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激素诱导的肝细胞钙振荡可用一个简单的单池模型来解释。

Hormone-induced calcium oscillations in liver cells can be explained by a simple one pool model.

作者信息

Somogyi R, Stucki J W

机构信息

Pharmakologisches Institut, Universität Bern, Switzerland.

出版信息

J Biol Chem. 1991 Jun 15;266(17):11068-77.

PMID:1904060
Abstract

Hormone-induced oscillations of the free intracellular calcium concentration are thought to be relevant for frequency encoding of hormone signals. In liver cells, such Ca2+ oscillations occur in response to stimulation by hormones acting via phosphoinositide breakdown. This observation may be explained by cooperative, positive feedback of Ca2+ on its own release from one inositol 1,4,5-trisphosphate-sensitive pool, obviating oscillations of inositol 1,4,5-trisphosphate. The kinetic rate laws of the associated model have a mathematical structure reminiscent of the Brusselator, a hypothetical chemical model involving a rather improbable trimolecular reaction step, thus giving a realistic biological interpretation to this hallmark of dissipative structures. We propose that calmodulin is involved in mediating this cooperativity and positive feedback, as suggested by the presented experiments. For one, hormone-induced calcium oscillations can be inhibited by the (nonphenothiazine) calmodulin antagonists calmidazolium or CGS 9343 B. Alternatively, in cells overstimulated by hormone, as characterized by a non-oscillatory elevated Ca2+ concentration, these antagonists could again restore sustained calcium oscillations. The experimental observations, including modulation of the oscillations by extracellular calcium, were in qualitative agreement with the predictions of our mathematical model.

摘要

激素诱导的细胞内游离钙浓度振荡被认为与激素信号的频率编码有关。在肝细胞中,这种Ca2+振荡是由通过磷酸肌醇分解起作用的激素刺激引起的。这一观察结果可以通过Ca2+对其从一个肌醇1,4,5-三磷酸敏感池中释放的协同正反馈来解释,从而避免了肌醇1,4,5-三磷酸的振荡。相关模型的动力学速率定律具有一种数学结构,让人联想到布鲁塞尔振子,这是一个涉及相当不可能的三分子反应步骤的假设化学模型,从而为耗散结构的这一标志赋予了现实的生物学解释。正如所呈现的实验所表明的,我们提出钙调蛋白参与介导这种协同性和正反馈。一方面,激素诱导的钙振荡可以被(非吩噻嗪类)钙调蛋白拮抗剂氯米帕明或CGS 9343 B抑制。另一方面,在被激素过度刺激的细胞中,其特征是Ca2+浓度非振荡性升高,这些拮抗剂可以再次恢复持续的钙振荡。包括细胞外钙对振荡的调节在内的实验观察结果与我们数学模型的预测在定性上是一致的。

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