition of L-type Ca2+ current by C-type natriuretic peptide in bullfrog atrial myocytes: an NPR-C-mediated effectQ44525850
A rapidly activating delayed rectifier K+ current regulates pacemaker activity in adult mouse sinoatrial node cellsQ44704953
Effects of C-type natriuretic peptide on ionic currents in mouse sinoatrial node: a role for the NPR-C receptor.Q44712594
Requirement of neuronal- and cardiac-type sodium channels for murine sinoatrial node pacemakingQ44978747
Cardiac and coronary function in the Langendorff-perfused mouse heart modelQ45848739
Protein kinase C enhances the rapidly activating delayed rectifier potassium current, IKr, through a reduction in C-type inactivation in guinea-pig ventricular myocytesQ46792855
C-type natriuretic peptide activates a non-selective cation current in acutely isolated rat cardiac fibroblasts via natriuretic peptide C receptor-mediated signallingQ48318699
cAMP-dependent phosphorylation of two sites in the alpha subunit of the cardiac sodium channel.Q48860850
Evidence of intercellular coupling between co-cultured adult rabbit ventricular myocytes and myofibroblasts.Q48908865
Fibroblast network in rabbit sinoatrial node: structural and functional identification of homogeneous and heterogeneous cell coupling.Q51026909
Na(+) current contribution to the diastolic depolarization in newborn rabbit SA node cells.Q51374758
The newborn rabbit sino-atrial node expresses a neuronal type I-like Na+ channel.Q51549315
Enhancement of rabbit cardiac sodium channels by beta-adrenergic stimulationQ67485471
Physiological role of silent receptors of atrial natriuretic factorQ69810517
Natriuretic peptidesQ74817622
Store-operated Ca2+ influx and expression of TRPC genes in mouse sinoatrial nodeQ80264323
Natriuretic peptidesQ80396416
Natriuretic peptide receptor-C signaling and regulationQ28252424
Natriuretic peptide system in human heart failureQ28261612
C-type natriuretic peptideQ28299333
Cytoplasmic domain of natriuretic peptide receptor-C inhibits adenylyl cyclase. Involvement of a pertussis toxin-sensitive G proteinQ28571032
Identification of the G protein-activating sequence of the single-transmembrane natriuretic peptide receptor C (NPR-C)Q28572824
Functional role of L-type Cav1.3 Ca2+ channels in cardiac pacemaker activityQ28593156
A coupled SYSTEM of intracellular Ca2+ clocks and surface membrane voltage clocks controls the timekeeping mechanism of the heart's pacemaker.Q33722486
RGS4 regulates parasympathetic signaling and heart rate control in the sinoatrial nodeQ34594772
An unexpected requirement for brain-type sodium channels for control of heart rate in the mouse sinoatrial nodeQ34871426
Natriuretic peptides: their structures, receptors, physiologic functions and therapeutic applicationsQ34906050
Ventricular expression of natriuretic peptides in Npr1(-/-) mice with cardiac hypertrophy and fibrosisQ35064422
Pharmacodynamics of a novel designer natriuretic peptide, CD-NP, in a first-in-human clinical trial in healthy subjectsQ35086433
Three new allelic mouse mutations that cause skeletal overgrowth involve the natriuretic peptide receptor C gene (Npr3).Q35619698
Molecular physiology of natriuretic peptide signallingQ35667249
Iron overload decreases CaV1.3-dependent L-type Ca2+ currents leading to bradycardia, altered electrical conduction, and atrial fibrillationQ36107259
Electrical coupling of fibroblasts and myocytes: relevance for cardiac propagationQ36286732
Natriuretic peptides, their receptors, and cyclic guanosine monophosphate-dependent signaling functionsQ36314468
C-type natriuretic peptide and heart failureQ36563829
SCN5A and sinoatrial node pacemaker function.Q36763211
Natriuretic peptides and therapeutic applicationsQ36794409
cAMP and cGMP signaling cross-talk: role of phosphodiesterases and implications for cardiac pathophysiologyQ36843654
Natriuretic peptide C receptor signalling in the heart and vasculatureQ37002318
Genesis and regulation of the heart automaticity.Q37216067
Modulation of cGMP in heart failure: a new therapeutic paradigmQ37329891
BNP-guided vs symptom-guided heart failure therapy: the Trial of Intensified vs Standard Medical Therapy in Elderly Patients With Congestive Heart Failure (TIME-CHF) randomized trialQ38383948
Neuromodulation of Na+ channel slow inactivation via cAMP-dependent protein kinase and protein kinase C.Q40323299
Pacemaker mechanisms in cardiac tissue.Q40486018
Functional Roles of Ca(v)1.3 (alpha(1D)) calcium channel in sinoatrial nodes: insight gained using gene-targeted null mutant miceQ40730951
Cardiac pacemaking in the sinoatrial nodeQ40850880
An unsuspected property of natriuretic peptides: promotion of calcium-dependent catecholamine release via protein kinase G-mediated phosphodiesterase type 3 inhibitionQ41584956
Discovery of a potent atrial natriuretic peptide antagonist for ANPA receptors in the human neuroblastoma NB-OK-1 cell lineQ41590358
The natriuretic peptides BNP and CNP increase heart rate and electrical conduction by stimulating ionic currents in the sinoatrial node and atrial myocardium following activation of guanylyl cyclase-linked natriuretic peptide receptorsQ42501965
Cytoplasmic domain of natriuretic peptide receptor C constitutes Gi activator sequences that inhibit adenylyl cyclase activityQ43575467
Natriuretic peptides like NO facilitate cardiac vagal neurotransmission and bradycardia via a cGMP pathway.Q43799974
P433issue5
P304page(s)715-724
P577publication date2012-08-30
P1433published inJournal of Molecular and Cellular CardiologyQ2061932
P1476titleNatriuretic peptides regulate heart rate and sinoatrial node function by activating multiple natriuretic peptide receptors
P478volume53

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cites work (P2860)
Q47141082Altered heart rate regulation by the autonomic nervous system in mice lacking natriuretic peptide receptor C (NPR-C).
Q54285634Altered parasympathetic nervous system regulation of the sinoatrial node in Akita diabetic mice.
Q39007435B-type natriuretic peptide and heart failure: what can we learn from clinical trials?
Q30909922BNP and Heart Failure: Preclinical and Clinical Trial Data.
Q91891449C-type Natriuretic Peptide: A Multifaceted Paracrine Regulator in the Heart and Vasculature
Q92565210C-type natriuretic peptide co-ordinates cardiac structure and function
Q35994650Different Profile of mRNA Expression in Sinoatrial Node from Streptozotocin-Induced Diabetic Rat
Q42010491Divergent effects of a designer natriuretic peptide CD-NP in the regulation of adipose tissue and metabolism
Q54430756Effects of natriuretic peptides on electrical conduction in the sinoatrial node and atrial myocardium of the heart.
Q91941354Electrophysiologic and molecular mechanisms of a frameshift NPPA mutation linked with familial atrial fibrillation
Q53622545Impaired sinoatrial node function and increased susceptibility to atrial fibrillation in mice lacking natriuretic peptide receptor C.
Q60916085Natriuretic Peptide Receptor-C Protects Against Angiotensin II-Mediated Sinoatrial Node Disease in Mice
Q54485478Natriuretic peptides and peripheral autonomic neurotransmission: back to the A, B, and C's.
Q90478901Neurohumoral Control of Sinoatrial Node Activity and Heart Rate: Insight From Experimental Models and Findings From Humans

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