Na+-Ca2+交换活性定位于大鼠心室肌细胞的t小管

Zhaokang Yang, C. Pascarel, Derek S. Steele, K. Komukai, F. Brette, C. H. Orchard
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引用次数: 110

摘要

摘要-大鼠心室肌细胞的去管化已被用于研究t小管在大鼠心室肌细胞兴奋-收缩偶联期间Ca2+循环中的作用。使用fluo-3和共聚焦显微镜监测Ca2+。在对照肌细胞中,电刺激引起细胞内[Ca2+]在细胞宽度上的空间均匀增加。脱管后,[Ca2+]首先在细胞外围升高,然后向细胞中心扩散。应用咖啡因控制肌细胞导致细胞内[Ca2+]快速均匀增加;这种增加的分布和幅度与去管化肌细胞相同,尽管其下降速度较慢。当咖啡因应用于对照细胞时,当Ca2+从细胞中挤出时,细胞外[Ca2+]有大量,快速和短暂的上升;在去管状细胞中,这种上升明显较小,其余的增加被肌层Ca2+ atp酶抑制剂羧化蛋白阻断。用于产生降管的治疗对缺乏t小管的心房细胞中的Ca2+外排没有显着影响。心室肌细胞的缩管也导致Na+-Ca2+交换电流的损失,尽管快速Na+电流的密度没有改变。由此得出结论,Na+-Ca2+交换功能和Ca2+外排机制集中在t小管中,并且t小管中Ca2+通量途径的浓度在刺激时产生细胞内Ca2+的均匀增加是重要的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Na+-Ca2+ Exchange Activity Is Localized in the T-Tubules of Rat Ventricular Myocytes
Abstract— Detubulation of rat ventricular myocytes has been used to investigate the role of the t-tubules in Ca2+ cycling during excitation-contraction coupling in rat ventricular myocytes. Ca2+ was monitored using fluo-3 and confocal microscopy. In control myocytes, electrical stimulation caused a spatially uniform increase in intracellular [Ca2+] across the cell width. After detubulation, [Ca2+] rose initially at the cell periphery and then propagated into the center of the cell. Application of caffeine to control myocytes resulted in a rapid and uniform increase of intracellular [Ca2+]; the distribution and amplitude of this increase was the same in detubulated myocytes, although its decline was slower. On application of caffeine to control cells, there was a large, rapid, and transient rise in extracellular [Ca2+] as Ca2+ was extruded from the cell; this rise was significantly smaller in detubulated cells, and the remaining increase was blocked by the sarcolemmal Ca2+ ATPase inhibitor carboxyeosin. The treatment used to produce detubulation had no significant effect on Ca2+ efflux in atrial cells, which lack t-tubules. Detubulation of ventricular myocytes also resulted in loss of Na+-Ca2+ exchange current, although the density of the fast Na+ current was unaltered. It is concluded that Na+-Ca2+ exchange function, and hence Ca2+ efflux by this mechanism, is concentrated in the t-tubules, and that the concentration of Ca2+ flux pathways in the t-tubules is important in producing a uniform increase in intracellular Ca2+ on stimulation.
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