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细胞外酸中毒激活新鲜分离的大脑动脉平滑肌细胞中的 ASIC 样通道。

Extracellular acidosis activates ASIC-like channels in freshly isolated cerebral artery smooth muscle cells.

机构信息

Dept. of Physiology, Univ. of Mississippi Medical Center, Jackson, 39216, USA.

出版信息

Am J Physiol Cell Physiol. 2010 May;298(5):C1198-208. doi: 10.1152/ajpcell.00511.2009. Epub 2010 Feb 24.

Abstract

Recent studies suggest that certain acid-sensing ion channels (ASIC) are expressed in vascular smooth muscle cells (VSMCs) and are required for VSMC functions. However, electrophysiological evidence of ASIC channels in VSMCs is lacking. The purpose of this study was to test the hypothesis that isolated cerebral artery VSMCs express ASIC-like channels. To address this hypothesis, we used RT-PCR, Western blotting, immunolabeling, and conventional whole cell patch-clamp technique. We found extracellular H(+)-induced inward currents in 46% of cells tested (n = 58 of 126 VSMCs, pH 6.5-5.0). The percentage of responsive cells and the current amplitude increased as the external H(+) concentration increased (pH(6.0), n = 28/65 VSMCs responsive, mean current density = 8.1 +/- 1.2 pA/pF). Extracellular acidosis (pH(6.0)) shifted the whole cell reversal potential toward the Nernst potential of Na(+) (n = 6) and substitution of extracellular Na(+) by N-methyl-d-glucamine abolished the inward current (n = 6), indicating that Na(+) is a major charge carrier. The broad-spectrum ASIC blocker amiloride (20 microM) inhibited proton-induced currents to 16.5 +/- 8.7% of control (n = 6, pH(6.0)). Psalmotoxin 1 (PcTx1), an ASIC1a inhibitor and ASIC1b activator, had mixed effects: PcTx1 either 1) abolished H(+)-induced currents (11% of VSMCs, 5/45), 2) enhanced or promoted activation of H(+)-induced currents (76%, 34/45), or 3) failed to promote H(+) activation in nonresponsive VSMCs (13%, 6/45). These findings suggest that freshly dissociated cerebral artery VSMCs express ASIC-like channels, which are predominantly formed by ASIC1b.

摘要

最近的研究表明,某些酸感应离子通道(ASIC)在血管平滑肌细胞(VSMC)中表达,并且是 VSMC 功能所必需的。然而,缺乏 VSMC 中 ASIC 通道的电生理学证据。本研究的目的是检验以下假设:分离的脑动脉 VSMC 表达 ASIC 样通道。为了解决这个假设,我们使用 RT-PCR、Western blot、免疫标记和常规全细胞膜片钳技术。我们发现,在测试的 46%的细胞中(126 个 VSMC 中 58 个细胞,pH6.5-5.0),细胞外 H(+)诱导内向电流。随着细胞外 H(+)浓度的增加,反应细胞的百分比和电流幅度增加(pH6.0,n=28/65 个 VSMC 反应,平均电流密度=8.1 +/- 1.2 pA/pF)。细胞外酸中毒(pH6.0)使全细胞反转电位向 Na(+)的 Nernst 电位移动(n=6),用 N-甲基-d-葡萄糖胺取代细胞外 Na(+) 可消除内向电流(n=6),表明 Na(+) 是主要的载流子。广谱 ASIC 阻滞剂阿米洛利(20 microM)抑制质子诱导电流至对照的 16.5 +/- 8.7%(n=6,pH6.0)。Psalmotoxin 1(PcTx1),一种 ASIC1a 抑制剂和 ASIC1b 激活剂,具有混合作用:PcTx1 1)消除 H(+)诱导的电流(5/45 个 VSMC,11%),2)增强或促进 H(+)诱导电流的激活(45 个 VSMC,76%),或 3)在无反应的 VSMC 中未能促进 H(+)的激活(45 个 VSMC,13%)。这些发现表明,刚分离的脑动脉 VSMC 表达 ASIC 样通道,主要由 ASIC1b 组成。

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