Javascript must be enabled to continue!
Synergy of calcium release site determinants in control of calcium release events in cardiac myocytes
View through CrossRef
Abstract
Recent data on structure of dyads in cardiac myocytes indicate variable clustering of RyR calcium release channels. The question arises as to how geometric factors of RyR arrangement translate to their role in formation of calcium release events (CRE). Since this question is not experimentally testable
in situ
, we performed
in silico
experiments on a large set of calcium release site (CRS) models. The models covered the range of RyR spatial distributions observed in dyads, and included gating of RyRs with open probability dependent on Ca
2+
and Mg
2+
concentration. The RyR single-channel calcium current, varied in the range of previously reported values, was set constant in the course of CRE simulations. Other known features of dyads were omitted in the model formulation for clarity. CRE simulations initiated by a single random opening of one of the RyRs in a CRS produced spark-like responses with characteristics that varied with RyR vicinity, a newly defined parameter quantifying spatial distribution of RyRs in the CRSs, and with the RyR single-channel calcium current. The CRE characteristics followed the law of mass action with respect to a CRS state variable, defined as a weighed product of RyR vicinity and RyR single-channel calcium current. The results explained the structure-function relations among determinants of cardiac dyads on synergy principles and thus allowed to evolve the concept of CRS as a dynamic unit of cardiac dyad.
Title: Synergy of calcium release site determinants in control of calcium release events in cardiac myocytes
Description:
Abstract
Recent data on structure of dyads in cardiac myocytes indicate variable clustering of RyR calcium release channels.
The question arises as to how geometric factors of RyR arrangement translate to their role in formation of calcium release events (CRE).
Since this question is not experimentally testable
in situ
, we performed
in silico
experiments on a large set of calcium release site (CRS) models.
The models covered the range of RyR spatial distributions observed in dyads, and included gating of RyRs with open probability dependent on Ca
2+
and Mg
2+
concentration.
The RyR single-channel calcium current, varied in the range of previously reported values, was set constant in the course of CRE simulations.
Other known features of dyads were omitted in the model formulation for clarity.
CRE simulations initiated by a single random opening of one of the RyRs in a CRS produced spark-like responses with characteristics that varied with RyR vicinity, a newly defined parameter quantifying spatial distribution of RyRs in the CRSs, and with the RyR single-channel calcium current.
The CRE characteristics followed the law of mass action with respect to a CRS state variable, defined as a weighed product of RyR vicinity and RyR single-channel calcium current.
The results explained the structure-function relations among determinants of cardiac dyads on synergy principles and thus allowed to evolve the concept of CRS as a dynamic unit of cardiac dyad.
Related Results
e0401 Changes of intracellular calcium concentration in cardiac-like myocytes
e0401 Changes of intracellular calcium concentration in cardiac-like myocytes
Objective
To study the effects of verapamil, endothelin on [Ca2+]i in cardiac-like myocytes derived of bone marrow mesenchymal stem cells.
...
Relaxation in ferret ventricular myocytes: unusual interplay among calcium transport systems.
Relaxation in ferret ventricular myocytes: unusual interplay among calcium transport systems.
Transport systems responsible for removing Ca2+ from the myoplasm during relaxation in isolated ferret ventricular myocytes were studied using caffeine‐induced contractures. Intern...
Intracellular cAMP: the “switch” that triggers on “spontaneous transient outward currents” generation in freshly isolated myocytes from thoracic aorta
Intracellular cAMP: the “switch” that triggers on “spontaneous transient outward currents” generation in freshly isolated myocytes from thoracic aorta
Spontaneous transient outward currents (STOCs) have been reported in resistance and small arteries but have not yet been found in thoracic aorta. Do thoracic aorta myocytes possess...
Expression of TRP Ion Channels in Cardiac Myocytes
Expression of TRP Ion Channels in Cardiac Myocytes
The overall goal of this investigation was to determine the extent to which transient receptor potential (TRP) ion channels of the A1 and V1 subtypes are expressed in the murine he...
British Food Journal Volume 45 Issue 9 1943
British Food Journal Volume 45 Issue 9 1943
I now pass on to an aspect of calcium metabolism which is more topical, but probably more controversial. I refer to the incidence of calcium deficiency. By what means can we determ...
Abstract 1372: Sirt3 Promotes Survival of Cardiac Myocytes under oxidative stress and Upregulates Mitochondrial Genes Through Nuclear Respiratory Factor
Abstract 1372: Sirt3 Promotes Survival of Cardiac Myocytes under oxidative stress and Upregulates Mitochondrial Genes Through Nuclear Respiratory Factor
Silent information regulator 1 (Sirt1), the prototype member of the sirtuin family, has been implicated in longevity and stress resistance. Sirt3, another member of the sirtuin fam...
New calcium signaling mechanisms in the myocytes from small pulmonary
veins
New calcium signaling mechanisms in the myocytes from small pulmonary
veins
Objective: Pulmonary veins (PVs) transport oxygenated blood from the
lungs to the left side of the heart. PVs contain myocardial sleeves, which
...
THE INFLUENCE OF ACH TO ISOLATED GUINEA PIG CARDIAC ATRIUM MYOCYTES IKACH
THE INFLUENCE OF ACH TO ISOLATED GUINEA PIG CARDIAC ATRIUM MYOCYTES IKACH
Objectives
Atrial frillation (AF) is one of the common clinical arrhythmia and its pathogenesis is extremely complex. In recent years, scholars have observed that...

