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首页> 外文期刊>The Journal of Physiology >Predetermined recruitment of calcium release sites underlies excitation-contraction coupling in rat atrial myocytes.
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Predetermined recruitment of calcium release sites underlies excitation-contraction coupling in rat atrial myocytes.

机译:钙释放位点的预定募集是大鼠心房肌细胞中兴奋-收缩偶联的基础。

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摘要

Excitation-contraction coupling (E-C coupling) was studied in isolated fluo-3-loaded rat atrial myocytes at 22 and 37 degrees C using rapid confocal microscopy. Within a few milliseconds of electrical excitation, spatially discrete subsarcolemmal Ca2+ signals were initiated. Twenty to forty milliseconds after stimulation the spatial overlap of these Ca2+ signals gave a 'ring' of elevated Ca2+ around the periphery of the cells. However, this ring was not continuous and substantial Ca2+ gradients were observed. The discrete subsarcolemmal Ca2+-release sites, which responded in a reproducible sequence to repetitive depolarisations and displayed the highest frequencies of spontaneous Ca2+ sparks in resting cells, were denoted 'eager sites'. Immunostaining atrial myocytes for type II ryanodine receptors (RyRs) revealed both subsarcolemmal 'junctional' RyRs, and also 'non-junctional' RyRs in the central bulk of the cells. A subset of the junctional RyRs comprises the eager sites. For cells paced in the presence of 1 mM extracellular Ca2+, the response was largely restricted to a subsarcolemmal 'ring', while the central bulk of the cell displayed a approximately 5-fold lower Ca2+ signal. Under these conditions the non-junctional RyRs were only weakly activated during E-C coupling. However, these channels are functional and the Ca2+ stores were at least partially loaded, since substantial homogeneous Ca2+ signals could be stimulated in the central regions of atrial myocytes by application of 2.5 mM caffeine. Neither the location nor activation order of the eager sites was affected by increasing the trigger Ca2+ current (by increasing extracellular Ca2+ to 10 mM) or the sarcoplasmic reticulum (SR) Ca2+ load (following 1 min incubation in 10 mM extracellular Ca2+), although with increased SR Ca2+ load, but not greater Ca2+ influx, the delay between the sequential activation of eager sites was reduced. In addition, increasing the trigger Ca2+ current or the SR Ca2+ load changed the spatial pattern of the Ca2+ response, in that the Ca2+ signal propagated more reliably from the subsarcolemmal initiation sites into the centre of the cell. Due to the greater spatial spread of the Ca2+ signals, the averaged global Ca2+ transients increased by approximately 500 %. We conclude that rat atrial myocytes display a predetermined spatiotemporal pattern of Ca2+ signalling during early E-C coupling. A consistent set of eager Ca2+ release sites with a fixed location and activation order on the junctional SR serve to initiate the cellular response. The short latency for activation of these eager sites suggests that they reflect clusters of RyRs closely coupled to voltage-operated Ca2+ channels in the sarcolemma. Furthermore, their propensity to show spontaneous Ca2+ sparks is consistent with an intrinsically higher sensitivity to Ca2+-induced Ca2+ release. While the subsarcolemmal Ca2+ response can be considered as stereotypic, the central bulk of the cell grades its response in direct proportion to cellular Ca2+ load and Ca2+ influx.
机译:使用快速共聚焦显微镜在22和37摄氏度的离体氟3负荷大鼠心房肌细胞中研究了兴奋-收缩偶联(E-C偶联)。在电激发的几毫秒内,开始发出空间离散的次肌膜下Ca2 +信号。刺激后20到40毫秒,这些Ca2 +信号的空间交叠在细胞周围产生了升高的Ca2 +的“环”。但是,该环不是连续的,并且观察到大量的Ca2 +梯度。离散的肌膜下Ca2 +释放位点被称为“渴望的位点”,这些位点以可再现的顺序对重复的去极化反应并显示出自发性Ca2 +火花的最高频率。对II型ryanodine受体(RyRs)进行免疫染色的心房肌细胞,在细胞的中央体积中既发现了结膜下的“结” RyR,也发现了“非结” RyR。连接RyR的子集包含渴望的位点。对于在存在1 mM胞外Ca2 +的情况下步调加快的细胞,反应很大程度上局限于结膜下的“环”,而细胞的中央主体则显示出大约低5倍的Ca2 +信号。在这些条件下,非连接的RyRs仅在E-C偶联过程中被弱激活。但是,这些通道是有功能的,并且至少部分装载了Ca2 +储存库,因为通过应用2.5 mM咖啡因可以在心房肌细胞的中央区域刺激基本均一的Ca2 +信号。急切位点的位置或激活顺序均不受触发Ca2 +电流(通过将细胞外Ca2 +增加至10 mM)或肌浆网(SR)Ca2 +负荷(在10 mM细胞外Ca2 +中孵育1分钟)的影响。 SR Ca2 +负荷增加,但Ca2 +流入量增加不大,减少了急切位点顺序激活之间的延迟。另外,增加触发Ca2 +电流或SR Ca2 +负载会改变Ca2 +响应的空间模式,因为Ca2 +信号从结膜下起始位点更可靠地传播到细胞中心。由于Ca2 +信号的空间分布更大,平均的总体Ca2 +瞬变增加了大约500%。我们得出结论,在早期E-C耦合过程中,大鼠心房肌细胞显示了预定的Ca2 +信号传导时空模式。在连接SR上具有固定位置和激活顺序的一组急切的Ca2 +释放位点,用于启动细胞应答。这些急切位点激活的短等待时间表明,它们反映了肌膜中与电压操纵的Ca2 +通道紧密耦合的RyR簇。此外,它们显示自发Ca2 +火花的倾向与对Ca2 +诱导的Ca2 +释放的内在更高的敏感性相一致。虽然肌膜下的Ca2 +响应可以被认为是刻板印象,但细胞的中央主体将其响应与细胞的Ca2 +负荷和Ca2 +涌入成正比。

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