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首页> 外文期刊>Journal of General Physiology >A Cation-π Interaction between Extracellular TEA and an Aromatic Residue in Potassium Channels
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A Cation-π Interaction between Extracellular TEA and an Aromatic Residue in Potassium Channels

机译:钾通道中细胞外TEA与芳香残基之间的阳离子-π相互作用。

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摘要

Open-channel blockers such as tetraethylammonium (TEA) have a long history as probes of the permeation pathway of ion channels. High affinity blockade by extracellular TEA requires the presence of an aromatic amino acid at a position that sits at the external entrance of the permeation pathway (residue 449 in the eukaryotic voltage-gated potassium channel Shaker). We investigated whether a cation-π interaction between TEA and such an aromatic residue contributes to TEA block using the in vivo nonsense suppression method to incorporate a series of increasingly fluorinated Phe side chains at position 449. Fluorination, which is known to decrease the cation-π binding ability of an aromatic ring, progressively increased the inhibitory constant K_i for the TEA block of Shaker. A larger increase in K_i was observed when the benzene ring of Phe449 was substituted by nonaromatic cyclohexane. These results support a strong cation-π component to the TEA block. The data provide an empirical basis for choosing between Shaker models that are based on two classes of reported crystal structures for the bacterial channel KcsA, showing residue Tyr82 in orientations either compatible or incompatible with a cation-π mechanism. We propose that the aromatic residue at this position in Shaker is favorably oriented for a cation-π interaction with the permeation pathway. This choice is supported by high level ab initio calculations of the predicted effects of Phe modifications on TEA binding energy.
机译:诸如四乙铵(TEA)之类的明渠阻滞剂作为离子通道渗透途径的探针已有很长的历史。细胞外TEA的高亲和力阻断需要在渗透途径外部入口(真核电压门控钾通道振荡器中的449位残基)处存在芳香族氨基酸。我们使用体内无义抑制方法在位置449处掺入了一系列逐渐氟化的Phe侧链,研究了TEA与此类芳香族残基之间的阳离子-π相互作用是否有助于TEA阻滞。已知氟化可以减少阳离子-芳香环的π结合能力逐渐增加了Shaker TEA嵌段的抑制常数K_i。当Phe449的苯环被非芳族环己烷取代时,观察到K_i的更大增加。这些结果支持了TEA嵌段的强阳离子-π成分。数据为在基于两类报告的细菌通道KcsA晶体结构的摇床模型之间进行选择提供了经验基础,该模型显示了与阳离子-π机制相容或不相容的Tyr82残基。我们建议在振荡器中此位置的芳香族残基有利地定向为与渗透途径的阳离子-π相互作用。 Phe修饰对TEA结合能的预测作用的高水平从头算计算支持该选择。

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