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K(ir)2 钾通道对脑毛细血管内皮细胞和重建的 HEK293 细胞模型中 ATP 诱导的细胞死亡的贡献。

Contribution of K(ir)2 potassium channels to ATP-induced cell death in brain capillary endothelial cells and reconstructed HEK293 cell model.

机构信息

Department of Molecular and Cellular Pharmacology, Nagoya City University, Japan.

出版信息

Am J Physiol Cell Physiol. 2011 Jan;300(1):C75-86. doi: 10.1152/ajpcell.00135.2010. Epub 2010 Oct 27.

Abstract

Cellular turnover of brain capillary endothelial cells (BCECs) by the balance of cell proliferation and death is essential for maintaining the homeostasis of the blood-brain barrier. Stimulation of metabotropic ATP receptors (P2Y) transiently increased intracellular Ca²(+) concentration (Ca²(+)) in t-BBEC 117, a cell line derived from bovine BCECs. The Ca²(+) rise induced membrane hyperpolarization via the activation of apamin-sensitive small-conductance Ca²(+)-activated K(+) channels (SK2) and enhanced cell proliferation in t-BBEC 117. Here, we found anomalous membrane hyperpolarization lasting for over 10 min in response to ATP in ∼15% of t-BBEC 117, in which inward rectifier K(+) channel (K(ir)2.1) was extensively expressed. Once anomalous hyperpolarization was triggered by ATP, it was removed by Ba²(+) but not by apamin. Prolonged exposure to ATPγS increased the relative population of t-BBEC 117, in which the expression of K(ir)2.1 mRNAs was significantly higher and Ba²(+)-sensitive anomalous hyperpolarization was observed. The cultivation of t-BBEC 117 in serum-free medium also increased this population and reduced the cell number. The reduction of cell number was enhanced by the addition of ATPγS and the enhancement was antagonized by Ba²(+). In the human embryonic kidney 293 cell model, where SK2 and K(ir)2.1 were heterologously coexpressed, Ca²(+) rise by P2Y stimulation triggered anomalous hyperpolarization and cell death. In conclusion, P2Y stimulation in BCECs enhances cell proliferation by SK2 activation in the majority of cells but also triggers cell death in a certain population showing a substantial expression of K(ir)2.1. This dual action of P2Y stimulation may effectively facilitate BCEC turnover.

摘要

脑毛细血管内皮细胞(BCEC)的细胞更新通过细胞增殖和死亡的平衡来维持血脑屏障的稳态。代谢型三磷酸腺苷受体(P2Y)的刺激瞬时增加了来源于牛 BCEC 的细胞系 t-BBEC 117 中的细胞内 Ca²⁺浓度 ([Ca²⁺]i)。[Ca²⁺]i 升高通过激活 apamin 敏感的小电导钙激活钾通道 (SK2) 引起膜超极化,并增强 t-BBEC 117 的细胞增殖。在这里,我们发现约 15%的 t-BBEC 117 对 ATP 产生异常的持续超过 10 分钟的膜超极化,其中广泛表达内向整流钾通道 (Kir2.1)。一旦由 ATP 触发异常超极化,它就可以被 Ba²⁺去除而不是被 apamin 去除。持续暴露于 ATPγS 会增加 t-BBEC 117 的相对群体,其中 Kir2.1 mRNAs 的表达显著升高并且观察到 Ba²⁺敏感的异常超极化。在无血清培养基中培养 t-BBEC 117 也会增加该群体并减少细胞数量。ATPγS 的添加增强了细胞数量的减少,而 Ba²⁺的添加拮抗了这种减少。在异源共表达 SK2 和 Kir2.1 的人胚肾 293 细胞模型中,P2Y 刺激引起的 [Ca²⁺]i 升高引发异常超极化和细胞死亡。总之,BCEC 中的 P2Y 刺激通过大多数细胞中的 SK2 激活增强细胞增殖,但也在表达大量 Kir2.1 的特定群体中触发细胞死亡。P2Y 刺激的这种双重作用可能有效地促进 BCEC 转化。

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