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Gating at the selectivity filter in cyclic nucleotide-gated channels

机译:在环状核苷酸门控通道中选择过滤器的门控

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By opening and closing the permeation pathway (gating) in response to cGMP binding, cyclic nucleotide-gated (CNG) channels serve key roles in the transduction of visual and olfactory signals. Compiling evidence suggests that the activation gate in CNG channels is not located at the intracellular end of pore, as it has been established for voltage-activated potassium (K_v) channels. Here, we show that ion permeation in CNG channels is tightly regulated at the selectivity filter. By scanning the entire selectivity filter using small cysteine reagents, like cadmium and silver, we observed a state-dependent accessibility pattern consistent with gated access at the middle of the selectivity filter, likely at the corresponding position known to regulate structural changes in KcsA channels in response to low concentrations of permeant ions.
机译:通过响应cGMP结合打开和关闭渗透途径(门控),环核苷酸门控(CNG)通道在视觉和嗅觉信号的转导中起关键作用。有证据表明,CNG通道中的激活门并不位于孔的细胞内端,因为已经为电压激活的钾(K_v)通道建立了激活门。在这里,我们显示了CNG通道中的离子渗透在选择性过滤器中受到严格调节。通过使用小型半胱氨酸试剂(例如镉和银)扫描整个选择性过滤器,我们观察到了与状态相关的可访问性模式,该模式与选择性过滤器中部的门控访问一致,可能在已知的位置调节了KcsA通道的结构变化。对低浓度的渗透离子的响应。

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