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The S4–S5 linker couples voltage sensing and activation of pacemaker channels

机译:S4–S5链接器将电压感测和激活耦合在一起 起搏器通道

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摘要

Voltage-gated channels are normally opened by depolarization and closed by repolarization of the membrane. Despite sharing significant sequence homology with voltage-gated K+ channels, the gating of hyperpolarization-activated, cyclic-nucleotide-gated (HCN) pacemaker channels has the opposite dependence on membrane potential: hyperpolarization opens, whereas depolarization closes, these channels. The mechanism and structural basis of the process that couples voltage sensor movement to HCN channel opening and closing is not understood. On the basis of our previous studies of a mutant HERG (human ether-a-go-go-related gene) channel, we hypothesized that the intracellular linker that connects the fourth and fifth transmembrane domains (S4–S5 linker) of HCN channels might be important for channel gating. Here, we used alanine-scanning mutagenesis of the HCN2 S4–S5 linker to identify three residues, E324, Y331, and R339, that when mutated disrupted normal channel closing. Mutation of a basic residue in the S4 domain (R318Q) prevented channel opening, presumably by disrupting S4 movement. However, channels with R318Q and Y331S mutations were constitutively open, suggesting that these channels can open without a functioning S4 domain. We conclude that the S4–S5 linker mediates coupling between voltage sensing and HCN channel activation. Our findings also suggest that opening of HCN and related channels corresponds to activation of a gate located near the inner pore, rather than recovery of channels from a C-type inactivated state.
机译:电压门控通道通常通过去极化来打开,而通过膜的再极化来关闭。尽管与电压门控的K + 通道具有显着的序列同源性,但超极化激活的环核苷酸门控(HCN)起搏器通道的门控对膜电位的依赖性相反:超极化打开,而去极化这些渠道关闭。将电压传感器运动耦合到HCN通道打开和关闭的过程的机制和结构基础尚不明确。根据我们先前对突变的HERG(人类醚相关基因)通道的研究,我们假设连接HCN通道第四和第五跨膜结构域(S4–S5接头)的细胞内接头可能对通道门控非常重要在这里,我们使用了HCN2 S4–S5接头的丙氨酸扫描诱变来鉴定三个残基E324,Y331和R339,这些残基在突变时会破坏正常通道关闭。 S4结构域(R318Q)中基本残基的突变阻止了通道的开放,大概是通过破坏了S4的运动。但是,带有R318Q和Y331S的通道 突变是组成性开放的,表明这些通道可以 在没有可用的S4域的情况下打开。我们得出结论,S4–S5 链接器介导电压感测和HCN通道之间的耦合 激活。我们的发现还表明,HCN的开放和相关 通道对应于位于内部附近的门的激活 孔,而不是从C型灭活状态恢复通道。

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