Lacampagne A, Klein M G, Schneider M F
Department of Biochemistry and Molecular Biology, University of Maryland School of Medicine, Baltimore, Maryland 21201, USA.
J Gen Physiol. 1998 Feb;111(2):207-24. doi: 10.1085/jgp.111.2.207.
The modulation by internal free [Mg2+] of spontaneous calcium release events (Ca2+ "sparks") from the sarcoplasmic reticulum (SR) was studied in depolarized notched frog skeletal muscle fibers using a laser scanning confocal microscope in line-scan mode (x vs. t). Over the range of [Mg2+] from 0.13 to 1.86 mM, decreasing the [Mg2+] induced an increase in the frequency of calcium release events in proportion to [Mg2+]-1.6. The change of event frequency was not due to changes in [Mg-ATP] or [ATP]. Analysis of individual SR calcium release event properties showed that the variation in event frequency induced by the change of [Mg2+] was not accompanied by any changes in the spatiotemporal spread (i.e., spatial half width or temporal half duration) of Ca2+ sparks. The increase in event frequency also had no effect on the distribution of event amplitudes. Finally, the rise time of calcium sparks was independent of the [Mg2+], indicating that the open time of the SR channel or channels underlying spontaneous calcium release events was not altered by [Mg2+] over the range tested. These results suggest that in resting skeletal fibers, [Mg2+] modulates the SR calcium release channel opening frequency by modifying the average closed time of the channel without altering the open time. A kinetic reaction scheme consistent with our results and those of bilayer and SR vesicle experiments indicates that physiological levels of resting Mg2+ may inhibit channel opening by occupying the site for calcium activation of the SR calcium release channel.
利用激光扫描共聚焦显微镜的线扫描模式(x对t),在去极化的有凹痕青蛙骨骼肌纤维中研究了肌浆网(SR)自发钙释放事件(钙“火花”)受细胞内游离[Mg2+]的调节作用。在[Mg2+]从0.13到1.86 mM的范围内,降低[Mg2+]会导致钙释放事件的频率增加,且与[Mg2+]-1.6成比例。事件频率的变化并非由[Mg-ATP]或[ATP]的变化引起。对单个SR钙释放事件特性的分析表明,[Mg2+]变化引起的事件频率变化并未伴随着钙火花时空扩散(即空间半高宽或时间半持续时间)的任何改变。事件频率的增加对事件幅度的分布也没有影响。最后,钙火花的上升时间与[Mg2+]无关,这表明在测试范围内,[Mg2+]不会改变自发钙释放事件所涉及的SR通道或通道的开放时间。这些结果表明,在静息骨骼肌纤维中,[Mg2+]通过改变通道的平均关闭时间而非开放时间来调节SR钙释放通道的开放频率。一个与我们的结果以及双层膜和SR囊泡实验结果一致的动力学反应方案表明,静息Mg2+的生理水平可能通过占据SR钙释放通道钙激活位点来抑制通道开放。