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The contribution of TWIK-1 channels to astrocyte K+ current is limited by retention in intracellular compartments

机译:TWIK-1通道对星形胶质细胞K +电流的贡献受保留在细胞内区室的限制

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摘要

TWIK-1 two-pore domain K+ channels are expressed abundantly in astrocytes. In the present study, we examined the extent to which TWIK-1 contributes to the linear current-voltage (I–V) relationship (passive) K+ membrane conductance, a dominant electrophysiological feature of mature hippocampal astrocytes. Astrocytes from TWIK-1 knockout mice have a more negative resting potential than those from wild type animals and a reduction in both inward rectification and Cs+ permeability. Nevertheless, the overall whole-cell passive conductance is not altered significantly in TWIK-1 knockout astrocytes. The expression of Kir4.1 and TREK-1, two other major astrocytic K+ channels, or of other two-pore K+ channels is not altered in TWIK-1 knockout mice, suggesting that the mild effect of TWIK-1 knockout does not result from compensation by these channels. Fractionation experiments showed that TWIK-1 is primarily localized in intracellular cytoplasmic fractions (55%) and mildly hydrophobic internal compartment fractions (41%), with only 5% in fractions containing plasma membranes. Our study revealed that TWIK-1 proteins are mainly located in the intracellular compartments of hippocampal astrocyte under physiological condition, therefore a minimal contribution of TWIK-1 channels to whole-cell currents is likely attributable to a relatively low level presence of channels in the plasma membrane.
机译:星形胶质细胞中大量表达TWIK-1两孔结构域K + 通道。在本研究中,我们研究了TWIK-1对线性电流-电压(I–V)关系(无源)K + 膜电导的贡献程度,这是成熟的海马星形胶质细胞的主要电生理特征。 TWIK-1基因敲除小鼠的星形胶质细胞比野生型动物具有更多的负静息电位,并且内向整流和Cs + 通透性均降低。但是,在TWIK-1基因敲除的星形胶质细胞中,整个细胞的整体被动传导没有明显改变。 TWIK-1敲除未改变Kir4.1和TREK-1,其他两个主要星形细胞K + 通道或其他两孔K + 通道的表达提示TWIK-1基因敲除的温和作用不是由这些通道的补偿引起的。分馏实验表明,TWIK-1主要位于细胞内细胞质级分(55%)和轻度疏水的内部区室级分(41%)中,只有5%包含质膜。我们的研究表明,在生理条件下,TWIK-1蛋白主要位于海马星形胶质细胞的细胞室内,因此,TWIK-1通道对全细胞电流的最小贡献很可能归因于血浆中通道的相对较低水平膜。

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