Science, Vol.267, No.5206, 1997-2000, 1995
Rapid Adaptation of Cardiac Ryanodine Receptors - Modulation by Mg2+ and Phosphorylation
Channel adaptation is a fundamental feature of sarcoplasmic reticulum calcium release channels (called ryanodine receptors, RyRs). It permits successive increases in the intracellular concentration of calcium (Ca2+) to repeatedly but transiently activate channels. Adaptation of RyRs in the absence of magnesium (Mg2+) and adenosine triphosphate is an extremely slow process (taking seconds). Photorelease of Ca2+ from nitrophenyl-EGTA, a photolabile Ca2+ chelator, demonstrated that RyR adaptation is rapid (milliseconds) in canine heart muscle when physiological Mg2+ concentrations are present. Phosphorylation of the RyR by protein kinase A increased the responsiveness of the channel to Ca2+ and accelerated the kinetics of adaptation. These properties of the RyR from heart may also be relevant to other cells in which multiple agonist-dependent triggering events regulate cellular functions.
Keywords:MUSCLE SARCOPLASMIC-RETICULUM;CALCIUM-RELEASE CHANNEL;DEPENDENT PROTEIN-KINASE;RAT VENTRICULAR MYOCYTES;SKELETAL-MUSCLE;ADENINE-NUCLEOTIDE;SINGLE-CHANNEL;CA-2+ RELEASE;HEART-MUSCLE;CA2+ RELEASE