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胰腺导管上皮细胞中钙库操纵型钙通道的特性。

Characterization of store-operated Ca2+ channels in pancreatic duct epithelia.

机构信息

Department of Physics, Pohang University of Science and Technology, Pohang, Republic of Korea.

出版信息

Cell Calcium. 2013 Oct;54(4):266-75. doi: 10.1016/j.ceca.2013.07.002. Epub 2013 Aug 20.

Abstract

Store-operated Ca2+ channels (SOCs) are activated by depletion of intracellular Ca2+ stores following agonist-mediated Ca2+ release. Previously we demonstrated that Ca2+ influx through SOCs elicits exocytosis efficiently in pancreatic duct epithelial cells (PDEC). Here we describe the biophysical, pharmacological, and molecular properties of the duct epithelial SOCs using Ca2+ imaging, whole-cell patch-clamp, and molecular biology. In PDEC, agonists of purinergic, muscarinic, and adrenergic receptors coupled to phospholipase C activated SOC-mediated Ca2+ influx as Ca2+ was released from intracellular stores. Direct measurement of [Ca2+] in the ER showed that SOCs greatly slowed depletion of the ER. Using IP3 or thapsigargin in the patch pipette elicited inwardly rectifying SOC currents. The currents increased ∼8-fold after removal of extracellular divalent cations, suggesting competitive permeation between mono- and divalent cations. The current was completely blocked by high doses of La3+ and 2-aminoethoxydiphenyl borate (2-APB) but only partially depressed by SKF-96365. In polarized PDEC, SOCs were localized specifically to the basolateral membrane. RT-PCR screening revealed the expression of both STIM and Orai proteins for the formation of SOCs in PDEC. By expression of fluorescent STIM1 and Orai1 proteins in PDEC, we confirmed that colocalization of the two proteins increases after store depletion. In conclusion, basolateral Ca2+ entry through SOCs fills internal Ca2+ stores depleted by external stimuli and will facilitate cellular processes dependent on cytoplasmic Ca2+ such as salt and mucin secretion from the exocrine pancreatic ducts.

摘要

储存操纵性钙通道 (SOCs) 通过激动剂介导的钙释放后细胞内钙储存的耗竭而被激活。以前我们证明,SOC 中的钙内流通过 SOC 有效地引发胰腺导管上皮细胞 (PDEC) 的胞吐作用。在这里,我们使用钙成像、全细胞膜片钳和分子生物学描述了导管上皮 SOC 的生物物理、药理学和分子特性。在 PDEC 中,嘌呤能、毒蕈碱能和肾上腺素能受体激动剂与磷脂酶 C 偶联,激活 SOC 介导的钙内流,同时细胞内储存的钙被释放。直接测量 ER 中的 [Ca2+] 表明 SOC 大大减缓了 ER 的耗竭。在膜片钳中使用 IP3 或 thapsigargin 可引发内向整流 SOC 电流。去除细胞外二价阳离子后,电流增加了约 8 倍,这表明单和二价阳离子之间存在竞争性渗透。电流完全被 La3+ 和 2-氨基乙氧基二苯硼酸盐 (2-APB) 高剂量阻断,但仅被 SKF-96365 部分抑制。在极化的 PDEC 中,SOC 特异性定位在基底外侧膜上。RT-PCR 筛选显示,STIM 和 Orai 蛋白的表达均可形成 PDEC 中的 SOC。通过在 PDEC 中表达荧光 STIM1 和 Orai1 蛋白,我们证实两种蛋白质的共定位在储存耗尽后增加。总之,通过 SOC 从基底外侧进入的钙内流填充了外部刺激耗尽的内部钙储存,并将促进依赖细胞质钙的细胞过程,例如外分泌胰腺导管中的盐和粘蛋白分泌。

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