Macgregor Andrew T, Rakovic Stevan, Galione Antony, Terrar Derek A
Department of Pharmacology, University of Oxford, Mansfield Road, Oxford OX1 3QT, United Kingdom.
Cell Calcium. 2007 Jun;41(6):537-46. doi: 10.1016/j.ceca.2006.10.005. Epub 2006 Dec 5.
The actions of cyclic ADP-ribose (cADPR), a regulator of Ca2+-induced Ca2+ release (CICR), were investigated on Ca2+ release and sarcoplasmic reticulum (SR) Ca2+ loading in cardiac myocytes at physiological temperature. In guinea-pig ventricular cells, cADPR, applied via patch pipette or from photorelease of its caged derivative, increased contraction amplitude and whole-cell Ca2+ transients, without affecting SR Ca2+ load (measured in response to rapid caffeine application). Under voltage-clamp conditions, photorelease of caged cADPR enhanced Ca2+ transient magnitude without affecting the peak amplitude of L-type Ca2+ current or its rate of decay, indicative of an increase in CICR gain. In rat permeabilised ventricular myocytes, rapid application of cADPR increased Ca2+ spark frequency within 30 s, and this effect was maintained over a 10 min exposure. Enhancement of spark frequency was not associated with changes in SR Ca2+ load at 30 s and 3 min of exposure to cADPR; however, prolonged exposure (10 min) was associated with an increased SR Ca2+ load (32+/-7%). The observations are consistent with dual actions of cADPR: a rapid effect on CICR that does not depend on an increased SR Ca2+ load, and an additional slower effect that is associated with enhanced SR Ca2+ levels.
环磷酸腺苷核糖(cADPR)作为钙诱导钙释放(CICR)的调节因子,其作用在生理温度下的心肌细胞钙释放和肌浆网(SR)钙负荷方面进行了研究。在豚鼠心室细胞中,通过膜片吸管施加cADPR或通过其笼形衍生物的光释放来施加cADPR,可增加收缩幅度和全细胞钙瞬变,而不影响SR钙负荷(通过快速应用咖啡因来测量)。在电压钳制条件下,笼形cADPR的光释放增强了钙瞬变幅度,而不影响L型钙电流的峰值幅度或其衰减速率,这表明CICR增益增加。在大鼠透化心室肌细胞中,快速应用cADPR在30秒内增加了钙火花频率,并且在10分钟的暴露期间这种效应得以维持。在暴露于cADPR 30秒和3分钟时,火花频率的增强与SR钙负荷的变化无关;然而,长时间暴露(10分钟)与SR钙负荷增加(32±7%)有关。这些观察结果与cADPR的双重作用一致:对CICR的快速作用不依赖于SR钙负荷的增加,以及与SR钙水平升高相关的额外较慢作用。