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Histidines, heart of the hydrogen ion channel from influenza A virus: Toward an understanding of conductance and proton selectivity

机译:组氨酸,甲型流感病毒氢离子通道的心脏:对电导和质子选择性的理解

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摘要

The heart of the H+ conductance mechanism in the homotetrameric M2 H+ channel from influenza A is a set of four histidine side chains. Here, we show that protonation of the third of these imidazoles coincides with acid activation of this transmembrane channel and that, at physiological pH, the channel is closed by two imidazole–imidazolium dimers, each sharing a low-barrier hydrogen bond. This unique construct succeeds in distributing a pair of charges over four rings and many atoms in a low dielectric environment to minimize charge repulsion. These dimers form with identical pKas of 8.2 ± 0.2, suggesting cooperative H+ binding and clearly illustrating high H+ affinity for this channel. The protonation behavior of the histidine side chains has been characterized by using solid-state NMR spectroscopy on the M2 transmembrane domain in fully hydrated lipid bilayers where the tetrameric backbone structure is known. Furthermore, electrophysiological measurements of multichannel and single-channel experiments confirm that these protein constructs are functional.
机译:来自甲型流感的同型四聚体M2 H +通道中H +电导机制的心脏是一组四个组氨酸侧链。在这里,我们显示出这些咪唑中的第三个质子化与该跨膜通道的酸活化同时发生,并且在生理pH值下,该通道被两个咪唑-咪唑鎓二聚体封闭,每个二聚体共享一个低势垒氢键。这种独特的构造成功地将一对电荷分布在低介电环境中的四个环和许多原子上,以最大程度地减少电荷排斥。这些二聚体形成相同的8.2±0.2的pKas,表明协同的H +结合并清楚地说明了对该通道的高H +亲和力。组氨酸侧链的质子化行为已通过在已知四聚体骨架结构的完全水合脂质双层中的M2跨膜结构域上使用固态NMR光谱进行了表征。此外,多通道和单通道实验的电生理测量结果证实这些蛋白质构建体具有功能。

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