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Small conductance Ca2+-activated K+ channels formed by the expression of rat SK1 and SK2 genes in HEK 293 cells

机译:大鼠SK1和SK2基因在HEK 293细胞中表达形成的小电导Ca2 +激活的K +通道

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摘要

The rat SK1 gene (rSK1) does not form functional Ca2+-activated potassium channels when expressed alone in mammalian cell lines. Using a selective antibody to the rSK1 subunit and a yellow fluorescent protein (YFP) tag we have discovered that rSK1 expression produces protein that remains largely at intracellular locations. We tested the idea that rSK1 may need an expression partner, rSK2, in order to form functional channels. When rSK1 was co-expressed with rSK2 in HEK 293 cells it increased the current magnitude by 77 ± 34 % (as compared with cells expressing rSK2 alone). Co-expression of rSK1 with rSK2 also changed the channel pharmacology. The sensitivity of SK current to block by apamin was reduced ∼16-fold from an IC50 of 94 pm (for SK2 alone) to 1.4 nm (for SK2 and SK1 together). The sensitivity to block by UCL 1848 (a potent small molecule blocker of SK channels) was similarly reduced, ∼26-fold, from an IC50 of 110 pm to 2.9 nm. These data clearly demonstrate that rSK1 and rSK2 subunits interact. The most likely explanation for this is that the subunits are able to form heteromeric assemblies.
机译:大鼠SK1基因(rSK1)在哺乳动物细胞系中单独表达时不形成功能性Ca 2 + 激活的钾通道。使用针对rSK1亚基的选择性抗体和黄色荧光蛋白(YFP)标签,我们发现rSK1表达产生的蛋白大部分保留在细胞内。我们测试了rSK1可能需要表达伙伴rSK2才能形成功能通道的想法。当rSK1与rSK2在HEK 293细胞中共表达时,其电流强度增加了77±34%(与仅表达rSK2的细胞相比)。 rSK1与rSK2的共表达也改变了通道药理学。 SK电流被apamin阻断的敏感性从94 pm(仅适用于SK2)的IC50降低至1.4 nm(适用于SK2和SK1),降低了约16倍。 UCL 1848(一种有效的SK通道小分子阻滞剂)对阻断的敏感性从110 pm的IC50降低到2.9 nm,降低了约26倍。这些数据清楚地表明,rSK1和rSK2亚基相互作用。对此最可能的解释是,亚基能够形成异聚体组装。

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