Abstract
1. Inactivation of Ca2+ current (ICa) induced by Ca2+ release from sarcoplasmic reticulum (SR) was studied in single rat ventricular myocytes using whole-cell patch-clamp and indo-1 fluorescence measurement techniques. 2. Depolarizing pulses to 0 mV elicited large Ca2+ transients and ICa with biexponential inactivation kinetics. Varying SR Ca2+ loading by a 20 s pulse of caffeine showed that the fast component of ICa inactivation was dependent on the magnitude of Ca2+ release. 3. Inactivation of ICa induced by Ca2+ release was quantified, independently of voltage and Ca2+ entry, using a function termed fractional inhibition of ICa (FICa). The voltage relation of FICa had a negative slope, resembling that of single-channel Ca2+ current (iCa) rather than the bell-shaped current-voltage (I-V) relation of macroscopic ICa and Ca2+ transients. 4. Intracellular dialysis of myocytes with 10 mM EGTA (150 nM free [Ca2+]) had no effect on ICa inactivation induced by Ca2+ release, despite abolition of Ca2+ transients and cell contraction. Dialysis with 3 or 10 mM BAPTA (180 nM free [Ca2+]) attenuated FICa in a concentration-dependent manner, with greater inhibition at positive than at negative potentials, consistent with more effective buffering of Ca2+ microdomains of smaller iCa. 5. Spatial profiles of [Ca2+] near an opened Ca2+ channel were simulated. [Ca2+] reached submillimolar levels at the mouth of the channel, and dropped steeply as radial distance increased. At any given distance from the channel, [Ca2+] was higher at negative than at positive potentials. The radii of Ca2+ microdomains were significantly reduced by 3 or 10 mM BAPTA, but not by 10 mM EGTA. 6. In conclusion, the distinctive voltage dependence and susceptibility of Ca2+ release-induced ICa inactivation to fast and slow Ca2+ buffers suggests that the process is mediated through local changes of [Ca2+] in the vicinity of closely associated Ca2+ channels and ryanodine receptors.
MeSH Terms
Animals
Buffers
Calcium/metabolism,pharmacology
Calcium Channels/physiology
Calmodulin-Binding Proteins/physiology
Electric Stimulation
Electrophysiology
Heart Ventricles/chemistry,cytology,metabolism
Ion Channel Gating/physiology
Male
Muscle Proteins/physiology
Myocardium/chemistry,cytology,metabolism
Rats
Rats, Wistar
Ryanodine Receptor Calcium Release Channel
Signal Transduction/drug effects,physiology
Chemicals
Buffers
Calcium Channels
Calmodulin-Binding Proteins
Muscle Proteins
Ryanodine Receptor Calcium Release Channel
Calcium
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
Sham J S
Division of Pulmonary and Critical Care Medicine, Johns Hopkins Medical Institutions, Baltimore, MD 21224, USA. jsks@welchlink.welch.jhu.edu
References (33)
33 references, click to expand
-
Calcium sparks: elementary events underlying excitation-contraction coupling in heart muscle.
Science. 1993 Oct 29;262(5134):740-4
PMID: 8235594
-
Macroscopic and unitary properties of physiological ion flux through L-type Ca2+ channels in guinea-pig heart cells.
J Physiol. 1992 Oct;456:267-84
PMID: 1338098
-
Processes that remove calcium from the cytoplasm during excitation-contraction coupling in intact rat heart cells.
J Physiol. 1994 Feb 1;474(3):447-62
PMID: 8014906
-
Local control of excitation-contraction coupling in rat heart cells.
J Physiol. 1994 Feb 1;474(3):463-71
PMID: 8014907
-
Functional coupling of Ca2+ channels and ryanodine receptors in cardiac myocytes.
Proc Natl Acad Sci U S A. 1995 Jan 3;92(1):121-5
PMID: 7816800
-
Gradation of Ca(2+)-induced Ca2+ release by voltage-clamp pulse duration in potentiated guinea-pig ventricular myocytes.
J Physiol. 1994 Nov 1;480 ( Pt 3):423-38
PMID: 7869257
-
Molecular architecture of membranes involved in excitation-contraction coupling of cardiac muscle.
J Cell Biol. 1995 May;129(3):659-71
PMID: 7730402
-
Immunolocalization of sarcolemmal dihydropyridine receptor and sarcoplasmic reticular triadin and ryanodine receptor in rabbit ventricle and atrium.
J Cell Biol. 1995 May;129(3):673-82
PMID: 7730403
-
Local calcium transients triggered by single L-type calcium channel currents in cardiac cells.
Science. 1995 May 19;268(5213):1042-5
PMID: 7754383
-
The control of calcium release in heart muscle.
Science. 1995 May 19;268(5213):1045-9
PMID: 7754384
-
Role of calcium feedback in excitation-contraction coupling in isolated triads.
J Biol Chem. 1995 Aug 25;270(34):19936-42
PMID: 7650009
-
Essential Ca(2+)-binding motif for Ca(2+)-sensitive inactivation of L-type Ca2+ channels.
Science. 1995 Dec 1;270(5241):1502-6
PMID: 7491499
-
Na+ current and Ca2+ release from the sarcoplasmic reticulum during action potentials in guinea-pig ventricular myocytes.
J Physiol. 1995 Nov 15;489 ( Pt 1):1-17
PMID: 8583394
-
Ca2+ currents in cerebral artery smooth muscle cells of rat at physiological Ca2+ concentrations.
J Gen Physiol. 1996 Apr;107(4):459-72
PMID: 8722560
-
Cross-signaling between L-type Ca2+ channels and ryanodine receptors in rat ventricular myocytes.
J Gen Physiol. 1996 Nov;108(5):435-54
PMID: 8923268
-
Calcium currents of isolated bovine ventricular myocytes are fast and of large amplitude.
Pflugers Arch. 1982 Oct;395(1):30-41
PMID: 6294586
-
Calcium domains associated with individual channels can account for anomalous voltage relations of CA-dependent responses.
Biophys J. 1984 May;45(5):993-9
PMID: 6329349
-
Single channel studies on inactivation of calcium currents.
Science. 1984 Jul 27;225(4660):432-4
PMID: 6330896
-
Stopped-flow kinetics of the interaction of the fluorescent calcium indicator Quin 2 with calcium ions.
Biochem Biophys Res Commun. 1984 Sep 17;123(2):604-11
PMID: 6487303
-
Inactivation of Ca channels.
Prog Biophys Mol Biol. 1984;44(3):215-67
PMID: 6095365
-
A new generation of Ca2+ indicators with greatly improved fluorescence properties.
J Biol Chem. 1985 Mar 25;260(6):3440-50
PMID: 3838314
-
A stopped-flow investigation of calcium ion binding by ethylene glycol bis(beta-aminoethyl ether)-N,N'-tetraacetic acid.
Anal Biochem. 1984 Nov 15;143(1):188-95
PMID: 6442108
-
Inactivation of calcium channels in mammalian heart cells: joint dependence on membrane potential and intracellular calcium.
J Physiol. 1985 Jul;364:395-411
PMID: 2411919
-
Compartmentalization of the submembrane calcium activity during calcium influx and its significance in transmitter release.
Biophys J. 1985 Sep;48(3):485-98
PMID: 2412607
-
Characterization of junctional and longitudinal sarcoplasmic reticulum from heart muscle.
J Biol Chem. 1988 Aug 5;263(22):10843-50
PMID: 2968985
-
Inactivation and block of calcium channels by photo-released Ca2+ in dorsal root ganglion neurons.
Science. 1988 Aug 12;241(4867):842-4
PMID: 2457253
-
Voltage-dependent and calcium-dependent inactivation of calcium channel current in identified snail neurones.
J Physiol. 1989 May;412:197-220
PMID: 2557426
-
Calcium-sensitive inactivation in the gating of single calcium channels.
Science. 1990 Dec 21;250(4988):1735-8
PMID: 2176745
-
The effect of pH on rate constants, ion selectivity and thermodynamic properties of fluorescent calcium and magnesium indicators.
Biochem Biophys Res Commun. 1991 May 31;177(1):184-91
PMID: 2043105
-
Ryanodine does not affect calcium current in guinea pig ventricular myocytes in which Ca2+ is buffered.
Circ Res. 1991 Mar;68(3):897-902
PMID: 1742874
-
Buffering of calcium in the vicinity of a channel pore.
Cell Calcium. 1992 Mar;13(3):183-92
PMID: 1315621
-
Microdomains of high calcium concentration in a presynaptic terminal.
Science. 1992 May 1;256(5057):677-9
PMID: 1350109
-
Mechanism of Ca(2+)-sensitive inactivation of L-type Ca2+ channels.
Neuron. 1994 Jun;12(6):1301-18
PMID: 8011340