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Control of rectification and permeation by two distinct sites after the second transmembrane region in Kir2.1 K+ channel

机译:在Kir2.1 K +通道的第二个跨膜区之后通过两个不同的位点控制整流和渗透

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摘要

class="enumerated" style="list-style-type:decimal">The rectification property of the inward rectifier K+ channel is chiefly due to the block of outward current by cytoplasmic Mg2+ and polyamines. In the cloned inward rectifier K+ channel Kir2.1 (IRK1), Asp172 in the second transmembrane region (M2) and Glu224 in the putative cytoplasmic region after M2 are reported to be critical for the sensitivity to these blockers. However, the difference in the inward rectification properties between Kir2.1 and a very weak inward rectifier sWIRK could not be explained by differences at these two sites.Following sequence comparison of Kir2.1 and sWIRK, we focused this study on Glu299 located in the centre of the putative cytoplasmic region after M2. Single-point mutants of Kir2.1 (Glu224Gly and Glu299Ser) and a double-point mutant (Glu224Gly-Glu299Ser) were made and expressed in Xenopus oocytes or in HEK293T cells.Their electrophysiological properties were compared with those of wild-type (WT) Kir2.1 and the following observations were made. (a) Glu299Ser showed a weaker inward rectification, a slower activation upon hyperpolarization, a slower decay of the outward current upon depolarization, a lower sensitivity to block by cytoplasmic spermine and a smaller single-channel conductance than WT. (b) The features of Glu224Gly were similar to those of Glu299Ser. (c) In the double mutant (Glu224Gly-Glu299Ser), the differences from WT described above were more prominent.These results demonstrate that Glu299 as well as Glu224 control rectification and permeation, and suggest the possibility that the two sites contribute to the inner vestibule of the channel pore. The slowing down of the on- and off-blocking processes by mutation of these sites implies that Glu224 and Glu299 function to facilitate the entry (and exit) of spermine to (and from) the blocking site.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 内向整流子K + 通道的整流特性主要是由于胞质Mg 2 + 和多胺对外向电流的阻断。据报道,在克隆的内向整流子K + 通道Kir2.1(IRK1)中,第二个跨膜区域(M2)中的Asp172和假定的细胞质区域在M2之后的Glu224对它们的敏感性至关重要。阻止者。但是,无法通过这两个位点的差异来解释Kir2.1和非常弱的向内整流器sWIRK之间的向内整流特性的差异。 在Kir2.1和sWIRK的序列比较之后,我们着眼于这项研究对Glu299位于M2之后假定的细胞质区域的中心。制备了Kir2.1单点突变体(Glu224Gly和Glu299Ser)和双点突变体(Glu224Gly-Glu299Ser),并在非洲爪蟾卵母细胞或HEK293T细胞中表达。野生型(WT)Kir2.1的克隆和以下观察结果。 (a)Glu299Ser显示出较弱的向内整流,在超极化时活化较慢,在去极化时向外电流衰减较慢,对细胞质精胺阻断的敏感性较低以及与WT相比单通道电导较小。 (b)Glu224Gly的功能与Glu299Ser相似。 (c)在双突变体(Glu224Gly-Glu299Ser)中,与上述野生型的差异更为明显。 这些结果表明,Glu299和Glu224可以控制整流和渗透,并提示两个部位有助于通道孔的内部前庭。这些位点的突变会减慢打开和关闭的过程,这意味着Glu224和Glu299的作用是促进精胺进入(和离开)阻断位点。

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