A high-conductance (100 pS in 53 mM trans Ca2+) Ca2+ channel was incorporated from heavy-density skeletal muscle sarcoplasmic reticulum (SR) fractions into planar lipid bilayers of the Mueller-Rudin type. cis Ca2+ in the range of 2-950 microM increased open probability (Po) in single channel records without affecting open event lifetimes. Millimolar ATP was found to be as good as or better than Ca2+ in activation; however, both Ca2+ and ATP were required to fully activate the channel, i.e., to bring Po = 1. Exponential fits to open and closed single channel lifetimes suggested that the channel may exist in many distinct states. Two open and two closed states were identified when the channel was activated by either Ca2+ or ATP alone or by Ca...
The effects of sarcoplasmic reticulum lumenal (trans) Ca2+ on cytosolic (cis) ATP-activated rabbit s...
Purified canine cardiac sarcoplasmic reticulum vesicles were passively loaded with 45CaCl2 and assay...
Rabbit skeletal muscle sarcoplasmic reticulum was fractionated into a "Ca2+-release" and "control" f...
A high-conductance (100 pS in 53 mM trans Ca2+) Ca2+ channel was incorporated from heavy-density ske...
Two types of divalent cation conducting channels from rabbit skeletal muscle sarcoplasmic reticulum ...
Two types of divalent cation conducting channels from rabbit skeletal muscle sarcoplasmic reticulum ...
Two types of divalent cation conducting channels from rabbit skeletal muscle sarcoplasmic reticulum ...
The effects of sarcoplasmic reticulum lumenal (trans) Ca2+ on cytosolic (cis) ATP-activated rabbit s...
The effects of sarcoplasmic reticulum lumenal (trans) Ca2+ on cytosolic (cis) ATP-activated rabbit s...
The CHAPS-solubilized and purified 30S ryanodine receptor protein complex from skeletal sarcoplasmic...
The CHAPS-solubilized and purified 30S ryanodine receptor protein complex from skeletal sarcoplasmic...
The CHAPS-solubilized and purified 30S ryanodine receptor protein complex from skeletal sarcoplasmic...
AbstractWe describe ATP-dependent inhibition of the 75–105-pS (in 250mM Cl−) anion channel (SCl) fro...
In skeletal muscle, twitch contraction is caused by the rapid release of Ca2+ from the sarcoplasmic ...
AbstractThe active uptake and efflux of Ca2+ from suspensions of vesicles from heavy rabbit muscle s...
The effects of sarcoplasmic reticulum lumenal (trans) Ca2+ on cytosolic (cis) ATP-activated rabbit s...
Purified canine cardiac sarcoplasmic reticulum vesicles were passively loaded with 45CaCl2 and assay...
Rabbit skeletal muscle sarcoplasmic reticulum was fractionated into a "Ca2+-release" and "control" f...
A high-conductance (100 pS in 53 mM trans Ca2+) Ca2+ channel was incorporated from heavy-density ske...
Two types of divalent cation conducting channels from rabbit skeletal muscle sarcoplasmic reticulum ...
Two types of divalent cation conducting channels from rabbit skeletal muscle sarcoplasmic reticulum ...
Two types of divalent cation conducting channels from rabbit skeletal muscle sarcoplasmic reticulum ...
The effects of sarcoplasmic reticulum lumenal (trans) Ca2+ on cytosolic (cis) ATP-activated rabbit s...
The effects of sarcoplasmic reticulum lumenal (trans) Ca2+ on cytosolic (cis) ATP-activated rabbit s...
The CHAPS-solubilized and purified 30S ryanodine receptor protein complex from skeletal sarcoplasmic...
The CHAPS-solubilized and purified 30S ryanodine receptor protein complex from skeletal sarcoplasmic...
The CHAPS-solubilized and purified 30S ryanodine receptor protein complex from skeletal sarcoplasmic...
AbstractWe describe ATP-dependent inhibition of the 75–105-pS (in 250mM Cl−) anion channel (SCl) fro...
In skeletal muscle, twitch contraction is caused by the rapid release of Ca2+ from the sarcoplasmic ...
AbstractThe active uptake and efflux of Ca2+ from suspensions of vesicles from heavy rabbit muscle s...
The effects of sarcoplasmic reticulum lumenal (trans) Ca2+ on cytosolic (cis) ATP-activated rabbit s...
Purified canine cardiac sarcoplasmic reticulum vesicles were passively loaded with 45CaCl2 and assay...
Rabbit skeletal muscle sarcoplasmic reticulum was fractionated into a "Ca2+-release" and "control" f...