Bhat M B, Zhao J, Zang W, Balke C W, Takeshima H, Wier W G, Ma J
Department of Physiology and Biophysics, Case Western Reserve University, Cleveland, Ohio 44106, USA.
J Gen Physiol. 1997 Dec;110(6):749-62. doi: 10.1085/jgp.110.6.749.
The ryanodine receptor (RyR)/Ca2+ release channel is an essential component of excitation-contraction coupling in striated muscle cells. To study the function and regulation of the Ca2+ release channel, we tested the effect of caffeine on the full-length and carboxyl-terminal portion of skeletal muscle RyR expressed in a Chinese hamster ovary (CHO) cell line. Caffeine induced openings of the full length RyR channels in a concentration-dependent manner, but it had no effect on the carboxyl-terminal RyR channels. CHO cells expressing the carboxyl-terminal RyR proteins displayed spontaneous changes of intracellular [Ca2+]. Unlike the native RyR channels in muscle cells, which display localized Ca2+ release events (i.e., "Ca2+ sparks" in cardiac muscle and "local release events" in skeletal muscle), CHO cells expressing the full length RyR proteins did not exhibit detectable spontaneous or caffeine-induced local Ca2+ release events. Our data suggest that the binding site for caffeine is likely to reside within the amino-terminal portion of RyR, and the localized Ca2+ release events observed in muscle cells may involve gating of a group of Ca2+ release channels and/or interaction of RyR with muscle-specific proteins.
兰尼碱受体(RyR)/Ca²⁺释放通道是横纹肌细胞兴奋-收缩偶联的重要组成部分。为了研究Ca²⁺释放通道的功能和调节机制,我们检测了咖啡因对在中国仓鼠卵巢(CHO)细胞系中表达的骨骼肌RyR全长及羧基末端部分的影响。咖啡因以浓度依赖的方式诱导全长RyR通道开放,但对羧基末端RyR通道没有影响。表达羧基末端RyR蛋白的CHO细胞表现出细胞内[Ca²⁺]的自发变化。与肌肉细胞中的天然RyR通道不同,后者表现出局部Ca²⁺释放事件(即心肌中的“Ca²⁺火花”和骨骼肌中的“局部释放事件”),表达全长RyR蛋白的CHO细胞未表现出可检测到的自发或咖啡因诱导的局部Ca²⁺释放事件。我们的数据表明,咖啡因的结合位点可能位于RyR的氨基末端部分,并且在肌肉细胞中观察到的局部Ca²⁺释放事件可能涉及一组Ca²⁺释放通道的门控和/或RyR与肌肉特异性蛋白的相互作用。