Previous studies on skinned muscle fibers have demonstrated a direct effect of elevated levels of H+ ion to depress force production; however, the molecular basis for this effect is presently unknown. Here, whole troponin complexes were removed from skinned single fiber preparations of rat slow-twitch and fast-twitch muscles, and the effect of H+ ions on the resultant Ca2+-insensitive force was examined. The effect of H+ ions to depress force was found to be virtually identical in untreated control fibers activated in the presence of Ca2+ and in fibers activated in the absence of Ca2+ by troponin removal. Thus, the effect of H+ ions to depress force occurs at a step in activation beyond the disinhibition of the thin filament by Ca2+, probab...
Oxidation can decrease or increase the Ca sensitivity of the contractile apparatus in rodent fast-tw...
AbstractWe investigated the effect of pH on isometric tension in actin filament-reconstituted and th...
The influence of Ca2+ on isometric force kinetics was studied in skinned rat ventricular trabeculae ...
ABSTRACT Previous studies on skinned muscle fibers have demonstrated a direct effect of elevated lev...
Skeletal muscle fatigue is characterized by the buildup of H+ and inorganic phosphate (Pi), metaboli...
The relative force-pCa relation of skinned frog skeletal muscle fibers is shifted along the pCa axis...
High-frequency skeletal muscle contraction results in muscle fatigue and a decrease in intracellular...
Historically, an increase in intracellular H+ (decrease in cell pH) was thought to contribute to mus...
We have investigated (a) effects of varying proton concentration on force and shortening velocity of...
Increases in Pi combined with decreases in myoplasmic Ca2+ are believed to cause a significant porti...
Intense muscle contraction induces high rates of glycolysis and ATP hydrolysis with resulting increa...
Reducing the activating calcium concentration with skinned fibres is known to decrease isometric for...
Repetitive activation of skeletal muscle fibers leads to a reduced transmembrane K+ gradient. The re...
AbstractTo characterize the tension control in vertebrate striated muscle fibers, and to obtain insi...
AbstractBy using a novel approach for the study of the effects of pH variation in skinned myocardium...
Oxidation can decrease or increase the Ca sensitivity of the contractile apparatus in rodent fast-tw...
AbstractWe investigated the effect of pH on isometric tension in actin filament-reconstituted and th...
The influence of Ca2+ on isometric force kinetics was studied in skinned rat ventricular trabeculae ...
ABSTRACT Previous studies on skinned muscle fibers have demonstrated a direct effect of elevated lev...
Skeletal muscle fatigue is characterized by the buildup of H+ and inorganic phosphate (Pi), metaboli...
The relative force-pCa relation of skinned frog skeletal muscle fibers is shifted along the pCa axis...
High-frequency skeletal muscle contraction results in muscle fatigue and a decrease in intracellular...
Historically, an increase in intracellular H+ (decrease in cell pH) was thought to contribute to mus...
We have investigated (a) effects of varying proton concentration on force and shortening velocity of...
Increases in Pi combined with decreases in myoplasmic Ca2+ are believed to cause a significant porti...
Intense muscle contraction induces high rates of glycolysis and ATP hydrolysis with resulting increa...
Reducing the activating calcium concentration with skinned fibres is known to decrease isometric for...
Repetitive activation of skeletal muscle fibers leads to a reduced transmembrane K+ gradient. The re...
AbstractTo characterize the tension control in vertebrate striated muscle fibers, and to obtain insi...
AbstractBy using a novel approach for the study of the effects of pH variation in skinned myocardium...
Oxidation can decrease or increase the Ca sensitivity of the contractile apparatus in rodent fast-tw...
AbstractWe investigated the effect of pH on isometric tension in actin filament-reconstituted and th...
The influence of Ca2+ on isometric force kinetics was studied in skinned rat ventricular trabeculae ...