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Blocker State Dependence and Trapping in Hyperpolarization-Activated Cation Channels

机译:超极化激活的阳离子通道中的阻滞剂状态依赖性和诱捕

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摘要

Hyperpolarization-activated cation currents (Ih) are key determinants of repetitive electrical activity in heart and nerve cells. The bradycardic agent ZD7288 is a selective blocker of these currents. We studied the mechanism for ZD7288 blockade of cloned Ih channels in excised inside-out patches. ZD7288 blockade of the mammalian mHCN1 channel appeared to require opening of the channel, but strong hyperpolarization disfavored blockade. The steepness of this voltage-dependent effect (an apparent valence of ∼4) makes it unlikely to arise solely from a direct effect of voltage on blocker binding. Instead, it probably indicates a differential affinity of the blocker for different channel conformations. Similar properties were seen for ZD7288 blockade of the sea urchin homologue of Ih channels (SPIH), but some of the blockade was irreversible. To explore the molecular basis for the difference in reversibility, we constructed chimeric channels from mHCN1 and SPIH and localized the structural determinant for the reversibility to three residues in the S6 region likely to line the pore. Using a triple point mutant in S6, we also revealed the trapping of ZD7288 by the closing of the channel. Overall, the observations led us to hypothesize that the residues responsible for ZD7288 block of Ih channels are located in the pore lining, and are guarded by an intracellular activation gate of the channel.
机译:超极化激活的阳离子电流(Ih)是心脏和神经细胞中重复电活动的关键决定因素。缓动剂ZD7288是这些电流的选择性阻滞剂。我们研究了ZD7288阻断从内到外的补丁中克隆的Ih通道的机制。哺乳动物mHCN1通道的ZD7288封锁似乎需要打开该信道,但强烈的超极化不利于封锁。这种电压依赖性效应的陡度(表观价约为4)使得不可能仅由电压对阻滞剂结合的直接效应引起。取而代之的是,它可能表明阻滞剂对不同通道构象的不同亲和力。对于Ih通道的海胆同源物(SPIH)的ZD7288封锁,具有相似的性质,但有些封锁是不可逆的。为了探索可逆性差异的分子基础,我们从mHCN1和SPIH构建了嵌合通道,并确定了可逆性在可能排列在孔中的S6区中三个残基的结构决定因素。在S6中使用三点突变体,我们还揭示了通过关闭通道捕获ZD7288。总体而言,观察结果使我们假设负责Zh7288 Ih通道阻滞的残基位于孔壁中,并由通道的细胞内激活门保护。

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