The effects of the ionophore, X537A, and caffeine on ATP-dependent calcium transport by fragmented sarcoplasmic reticulum were studied in the absence (calcium storage) or presence (calcium uptake) of calcium-precipitating anions. The ionophore caused rapid calcium release after calcium storage, the final level of calcium storage being the same whether a given concentration of X537A was added prior to initiation of the reaction or after calcium storage had reached a steady state. Although 10 to 12 muM X537A caused approximately 90% inhibition of oxalate-supported calcium uptake when added prior to the start of the reaction, this ionophore concentration caused only a small calcium release when added after a calcium oxalate precipitate had for...
In an effort to understand the processes of calcium uptake and release in sarcoplasmic reticulum (SR...
AbstractThe occupancy of high-affinity ryanodine-binding sites of isolated heavy sarcoplasmic reticu...
.Objective: To investigate the effects of stimulating calcium induced Ca release with low concentrat...
Both calcium and caffeine induced calcium release from actively loaded heavy sarcoplasmic reticulum ...
Both calcium and caffeine induced calcium release from actively loaded heavy sarcoplasmic reticulum ...
The ability of sarcoplasmic reticulum vesicles to retain calcium following ATP-supported calcium upt...
Both calcium and caffeine induced calcium release from actively loaded heavy sarcoplasmic reticulum ...
Both calcium and caffeine induced calcium release from actively loaded heavy sarcoplasmic reticulum ...
Passive permeability of sarcoplasmic reticulum vesicles for Ca2+ was studied by the Millipore filtra...
The effect of ATP on the calcium release channel in heavy sarcoplasmic reticulum vesicles modulated ...
During the uptake of calcium by the isolated vesicles of the sarcoplasmic reticulum from oxalate-con...
During the uptake of calcium by the isolated vesicles of the sarcoplasmic reticulum from oxalate-con...
The ability of calcium loaded heavy sarcoplasmic reticulum vesicles to specifically respond to the a...
Calcium release from intracellular stores occurs in a graded manner in response to increasing concen...
The blockage of all thiol residues accessible to the mercurial mersalyl in the sarcoplasmic reticulu...
In an effort to understand the processes of calcium uptake and release in sarcoplasmic reticulum (SR...
AbstractThe occupancy of high-affinity ryanodine-binding sites of isolated heavy sarcoplasmic reticu...
.Objective: To investigate the effects of stimulating calcium induced Ca release with low concentrat...
Both calcium and caffeine induced calcium release from actively loaded heavy sarcoplasmic reticulum ...
Both calcium and caffeine induced calcium release from actively loaded heavy sarcoplasmic reticulum ...
The ability of sarcoplasmic reticulum vesicles to retain calcium following ATP-supported calcium upt...
Both calcium and caffeine induced calcium release from actively loaded heavy sarcoplasmic reticulum ...
Both calcium and caffeine induced calcium release from actively loaded heavy sarcoplasmic reticulum ...
Passive permeability of sarcoplasmic reticulum vesicles for Ca2+ was studied by the Millipore filtra...
The effect of ATP on the calcium release channel in heavy sarcoplasmic reticulum vesicles modulated ...
During the uptake of calcium by the isolated vesicles of the sarcoplasmic reticulum from oxalate-con...
During the uptake of calcium by the isolated vesicles of the sarcoplasmic reticulum from oxalate-con...
The ability of calcium loaded heavy sarcoplasmic reticulum vesicles to specifically respond to the a...
Calcium release from intracellular stores occurs in a graded manner in response to increasing concen...
The blockage of all thiol residues accessible to the mercurial mersalyl in the sarcoplasmic reticulu...
In an effort to understand the processes of calcium uptake and release in sarcoplasmic reticulum (SR...
AbstractThe occupancy of high-affinity ryanodine-binding sites of isolated heavy sarcoplasmic reticu...
.Objective: To investigate the effects of stimulating calcium induced Ca release with low concentrat...