Comparison of Simulated and Measured Calcium Sparks in Intact Skeletal Muscle Fibers of the Frog
Open Access
- 12 August 2002
- journal article
- research article
- Published by Rockefeller University Press in The Journal of general physiology
- Vol. 120 (3) , 349-368
- https://doi.org/10.1085/jgp.20028620
Abstract
Calcium sparks in frog intact skeletal muscle fibers were modeled as stereotypical events that arise from a constant efflux of Ca2+ from a point source for a fixed period of time (e.g., 2.5 pA of Ca2+ current for 4.6 ms; 18°C). The model calculates the local changes in the concentrations of free Ca2+ and of Ca2+ bound to the major intrinsic myoplasmic Ca2+ buffers (troponin, ATP, parvalbumin, and the SR Ca2+ pump) and to the Ca2+ indicator (fluo-3). A distinctive feature of the model is the inclusion of a binding reaction between fluo-3 and myoplasmic proteins, a process that strongly affects fluo-3′s Ca2+-reaction kinetics, its apparent diffusion constant, and hence the morphology of sparks. ΔF/F (the change in fluo-3′s fluorescence divided by its resting fluorescence) was estimated from the calculated changes in fluo-3 convolved with the microscope point-spread function. To facilitate comparisons with measured sparks, noise and other sources of variability were included in a random repetitive fashion to generate a large number of simulated sparks that could be analyzed in the same way as the measured sparks. In the initial simulations, the binding of Ca2+ to the two regulatory sites on troponin was assumed to follow identical and independent binding reactions. These simulations failed to accurately predict the falling phase of the measured sparks. A second set of simulations, which incorporated the idea of positive cooperativity in the binding of Ca2+ to troponin, produced reasonable agreement with the measurements. Under the assumption that the single channel Ca2+ current of a ryanodine receptor (RYR) is 0.5–2 pA, the results suggest that 1–5 active RYRs generate an average Ca2+ spark in a frog intact muscle fiber.Keywords
This publication has 37 references indexed in Scilit:
- Large Currents Generate Cardiac Ca2+ SparksBiophysical Journal, 2001
- Sarcomeric Ca2+ gradients during activation of frog skeletal muscle fibres imaged with confocal and two‐photon microscopyThe Journal of Physiology, 2000
- A continuum of InsP3‐mediated elementary Ca2+ signalling events in Xenopus oocytesThe Journal of Physiology, 1998
- Two mechanisms of quantized calcium release in skeletal muscleNature, 1996
- Imaging Elementary Events of Calcium Release in Skeletal Muscle CellsScience, 1995
- The control of calcium release in heart muscleScience, 1995
- Amino-terminal Myristoylation Induces Cooperative Calcium Binding to RecoverinJournal of Biological Chemistry, 1995
- Calcium Sparks: Elementary Events Underlying Excitation-Contraction Coupling in Heart MuscleScience, 1993
- Cation conduction in the calcium release channel of the cardiac sarcoplasmic reticulum under physiological and pathophysiological conditionsCardiovascular Research, 1993
- Cooperative binding of calcium to glycerinated skeletal muscle fibersBiochimica et Biophysica Acta (BBA) - Bioenergetics, 1976