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咖啡因诱导表达骨骼肌兰尼碱受体的中国仓鼠卵巢细胞释放细胞内钙离子。对钙离子释放通道全长及羧基末端部分的影响。

Caffeine-induced release of intracellular Ca2+ from Chinese hamster ovary cells expressing skeletal muscle ryanodine receptor. Effects on full-length and carboxyl-terminal portion of Ca2+ release channels.

作者信息

Bhat M B, Zhao J, Zang W, Balke C W, Takeshima H, Wier W G, Ma J

机构信息

Department of Physiology and Biophysics, Case Western Reserve University, Cleveland, Ohio 44106, USA.

出版信息

J Gen Physiol. 1997 Dec;110(6):749-62. doi: 10.1085/jgp.110.6.749.

Abstract

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.

摘要

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。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd34/2229395/5322af6f855c/JGP.7560f5.jpg

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