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人A431癌细胞中的储存式钙内流途径:功能特性与激活机制

The store-operated calcium entry pathways in human carcinoma A431 cells: functional properties and activation mechanisms.

作者信息

Gusev Konstantin, Glouchankova Lyuba, Zubov Alexander, Kaznacheyeva Elena, Wang Zhengnan, Bezprozvanny Ilya, Mozhayeva Galina N

机构信息

Department of Physiology, K4.112, UT Southwestern Medical Center at Dallas, 5323 Harry Hines Blvd., Dallas, TX 75390-9040, USA.

出版信息

J Gen Physiol. 2003 Jul;122(1):81-94. doi: 10.1085/jgp.200308815.

Abstract

Activation of phospholipase C (PLC)-mediated signaling pathways in nonexcitable cells causes the release of Ca2+ from intracellular Ca2+ stores and activation of Ca2+ influx across the plasma membrane. Two types of Ca2+ channels, highly Ca2+-selective ICRAC and moderately Ca2+-selective ISOC, support store-operated Ca2+ entry process. In previous patch-clamp experiments with a human carcinoma A431 cell line we described store-operated Imin/ICRACL plasma membrane Ca2+ influx channels. In the present paper we use whole-cell and single-channel recordings to further characterize store-operated Ca2+ influx pathways in A431 cells. We discovered that (a) ICRAC and ISOC are present in A431 cells; (b) ICRAC currents are highly selective for divalent cations and fully activate within 150 s after initiation of Ca2+ store depletion; (c) ISOC currents are moderately selective for divalent cations (PBa/PCs = 14.5) and require at least 300 s for full activation; (d) ICRAC and ISOC currents are activated by PLC-coupled receptor agonists; (e) ISOC currents are supported by Imin/ICRACL channels that display 8.5-10 pS conductance for sodium; (f) ICRAC single channel conductance for sodium is estimated at 0.9 pS by the noise analysis; (g) Imin/ICRACL channels are activated in excised patches by an amino-terminal fragment of InsP3R1 (InsP3R1N); and (h) InsP3 binding to InsP3R1N is necessary for activation of Imin/ICRACL channels. Our findings provide novel information about store-operated Ca2+ influx pathways in A431 cells.

摘要

在非兴奋性细胞中,磷脂酶C(PLC)介导的信号通路激活会导致细胞内钙库释放Ca2+,并激活质膜上的Ca2+内流。两种类型的Ca2+通道,即高度Ca2+选择性的ICRAC和中度Ca2+选择性的ISOC,支持钙库操纵的Ca2+内流过程。在之前对人癌细胞A431细胞系进行的膜片钳实验中,我们描述了钙库操纵的Imin/ICRACL质膜Ca2+内流通道。在本文中,我们使用全细胞和单通道记录来进一步表征A431细胞中钙库操纵的Ca2+内流途径。我们发现:(a)A431细胞中存在ICRAC和ISOC;(b)ICRAC电流对二价阳离子具有高度选择性,在Ca2+钙库耗竭开始后150秒内完全激活;(c)ISOC电流对二价阳离子具有中度选择性(PBa/PCs = 14.5),至少需要300秒才能完全激活;(d)ICRAC和ISOC电流由PLC偶联受体激动剂激活;(e)ISOC电流由Imin/ICRACL通道支持,该通道对钠的电导为8.5 - 10 pS;(f)通过噪声分析估计ICRAC单通道对钠的电导为0.9 pS;(g)Imin/ICRACL通道在切除的膜片中被InsP3R1的氨基末端片段(InsP3R1N)激活;(h)InsP3与InsP3R1N的结合是激活Imin/ICRACL通道所必需的。我们的研究结果提供了关于A431细胞中钙库操纵的Ca2+内流途径的新信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b4e/2234469/323a0d20fac6/200308815f1.jpg

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