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Localization of divalent cation-binding site in the pore of a small conductance Ca(2+)-activated K(+) channel and its role in determining current-voltage relationship.

机译:小电导Ca(2+)激活的K(+)通道的孔中的二价阳离子结合位点的本地化及其在确定电流-电压关系中的作用。

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摘要

In our previous study, we proposed that the inwardly rectifying current-voltage (I-V) relationship of small-conductance Ca(2+)-activated K(+) channels (SK(Ca) channels) is the result of voltage-dependent blockade of K(+) currents by intracellular divalent cations. We expressed a cloned SK(Ca) channel, rSK2, in Xenopus oocytes and further characterized the nature of the divalent cation-binding site by electrophysiological means. Using site-directed substitution of hydrophilic residues in K(+)-conducting pathway and subsequent functional analysis of mutations, we identified an amino acid residue, Ser-359, in the pore-forming region of rSK2 critical for the strong rectification of the I-V relationship. This residue interacts directly with intracellular divalent cations and determines the ionic selectivity. Therefore, we confirmed our proposition by localizing the divalent cation-binding site within the conduction pathway of the SK(Ca) channel. Because the Ser residue unique for the subfamily of SK(Ca) channels is likely to locate closely to the selectivity filter of the channels, it may also contribute to other permeation characteristics of SK(Ca) channels.
机译:在我们先前的研究中,我们提出小电导Ca(2+)激活的K(+)通道(SK(Ca)通道)的向内整流电流-电压(IV)关系是电压依赖性阻断的结果。 K(+)电流通过细胞内二价阳离子。我们在非洲爪蟾卵母细胞中表达了一个克隆的SK(Ca)通道rSK2,并通过电生理学方法进一步表征了二价阳离子结合位点的性质。使用在K(+)传导途径中亲水性残基的定点取代和随后的突变功能分析,我们在rSK2的孔形成区域中发现了一个氨基酸残基Ser-359,对IV的强整化至关重要关系。该残基与细胞内二价阳离子直接相互作用,并确定离子选择性。因此,我们通过将二价阳离子结合位点定位在SK(Ca)通道的传导途径内来证实我们的主张。由于SK(Ca)通道亚家族特有的Ser残基很可能紧邻通道的选择性过滤器,因此它也可能有助于SK(Ca)通道的其他渗透特性。

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