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鳟鱼心室肌细胞肌浆网中钙离子摄取的定量分析。

Quantification of Ca2+ uptake in the sarcoplasmic reticulum of trout ventricular myocytes.

作者信息

Hove-Madsen L, Llach A, Tort L

机构信息

Department of Physiology and Cell Biology, Faculty of Science, Universitat Autonoma de Barcelona, 08193 Cerdanyola, Barcelona, Spain.

出版信息

Am J Physiol. 1998 Dec;275(6):R2070-80. doi: 10.1152/ajpregu.1998.275.6.R2070.

Abstract

We measured Ca2+ uptake by the sarcoplasmic reticulum (SR) in trout ventricular myocytes, measuring indo 1 fluorescence in permeabilized cells or ionic currents in single myocytes subjected to voltage clamp. Titration of the SR Ca2+ pumps with thapsigargin gave a pump site density of 454 pmol/mg cell protein. Lowering the temperature from 20 degreesC to 10 or 5 degreesC reduced the SR Ca2+ uptake rate in permeabilized myocytes by 50 and 63%, respectively. Surprisingly, Ca2+ leak from the SR also decreased with decreasing temperatures. Exposure of single myocytes to 10 mM caffeine (Caf) induced a cell contracture and an inward ionic current. Neither contracture nor current decreased significantly after rest periods of 120 and 320 s. The inward current was due to Ca2+ extrusion by the Na+/Ca2+ exchanger (NCX), and the time integral of the exchange current (INCX) was used to calculate the SR Ca2+ content. This gave a steady-state SR Ca2+ content of 22.5 +/- 2.8 amol Ca2+/pF or 750 microM. When the SR was loaded by depolarizing the cell to +50 mV, the Ca2+ content increased with increasing length of the depolarization, reaching a maximum of 52.0 +/- 5.9 amol Ca2+/pF. When the cell was depolarized to different voltages for 3 s, a subsequent Caf-induced INCX increased with increasing voltage. At +100 mV, the Ca2+ content was 36.6 +/- 3.8 amol/pF, giving a maximal SR Ca2+ uptake rate of 12.2 +/- 1.2 amol Ca2+. pF-1. s-1 or 417 microM/s. We conclude that maximal SR Ca2+ content and Ca2+ uptake rates can be estimated using specific SR Ca2+ loading protocols. Contrary to the general assumption that contraction in lower vertebrates depends largely on transsarcolemmal Ca2+ fluxes, we found that although the L-type Ca2+ current is insufficient to fully activate contraction, the SR is capable of participating in the regulation of the cytosolic Ca2+ during the excitation-contraction coupling in trout ventricular myocytes.

摘要

我们测定了虹鳟鱼心室肌细胞肌浆网(SR)对Ca2+的摄取,通过测量通透细胞中indo 1荧光或电压钳制下单个肌细胞中的离子电流来进行。用毒胡萝卜素滴定SR Ca2+泵得出泵位点密度为454 pmol/mg细胞蛋白。将温度从20℃降至10℃或5℃,分别使通透化肌细胞中SR Ca2+摄取率降低50%和63%。令人惊讶的是,SR的Ca2+泄漏也随温度降低而减少。将单个肌细胞暴露于10 mM咖啡因(Caf)会诱导细胞挛缩和内向离子电流。在120秒和320秒的休息期后,挛缩和电流均未显著降低。内向电流是由Na+/Ca2+交换体(NCX)介导的Ca2+外流所致,交换电流(INCX)的时间积分用于计算SR Ca2+含量。由此得出SR Ca2+的稳态含量为22.5±2.8 amol Ca2+/pF或750 μM。当通过将细胞去极化至+50 mV来加载SR时,Ca2+含量随去极化时间延长而增加,最高可达52.0±5.9 amol Ca2+/pF。当细胞去极化至不同电压3秒时,随后Caf诱导的INCX随电压升高而增加。在+100 mV时,Ca2+含量为36.6±3.8 amol/pF,得出SR Ca2+的最大摄取率为12.2±1.2 amol Ca2+·pF-1·s-1或417 μM/s。我们得出结论,使用特定的SR Ca2+加载方案可以估算SR Ca2+的最大含量和Ca2+摄取率。与一般认为低等脊椎动物的收缩主要依赖跨肌膜Ca2+通量的假设相反,我们发现尽管L型Ca2+电流不足以完全激活收缩,但在虹鳟鱼心室肌细胞的兴奋-收缩偶联过程中,SR能够参与胞质Ca2+的调节。

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