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Kir4.1通道在神经胶质细胞生长调控中的作用。

Role of Kir4.1 channels in growth control of glia.

作者信息

Higashimori Haruki, Sontheimer Harald

机构信息

Department of Neurobiology, University of Alabama at Birmingham, Birmingham, Alabama, USA.

出版信息

Glia. 2007 Dec;55(16):1668-79. doi: 10.1002/glia.20574.

Abstract

The inwardly rectifying potassium channel Kir4.1 is widely expressed by astrocytes throughout the brain. Kir4.1 channels are absent in immature, proliferating glial cells. The progressive expression of Kir4.1 correlates with astrocyte differentiation and is characterized by the establishment of a negative membrane potential (> -70 mV) and an exit from the cell cycle. Despite some correlative evidence, a mechanistic interdependence between Kir4.1 expression, membrane hyperpolarization, and control of cell proliferation has not been demonstrated. To address this question, we used astrocyte-derived tumors (glioma) that lack functional Kir4.1 channels, and generated two glioma cell lines that stably express either AcGFP-tagged Kir4.1 channels or AcGFP vectors only. Kir4.1 expression confers the same K+ conductance to glioma membranes and a similar responsiveness to changes in [K+]o that characterizes differentiated astrocytes. Kir4.1 expression was sufficient to move the resting potential of gliomas from -50 to -80 mV. Importantly, Kir4.1 expression impaired cell growth by shifting a significant number of cells from the G2/M phase into the quiescent G0/G1 stage of the cell cycle. Furthermore, these effects could be nullified entirely if Kir4.1 channels were either pharmacologically inhibited by 100 microM BaCl2 or if cells were chronically depolarized by 20 mM KCl to the membrane voltage of growth competent glioma cells. These studies therefore demonstrate directly that Kir4.1 causes a membrane hyperpolarization that is sufficient to account for the growth attenuation, which in turn induces cell maturation characterized by a shift of the cells from G2/M into G0/G1.

摘要

内向整流钾通道Kir4.1在全脑的星形胶质细胞中广泛表达。在未成熟的增殖性胶质细胞中不存在Kir4.1通道。Kir4.1的逐渐表达与星形胶质细胞分化相关,其特征是建立负膜电位(> -70 mV)并退出细胞周期。尽管有一些相关证据,但尚未证明Kir4.1表达、膜超极化和细胞增殖控制之间存在机制上的相互依存关系。为了解决这个问题,我们使用了缺乏功能性Kir4.1通道的星形胶质细胞源性肿瘤(胶质瘤),并生成了两种稳定表达AcGFP标记的Kir4.1通道或仅AcGFP载体的胶质瘤细胞系。Kir4.1的表达赋予胶质瘤膜相同的K + 电导以及对[K + ] o变化的类似反应性,这是分化型星形胶质细胞的特征。Kir4.1的表达足以将胶质瘤的静息电位从-50 mV移至-80 mV。重要的是,Kir4.1的表达通过将大量细胞从细胞周期的G2 / M期转移到静止的G0 / G1期来损害细胞生长。此外,如果Kir4.1通道被100 microM BaCl2药理抑制,或者如果细胞被20 mM KCl长期去极化至具有生长能力的胶质瘤细胞的膜电压,则这些效应可以完全消除。因此,这些研究直接证明Kir4.1会导致膜超极化,这足以解释生长衰减,进而诱导以细胞从G2 / M期转变为G0 / G1期为特征的细胞成熟。

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