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首页> 外文期刊>American Journal of Physiology >Computational modeling of anoctamin 1 calcium-activated chloride channels as pacemaker channels in interstitial cells of Cajal
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Computational modeling of anoctamin 1 calcium-activated chloride channels as pacemaker channels in interstitial cells of Cajal

机译:Cajal间质细胞中作为起搏器通道的octamin 1钙激活氯离子通道的计算模型

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摘要

Interstitial cells of Cajal (ICC) act as pacemaker cells in the gastrointestinal tract by generating electrical slow waves to regulate rhythmic smooth muscle contractions. Intrinsic Ca~(2+) oscillations in ICC appear to produce the slow waves by activating pacemaker currents, currently thought to be carried by the Ca~(2+)-activated Cl~- channel anoctamin 1 (Ano1). In this article we present a novel model of small intestinal ICC pacemaker activity that incorporates store-operated Ca~(2+) entry and a new model of Anol current. A series of simulations were carried out with the ICC model to investigate current controversies about the reversal potential of the Anol Cl~- current in ICC and to predict the characteristics of the other ion channels that are necessary to generate slow waves. The model results show that Anol is a plausible pacemaker channel when coupled to a store-operated Ca~(2+) channel but suggest that small cyclical depolarizations may still occur in ICC in Anol knockout mice. The results predict that voltage-dependent Ca~(2+) current is likely to be negligible during the slow wave plateau phase. The model shows that the Cl~- equilibrium potential is an important modulator of slow wave morphology, highlighting the need for a better understanding of Cl~- dynamics in ICC.
机译:Cajal间质细胞(ICC)通过产生电慢波来调节节律性平滑肌收缩,从而在胃肠道中充当起搏器细胞。 ICC中固有的Ca〜(2+)振荡似乎通过激活起搏器电流产生了慢波,目前认为起搏器电流是由Ca〜(2+)激活的Cl〜-通道八胺1(Ano1)携带的。在本文中,我们提出了一种新的小肠ICC起搏器活动模型,该模型结合了存储操作的Ca〜(2+)进入和Anol current的新模型。使用ICC模型进行了一系列模拟,以调查有关ICC中Anol Cl-电流反转电位的当前争议,并预测产生慢波所必需的其他离子通道的特性。模型结果表明,当与存储操作的Ca〜(2+)通道耦合时,Anol是一个合理的起搏器通道,但表明在Anol基因敲除小鼠的ICC中仍可能发生小的周期性去极化。结果表明,在慢波平稳阶段,依赖电压的Ca〜(2+)电流可以忽略不计。该模型表明,Cl〜-平衡电势是慢波形态的重要调节器,这突出表明需要更好地了解ICC中的Cl〜-动力学。

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