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大鼠心肌细胞中沿Z线涉及多个Ca2+释放位点的Ca2+火花。

Ca2+ sparks involving multiple Ca2+ release sites along Z-lines in rat heart cells.

作者信息

Parker I, Zang W J, Wier W G

机构信息

Department of Physiology, University of Maryland, School of Medicine, Baltimore 21201, USA.

出版信息

J Physiol. 1996 Nov 15;497 ( Pt 1)(Pt 1):31-8. doi: 10.1113/jphysiol.1996.sp021747.

Abstract
  1. High spatial resolution confocal imaging was used to investigate the fundamental nature of "Ca2+ sparks' in rat cardiac myocytes loaded with the fluorescent calcium indicator, fluo-3. 2. The sites at which calcium sparks occurred (Ca2+ release sites) were packed closely and irregularly in transverse planes along Z-lines (mean spacing between sites of 0.76 microns). In contrast, sites were spaced more regularly in the longitudinal direction, at intervals of 1.8 microns (i.e. the sarcomere length). 3. Diffusion of released Ca2+ was slower transversely (apparent diffusion coefficient, D, 7.9 microns 2 s-1) than longitudinally (D, 17.1 microns 2 s-1). 4. Frequently, discrete sites several hundred nanometres apart transversely activated in near synchrony. The probability of transverse synchronous activity fell to low levels (< 20%) at sites separated by more than 1.0 micron. Synchronous activation was not observed between sites on different Z-lines (i.e. separated longitudinally by 1.8 microns). 5. High temporal resolution confocal microscopy (stationary spot) revealed Ca2+ sparks with "stepped' rises, consistent with multiple sites of origin. 6. We conclude that the Ca2+ spark as originally described is usually not an "elementary' event, in the sense of being indivisible, but is often comprised of yet smaller, triggered units of Ca2+ release.
摘要
  1. 利用高空间分辨率共聚焦成像技术,对加载荧光钙指示剂氟-3的大鼠心肌细胞中“Ca2+火花”的基本性质进行了研究。

  2. 钙火花发生的位点(Ca2+释放位点)在沿Z线的横切面上紧密且不规则地排列(位点之间的平均间距为0.76微米)。相比之下,这些位点在纵向方向上的间距更规则,间隔为1.8微米(即肌节长度)。

  3. 释放的Ca2+的横向扩散(表观扩散系数D为7.9微米2/秒)比纵向扩散(D为17.1微米2/秒)慢。

  4. 通常,横向相距几百纳米的离散位点几乎同步激活。在相距超过1.0微米的位点,横向同步活动的概率降至低水平(<20%)。在不同Z线的位点之间未观察到同步激活(即纵向相距1.8微米)。

  5. 高时间分辨率共聚焦显微镜(固定光斑)显示Ca2+火花具有“阶梯式”上升,这与多个起源位点一致。

  6. 我们得出结论,最初描述的Ca2+火花通常不是一个不可分割意义上的“基本”事件,而是常常由更小的、触发的Ca2+释放单元组成。

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