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光释放的肌醇三磷酸在非洲爪蟾卵母细胞中诱导的钙释放的快速动力学。

Fast kinetics of calcium liberation induced in Xenopus oocytes by photoreleased inositol trisphosphate.

作者信息

Parker I, Yao Y, Ilyin V

机构信息

Department of Psychobiology, University of California, Irvine 92717 USA.

出版信息

Biophys J. 1996 Jan;70(1):222-37. doi: 10.1016/S0006-3495(96)79565-6.

Abstract

Inositol 1,4,5-trisphosphate (InsP3) acts on intracellular receptors to cause liberation of Ca2+ ions into the cytosol as repetitive spikes and propagating waves. We studied the processes underlying this regenerative release of Ca2+ by monitoring with high resolution the kinetics of Ca2+ flux evoked in Xenopus oocytes by flash photolysis of caged InsP3. Confocal microfluorimetry was used to monitor intracellular free [Ca2+] from femtoliter volumes within the cell, and the underlying Ca2+ flux was then derived from the rate of increase of the fluorescence signals. A threshold amount of InsP3 had to be photoreleased to evoke any appreciable Ca2+ signal, and the amount of liberated Ca2+ then increased only approximately fourfold with maximal stimulation, whereas the peak rate of increase of Ca2+ varied over a range of nearly 20-fold, reaching a maximum of approximately 150 microMs-1. Ca2+ flux increased as a first-order function of [InsP3]. Indicating a lack of cooperativity in channel opening, and was half-maximal with stimuli approximately 10 times threshold. After a brief photolysis flash, Ca2+ efflux began after a quiescent latent period that shortened from several hundred milliseconds with near-threshold stimuli to 25 ms with maximal flashes. This delay could not be explained by an initial "foot" of Ca2+ increasing toward a threshold at which regenerative release was triggered, and the onset of release seemed too abrupt to be accounted for by multiple sequential steps involved in channel opening. Ca2+ efflux increased to a maximum after the latent period in a time that reduced from > 100 ms to approximately 8 ms with increasing [InsP3] and subsequently declined along a two-exponential time course: a rapid fall with a time constant shortening from > 100 ms to approximately 25 ms with increasing [InsP3], followed by a much smaller fail persisting for several seconds. The results are discussed in terms of a model in which InsP3 receptors must undergo a slow transition after binding InsP3 before they can be activated by cytosolic Ca2+ acting as a co-agonist. Positive feedback by liberated Ca2+ ions then leads to a rapid increase in efflux to a maximal rate set by the proportion of receptors binding InsP3. Subsequently, Ca2+ efflux terminates because of a slower inhibitory action of cytosolic Ca2+ on gating of InsP3 receptor-channels.

摘要

肌醇1,4,5 -三磷酸(InsP3)作用于细胞内受体,使Ca2+离子以重复尖峰和传播波的形式释放到细胞质中。我们通过高分辨率监测笼锁InsP3闪光光解在非洲爪蟾卵母细胞中诱发的Ca2+通量动力学,研究了这种Ca2+再生释放的潜在过程。共聚焦显微荧光测定法用于监测细胞内飞升体积内的细胞内游离[Ca2+],然后从荧光信号的增加速率推导出潜在的Ca2+通量。必须光释放阈值量的InsP3才能诱发任何明显的Ca2+信号,然后释放的Ca2+量在最大刺激下仅增加约四倍,而Ca2+增加的峰值速率在近20倍的范围内变化,最大值约为150 μM/s。Ca2+通量作为[InsP3]的一级函数增加。表明通道开放缺乏协同性,在刺激约为阈值10倍时达到半最大。短暂的光解闪光后,Ca2+外流在静止潜伏期后开始,该潜伏期从近阈值刺激时的几百毫秒缩短到最大闪光时的25毫秒。这种延迟不能用Ca2+最初向触发再生释放的阈值增加的“起始部分”来解释,并且释放的开始似乎过于突然,无法用通道开放所涉及的多个连续步骤来解释。Ca2+外流在潜伏期后增加到最大值,随着[InsP3]增加,时间从>100毫秒减少到约8毫秒,随后沿双指数时间进程下降:随着[InsP3]增加,快速下降,时间常数从>100毫秒缩短到约25毫秒,随后是持续数秒的小得多的下降。根据一个模型讨论了这些结果,在该模型中,InsP3受体在结合InsP3后必须经历缓慢转变,然后才能被作为协同激动剂的细胞质Ca2+激活。释放的Ca2+离子的正反馈随后导致外流迅速增加到由结合InsP3的受体比例设定的最大速率。随后,Ca2+外流终止,因为细胞质Ca2+对InsP3受体通道门控的抑制作用较慢。

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