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弯曲初级纤毛可打开MDCK细胞中对钙离子敏感的中间电导钾通道。

Bending the primary cilium opens Ca2+-sensitive intermediate-conductance K+ channels in MDCK cells.

作者信息

Praetorius H A, Frokiaer J, Nielsen S, Spring K R

机构信息

The Water and Salt Research Center, University of Aarhus, Aarhus, Denmark.

出版信息

J Membr Biol. 2003 Feb 1;191(3):193-200. doi: 10.1007/s00232-002-1055-z.

Abstract

Increasing tubular fluid flow rate has previously been shown to induce K+ secretion in mammalian cortical collecting duct. The mechanism responsible was examined in the present study using MDCK cells as a model. The change in membrane potential difference (EM) of MDCK cells was measured with a fluorescent voltage-sensitive dye, DiBAC4(3), when the cell's primary cilium was continuously bent with a micropipette or by the flow of perfusate. Bending the cilium produced a hyperpolarization of the membrane that lagged behind the increase in intracellular Ca2+ concentration by an average of 36 seconds. Gd3+, an inhibitor of the flow-induced Ca2+ increase, prevented the hyperpolarization. Blocking K+ channels with Ba2+ reduced the flow-induced hyperpolarization, implying that it resulted from activation of Ca2+-sensitive K+ channels. Further studies demonstrated that the hyperpolarization was diminished by the blocker of Ca2+-activated K+ channels, charybdotoxin, whereas iberiotoxin or apamin had no effect, results consistent with the activation of intermediate-conductance Ca2+-sensitive K+ channels. RT-PCR analysis and sequencing confirmed the presence of intermediate-conductance K+ channels in MDCK cells. We conclude that the increase in intracellular Ca2+ associated with bending of the primary cilium is the cause of the hyperpolarization and increased K+ conductance in MDCK cells.

摘要

先前的研究表明,增加肾小管液流速可诱导哺乳动物皮质集合管分泌钾离子(K+)。本研究以MDCK细胞为模型,对其作用机制进行了探究。当用微量移液器或灌注液流动使细胞的初级纤毛持续弯曲时,用荧光电压敏感染料DiBAC4(3)测量MDCK细胞的膜电位差(EM)变化。纤毛弯曲导致膜发生超极化,其滞后于细胞内钙离子(Ca2+)浓度升高,平均滞后36秒。钆离子(Gd3+)是一种抑制流动诱导Ca2+升高的抑制剂,可防止超极化。用钡离子(Ba2+)阻断钾离子通道可降低流动诱导的超极化,这意味着它是由钙敏感性钾离子通道的激活引起的。进一步的研究表明,钙激活钾离子通道阻滞剂查卡毒素可减弱超极化,而埃博毒素或蜂毒明肽则无此作用,这一结果与中间电导钙敏感性钾离子通道的激活一致。逆转录聚合酶链反应(RT-PCR)分析和测序证实MDCK细胞中存在中间电导钾离子通道。我们得出结论,与初级纤毛弯曲相关的细胞内Ca2+增加是MDCK细胞超极化和钾离子电导增加的原因。

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