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I(ARC),一种新型的花生四烯酸调节的、非容量性Ca(2+)内流通道。

I(ARC), a novel arachidonate-regulated, noncapacitative Ca(2+) entry channel.

作者信息

Mignen O, Shuttleworth T J

机构信息

Department of Pharmacology and Physiology, University of Rochester School of Medicine and Dentistry, Rochester, New York 14642, USA.

出版信息

J Biol Chem. 2000 Mar 31;275(13):9114-9. doi: 10.1074/jbc.275.13.9114.

Abstract

Along with the inositol trisphosphate-induced release of stored Ca(2+), a receptor-enhanced entry of Ca(2+) is a critical component of intracellular Ca(2+) signals generated by agonists acting at receptors coupled to the activation of phospholipase C. Although the simple emptying of the intracellular Ca(2+) stores is known to be capable of activating Ca(2+) entry via the so-called "capacitative" mechanism, recent evidence suggests that Ca(2+) entry at physiological agonist concentrations, where oscillatory Ca(2+) signals are typically observed, does not conform to such a model. Instead, a noncapacitative Ca(2+) entry pathway regulated by arachidonic acid appears to be responsible for Ca(2+) entry under these conditions. Using whole-cell patch clamp techniques we demonstrate that low concentrations of arachidonic acid activate a Ca(2+)-selective current that is superficially similar to the store-operated current I(CRAC), but which also demonstrates certain distinct features. We have named this novel current I(ARC) (for arachidonate-regulated calcium current). Importantly, I(ARC) can be readily activated in cells whose Ca(2+) stores have been maximally depleted. I(ARC) represents a novel Ca(2+) entry pathway that is entirely separate from those activated by store depletion and is specifically activated at physiological levels of stimulation.

摘要

除了肌醇三磷酸诱导储存的Ca(2+)释放外,受体增强的Ca(2+)内流是由作用于与磷脂酶C激活偶联的受体的激动剂产生的细胞内Ca(2+)信号的关键组成部分。虽然已知细胞内Ca(2+)储存的简单排空能够通过所谓的“容量性”机制激活Ca(2+)内流,但最近的证据表明,在生理激动剂浓度下(通常观察到振荡性Ca(2+)信号)的Ca(2+)内流并不符合这种模型。相反,由花生四烯酸调节的非容量性Ca(2+)内流途径似乎在这些条件下负责Ca(2+)内流。使用全细胞膜片钳技术,我们证明低浓度的花生四烯酸激活一种Ca(2+)选择性电流,该电流表面上类似于储存操作电流I(CRAC),但也表现出某些独特特征。我们将这种新型电流命名为I(ARC)(花生四烯酸调节的钙电流)。重要的是,I(ARC)可以在Ca(2+)储存已被最大程度耗尽的细胞中轻易激活。I(ARC)代表一种全新的Ca(2+)内流途径,它与由储存耗尽激活的途径完全不同,并且在生理刺激水平下被特异性激活。

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