The effects of redox reagents on the activity of the intracellular calcium release channels (ryanodine receptors) of skeletal and cardiac muscle, or brain cortex neurons, was examined. In lipid bilayer experiments, oxidizing agents (2,2′-dithiodipyridine or thimerosal) modified the calcium dependence of all single channels studied. After controlled oxidation channels became active at sub μM calcium concentrations and were not inhibited by increasing the calcium concentration to 0.5 mM. Subsequent reduction reversed these effects. Channels purified from amphibian skeletal muscle exhibited the same behavior, indicating that the SH groups responsible for modifying the calcium dependence belong to the channel protein. Parallel experiments that ...
son. Metabolic end products inhibit sarcoplasmic reticulum Ca2 ’ release and [3H]ryanodine binding. ...
Calcium release from internal stores is a quintessential event in excitation-contraction coupling in...
AbstractThe actions of two organic mercurial compounds, 4-(chloromercuri)phenyl-sulfonic acid (4-CMP...
The effects of redox reagents on the activity of the intracellular calcium release channels (ryanodi...
The calcium dependence of ryanodine-sensitive single calcium channels was studied after fusing with ...
AbstractThe calcium dependence of ryanodine-sensitive single calcium channels was studied after fusi...
In skeletal and cardiac muscle cells, specific isoforms of the Ryanodine receptor channels mediate C...
We studied the kinetics of calcium release induced by SH oxidation in triads isolated from frog and ...
The skeletal muscle Ca(2+) release channel/ryanodine receptor (RyR1) is a prototypic redox-responsiv...
Bull, Ricardo, Juan Jose´ Marengo, Jose´ Pablo Finkelstein, Marı´a Isabel Behrens, and Osvaldo Alvar...
The location of reactive cysteine residues on the ryanodine receptor (RyR) calcium release channel w...
AbstractWe studied the effect of oxidation of sulfhydryl (SH) residues on the inhibition by Mg2+ of ...
The sarcoplasmic reticulum is an internal membrane system that controls the Ca²⁺ concentration insid...
Despite their relevance for neuronal Ca2+-induced Ca2+ release (CICR), activation by Ca2+ of ryanodi...
ABSTRACT The effect of micromolar intracellular levels of ryanodine was tested on the myoplasmic fre...
son. Metabolic end products inhibit sarcoplasmic reticulum Ca2 ’ release and [3H]ryanodine binding. ...
Calcium release from internal stores is a quintessential event in excitation-contraction coupling in...
AbstractThe actions of two organic mercurial compounds, 4-(chloromercuri)phenyl-sulfonic acid (4-CMP...
The effects of redox reagents on the activity of the intracellular calcium release channels (ryanodi...
The calcium dependence of ryanodine-sensitive single calcium channels was studied after fusing with ...
AbstractThe calcium dependence of ryanodine-sensitive single calcium channels was studied after fusi...
In skeletal and cardiac muscle cells, specific isoforms of the Ryanodine receptor channels mediate C...
We studied the kinetics of calcium release induced by SH oxidation in triads isolated from frog and ...
The skeletal muscle Ca(2+) release channel/ryanodine receptor (RyR1) is a prototypic redox-responsiv...
Bull, Ricardo, Juan Jose´ Marengo, Jose´ Pablo Finkelstein, Marı´a Isabel Behrens, and Osvaldo Alvar...
The location of reactive cysteine residues on the ryanodine receptor (RyR) calcium release channel w...
AbstractWe studied the effect of oxidation of sulfhydryl (SH) residues on the inhibition by Mg2+ of ...
The sarcoplasmic reticulum is an internal membrane system that controls the Ca²⁺ concentration insid...
Despite their relevance for neuronal Ca2+-induced Ca2+ release (CICR), activation by Ca2+ of ryanodi...
ABSTRACT The effect of micromolar intracellular levels of ryanodine was tested on the myoplasmic fre...
son. Metabolic end products inhibit sarcoplasmic reticulum Ca2 ’ release and [3H]ryanodine binding. ...
Calcium release from internal stores is a quintessential event in excitation-contraction coupling in...
AbstractThe actions of two organic mercurial compounds, 4-(chloromercuri)phenyl-sulfonic acid (4-CMP...