Dupont G, Goldbeter A
Faculté des Sciences, Université Libre de Bruxelles, Belgium.
Cell Calcium. 1993 Apr;14(4):311-22. doi: 10.1016/0143-4160(93)90052-8.
Experimental observations indicate that Ca(2+)-induced Ca2+ release (CICR) may underlie Ca2+ oscillations in a variety of cells. In its original version, a theoretical model for signal-induced Ca2+ oscillations based on CICR assumed the existence of two types of pools, one sensitive to inositol 1,4,5-trisphosphate (IP3) and the other one sensitive to Ca2+. Recent experiments indicate that Ca2+ channels may sometimes be sensitive to both IP3 and Ca2+. Such a regulation may be viewed as Ca(2+)-sensitized IP3-induced Ca2+ release or, alternatively, as a form of IP3-sensitized CICR. We show that sustained oscillations can still occur in a one-pool model, provided that the same Ca2+ channels are sensitive to both Ca2+ and IP3 behaving as co-agonists. This model and the two-pool model based on CICR both account for a number of experimental observations but differ in some respects. Thus, while in the two-pool model the latency and period of Ca2+ oscillations are of the same order of magnitude and correlate in a roughly linear manner, latency in the one-pool model is always brief and remains much shorter than the period of oscillations. Moreover, the first Ca2+ spike is much larger than the following ones in the one-pool model. These distinctive properties might provide an explanation for the differences in Ca2+ oscillations observed in various cell types.
实验观察表明,钙诱导的钙释放(CICR)可能是多种细胞中钙振荡的基础。在其最初版本中,基于CICR的信号诱导钙振荡理论模型假定存在两种类型的钙池,一种对肌醇1,4,5 - 三磷酸(IP3)敏感,另一种对钙离子敏感。最近的实验表明,钙离子通道有时可能对IP3和钙离子都敏感。这种调节可被视为钙敏化的IP3诱导的钙释放,或者可被视为IP3敏化的CICR的一种形式。我们表明,只要相同的钙离子通道对钙离子和IP3都敏感并作为协同激动剂起作用,在单池模型中仍可发生持续振荡。该模型和基于CICR的双池模型都解释了一些实验观察结果,但在某些方面有所不同。因此,在双池模型中,钙振荡的延迟和周期具有相同的数量级并且大致呈线性相关,而在单池模型中延迟总是短暂的并且仍然比振荡周期短得多。此外,在单池模型中,第一个钙峰比随后的钙峰大得多。这些独特的特性可能为在各种细胞类型中观察到的钙振荡差异提供一种解释。