نتایج جستجو برای: ryr2

تعداد نتایج: 1011  

Journal: :Circulation research 2004
Bailong Xiao Cindy Sutherland Michael P Walsh S R Wayne Chen

Dissociation of FKBP12.6 from the cardiac Ca2+-release channel (RyR2) as a consequence of protein kinase A (PKA) hyperphosphorylation of RyR2 at a single amino acid residue, serine-2808, has been proposed as an important mechanism underlying cardiac dysfunction in heart failure. However, the issue of whether PKA phosphorylation of RyR2 can dissociate FKBP12.6 from RyR2 is controversial. To addi...

Journal: :Cardiovascular research 2012
Michael J Bround Parisa Asghari Rich B Wambolt Lubos Bohunek Claire Smits Marjolaine Philit Timothy J Kieffer Edward G Lakatta Kenneth R Boheler Edwin D W Moore Michael F Allard James D Johnson

AIMS The molecular mechanisms controlling heart function and rhythmicity are incompletely understood. While it is widely accepted that the type 2 ryanodine receptor (Ryr2) is the major Ca(2+) release channel in excitation-contraction coupling, the role of these channels in setting a consistent beating rate remains controversial. Gain-of-function RYR2 mutations in humans and genetically engineer...

Journal: :Circulation research 2013
Randall Loaiza Nancy A Benkusky Patricia P Powers Timothy Hacker Sami Noujaim Michael J Ackerman José Jalife Héctor H Valdivia

RATIONALE Most cardiac ryanodine receptor (RyR2) mutations associated with catecholaminergic polymorphic ventricular tachycardia (CPVT) are postulated to cause a distinctive form of Ca(2+) release dysfunction. Considering the spread distribution of CPVT mutations, we hypothesized that dysfunctional heterogeneity also was feasible. OBJECTIVE To determine the molecular and cellular mechanisms b...

Journal: :Circulation research 2011
Albano C Meli Marwan M Refaat Miroslav Dura Steven Reiken Anetta Wronska Julianne Wojciak Joan Carroll Melvin M Scheinman Andrew R Marks

RATIONALE Mutations in the cardiac type 2 ryanodine receptor (RyR2) have been linked to catecholaminergic polymorphic ventricular tachycardia (CPVT). CPVT-associated RyR2 mutations cause fatal ventricular arrhythmias in young individuals during β-adrenergic stimulation. OBJECTIVE This study sought to determine the effects of a novel RyR2-G230C mutation and whether this mutation and RyR2-P2328...

2004
Bailong Xiao Cindy Sutherland Michael P. Walsh Wayne Chen

Dissociation of FKBP12.6 from the cardiac Ca -release channel (RyR2) as a consequence of protein kinase A (PKA) hyperphosphorylation of RyR2 at a single amino acid residue, serine-2808, has been proposed as an important mechanism underlying cardiac dysfunction in heart failure. However, the issue of whether PKA phosphorylation of RyR2 can dissociate FKBP12.6 from RyR2 is controversial. To addit...

Journal: :International journal of cardiology 2015
Jim W Cheung Albano C Meli Wenjun Xie Suneet Mittal Steven Reiken Anetta Wronska Linna Xu Jonathan S Steinberg Steven M Markowitz Sei Iwai Alain Lacampagne Bruce B Lerman Andrew R Marks

BACKGROUND Ryanodine receptor (RyR2) mutations have largely been associated with catecholaminergic polymorphic ventricular tachycardia (PMVT). The role of RyR2 mutations in the pathogenesis of arrhythmias and syncope at rest is unknown. We sought to characterize the clinical and functional characteristics associated with a novel RyR2 mutation found in a mother and daughter with PMVT at rest. ...

Journal: :Heart Rhythm 2023

Heritable mutations in RYR2 cause sudden-death predisposing arrhythmia syndromes, such as catecholaminergic polymorphic ventricular tachycardia (CPVT), through increased sarcoplasmic reticulum (SR) diastolic Ca2+ leak. RYR2-encoded ryanodine receptor 2 is an intracellular transmembrane release channel the SR of cardiomyocytes. Even on optimal medical therapy, breakthrough life-threatening arrhy...

Journal: :Molecular pharmacology 2011
Amy D Hanna Marie Janczura Eric Cho Angela F Dulhunty Nicole A Beard

Our aim was to examine the molecular basis for acute effects of the anthracycline daunorubicin on cardiac ryanodine receptor (RyR2) channels and cardiac calsequestrin (CSQ2). Cardiotoxic effects of anthracyclines preclude their chemotherapeutic use in patients with pre-existing heart conditions. To address this significant problem, the mechanisms of anthracycline toxicity must be defined but at...

Journal: :Molecular pharmacology 2014
D Mehra M S Imtiaz D F van Helden B C Knollmann D R Laver

Catecholaminergic polymorphic ventricular tachycardia (CPVT) causes sudden cardiac death due to mutations in cardiac ryanodine receptors (RyR2), calsequestrin, or calmodulin. Flecainide, a class I antiarrhythmic drug, inhibits Na(+) and RyR2 channels and prevents CPVT. The purpose of this study is to identify inhibitory mechanisms of flecainide on RyR2. RyR2 were isolated from sheep heart, inco...

Journal: :The Journal of pharmacology and experimental therapeutics 2003
Keshore R Bidasee Karuna Nallani Henry R Besch U Deniz Dincer

In a previous study, we showed that after 6 weeks of streptozotocin-induced diabetes (6D), expression of type 2 ryanodine receptor calcium-release channels (RyR2) did not change significantly in rat hearts. However, the ability of this protein to bind [3H]ryanodine was compromised. Loss in activity therefore resulted from diabetes-induced increases in post-translational modifications on RyR2. I...

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