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Expression and functional characterization of the cardiac muscle ryanodine receptor Ca(2+) release channel in Chinese hamster ovary cells.

机译:心肌ryanodine受体Ca(2+)释放通道在中国仓鼠卵巢细胞中的表达和功能表征。

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摘要

To study the function and regulation of the cardiac ryanodine receptor (RyR2) Ca(2+) release channel, we expressed the RyR2 proteins in a Chinese hamster ovary (CHO) cell line, and assayed its function by single channel current recording and confocal imaging of intracellular Ca(2+) ([Ca(2+)](i)). The 16-kb cDNA encoding the full-length RyR2 was introduced into CHO cells using lipofectAmine and electroporation methods. Incorporation of microsomal membrane vesicles isolated from these transfected cells into lipid bilayer membrane resulted in single Ca(2+) release channel activities similar to those of the native Ca(2+) release channels from rabbit cardiac muscle SR membranes, both in terms of gating kinetics, conductance, and ryanodine modification. The expressed RyR2 channels were found to exhibit more frequent transitions to subconductance states than the native RyR2 channels and RyR1 expressed in CHO cells. Caffeine, an exogenous activator of RyR, induced release of [Ca(2+)](i) from these cells. Confocal imaging of cells expressing RyR2 did not detect spontaneous or caffeine-induced local Ca(2+) release events (i.e., "Ca(2+) sparks") typically seen in cardiac muscle. Our data show that the RyR2 expressed in CHO cells forms functional Ca(2+) release channels. Furthermore, the lack of localized Ca(2+) release events in these cells suggests that Ca(2+) sparks observed in cardiac muscle may involve cooperative gating of a group of Ca(2+) release channels and/or their interaction with muscle-specific proteins.
机译:若要研究心脏ryanodine受体(RyR2)Ca(2+)释放通道的功能和调节,我们在中国仓鼠卵巢(CHO)细胞系中表达了RyR2蛋白,并通过单通道电流记录和共聚焦成像分析了其功能细胞内Ca(2+)([Ca(2 +)](i))的数量。使用lipofectAmine和电穿孔方法将编码全长RyR2的16 kb cDNA导入CHO细胞。从这些转染的细胞分离的微粒体膜囊泡掺入脂质双层膜导致单个Ca(2+)释放通道活性类似于从兔心肌SR膜的天然Ca(2+)释放通道的活性,两者在门控方面动力学,电导和ryanodine修饰。发现表达的RyR2通道比在CHO细胞中表达的天然RyR2通道和RyR1表现出更频繁的过渡到亚导状态。咖啡因,RyR的外源性激活剂,诱导从这些细胞中释放[Ca(2 +)](i)。共表达细胞表达RyR2的成像未检测到通常在心肌中发现的自发性或咖啡因诱导的局部Ca(2+)释放事件(即“ Ca(2+)火花”)。我们的数据显示,CHO细胞中表达的RyR2形成功能性Ca(2+)释放通道。此外,这些细胞中缺乏局部Ca(2+)释放事件表明,在心肌中观察到的Ca(2+)火花可能涉及一组Ca(2+)释放通道的协同门控和/或它们与肌肉的相互作用。特异性蛋白质。

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