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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Functional down-regulation of volume-regulated anion channels in AQP4 knockdown cultured rat cortical astrocytes.
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Functional down-regulation of volume-regulated anion channels in AQP4 knockdown cultured rat cortical astrocytes.

机译:AQP4组合培养的大鼠皮质星形胶质细胞中体积调节的阴离子通道的功能下调。

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摘要

In the brain, the astroglial syncytium is crucially involved in the regulation of water homeostasis. Accumulating evidence indicates that a dysregulation of the astrocytic processes controlling water homeostasis has a pathogenetic role in several brain injuries. Here, we have analysed by RNA interference technology the functional interactions occurring between the most abundant water channel in the brain, aquaporin-4 (AQP4), and the swelling-activated Cl(-) current expressed by cultured rat cortical astrocytes. We show that in primary cultured rat cortical astrocytes transfected with control small interfering RNA (siRNA), hypotonic shock promotes an increase in cellular volume accompanied by augmented membrane conductance mediated by volume-regulated anion channels (VRAC). Conversely, astroglia in which AQP4 was knocked down (AQP4 KD) by transfection with AQP4 siRNA changed their morphology from polygonal to process-bearing, and displayed normal cell swelling but reduced VRAC activity. Pharmacological manipulations of actin cytoskeleton in rat astrocytes, and functional analysis in mouse astroglial cells, which retain their morphology upon knockdown of AQP4, suggest that stellation of AQP4 KD rat cortical astrocytes was not causally linked to reduction of VRAC current. Molecular analysis of possible candidates of swelling-activated Cl(-) current provided evidence that in AQP4 KD astrocytes, there was a down-regulation of chloride channel-2 (CIC-2), which, however, was not involved in VRAC conductance. Inclusion of ATP in the intracellular saline restored VRAC activity upon hypotonicity. Collectively, these results support the view that in cultured astroglial cells, plasma membrane proteins involved in cell volume homeostasis are assembled in a functional platform.
机译:在大脑中,星形胶质合胞体至关重要地参与水稳态的调节。越来越多的证据表明,控制水稳态的星形细胞过程失调在几种脑损伤中具有致病作用。在这里,我们已经通过RNA干扰技术分析了大脑中最丰富的水通道,水通道蛋白4(AQP4)和培养的大鼠皮质星形胶质细胞表达的溶胀的Cl(-)电流之间发生的功能相互作用。我们显示在用对照小干扰RNA(siRNA)转染的原代培养的大鼠皮质星形胶质细胞中,低渗性休克可促进细胞体积的增加,并伴随着体积调节阴离子通道(VRAC)介导的膜电导的增加。相反,通过用AQP4 siRNA转染而敲低AQP4的星形胶质细胞将其形态从多角形变为带有过程的形态,并显示出正常的细胞肿胀,但VRAC活性降低。大鼠星形胶质细胞中肌动蛋白细胞骨架的药理处理以及小鼠星形胶质细胞的功能分析(在敲除AQP4后仍保持其形态)表明,AQP4 KD大鼠皮质星形胶质细胞的星状与VRAC电流降低没有因果关系。可能的溶胀激活Cl(-)电流候选者的分子分析提供了证据,表明在AQP4 KD星形胶质细胞中,氯通道2(CIC-2)的下调,但是不参与VRAC电导。低渗后,将ATP包含在细胞内盐水中可恢复VRAC活性。总的来说,这些结果支持这样的观点,即在培养的星形胶质细胞中,参与细胞体积稳态的质膜蛋白被组装在一个功能平台上。

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