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Non-equivalent role of TM2 gating hinges in heteromeric Kir4.1/Kir5.1 potassium channels

机译:TM2门控铰链在异源Kir4.1 / Kir5.1钾通道中的非等价作用

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摘要

Comparison of the crystal structures of the KcsA and MthK potassium channels suggests that the process of opening a K+ channel involves pivoted bending of the inner pore-lining helices at a highly conserved glycine residue. This bending motion is proposed to splay the transmembrane domains outwards to widen the gate at the “helix-bundle crossing”. However, in the inwardly rectifying (Kir) potassium channel family, the role of this “hinge” residue in the second transmembrane domain (TM2) and that of another putative glycine gating hinge at the base of TM2 remain controversial. We investigated the role of these two positions in heteromeric Kir4.1/Kir5.1 channels, which are unique amongst Kir channels in that both subunits lack a conserved glycine at the upper hinge position. Contrary to the effect seen in other channels, increasing the potential flexibility of TM2 by glycine substitutions at the upper hinge position decreases channel opening. Furthermore, the contribution of the Kir4.1 subunit to this process is dominant compared to Kir5.1, demonstrating a non-equivalent contribution of these two subunits to the gating process. A homology model of heteromeric Kir4.1/Kir5.1 shows that these upper “hinge” residues are in close contact with the base of the pore α-helix that supports the selectivity filter. Our results also indicate that the highly conserved glycine at the “lower” gating hinge position is required for tight packing of the TM2 helices at the helix-bundle crossing, rather than acting as a hinge residue.
机译:比较KcsA和MthK钾通道的晶体结构表明,打开K + 通道的过程涉及在高度保守的甘氨酸残基处的内部孔衬螺旋的枢转弯曲。提出该弯曲运动以使跨膜结构域向外张开以加宽“螺旋-束交叉”处的门。然而,在向内整流(Kir)的钾通道家族中,该“铰链”残基在第二跨膜结构域(TM2)中的作用以及在TM2底部的另一个推定的甘氨酸门控铰链的作用仍然存在争议。我们研究了这两个位置在异聚体Kir4.1 / Kir5.1通道中的作用,这在Kir通道中是独特的,因为两个亚基在上铰链位置都缺少保守的甘氨酸。与在其他通道中看到的效果相反,通过在上部铰链位置进行甘氨酸取代来增加TM2的潜在柔韧性会降低通道开口。此外,与Kir5.1相比,Kir4.1亚基对该过程的贡献占主导地位,这表明这两个亚基对门控过程的贡献不相等。异聚体Kir4.1 / Kir5.1的同源性模型显示,这些上部“铰链”残基与支持选择性过滤器的孔α-螺旋的底部紧密接触。我们的结果还表明,在“较低”门控铰链位置处高度保守的甘氨酸是TM2螺旋在螺旋束交叉处紧密堆积所必需的,而不是充当铰链残基。

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