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XFEL structures of the influenza M2 proton channel: Room temperature water networks and insights into proton conduction

机译:流感M2质子通道的XFEL结构:室温水网络和质子传导的见解

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摘要

The M2 proton channel of influenza A is a drug target that is essential for the reproduction of the flu virus. It is also a model system for the study of selective, unidirectional proton transport across a membrane. Ordered water molecules arranged in “wires” inside the channel pore have been proposed to play a role in both the conduction of protons to the four gating His37 residues and the stabilization of multiple positive charges within the channel. To visualize the solvent in the pore of the channel at room temperature while minimizing the effects of radiation damage, data were collected to a resolution of 1.4 Å using an X-ray free-electron laser (XFEL) at three different pH conditions: pH 5.5, pH 6.5, and pH 8.0. Data were collected on the Inwardopen state, which is an intermediate that accumulates at high protonation of the His37 tetrad. At pH 5.5, a continuous hydrogen-bonded network of water molecules spans the vertical length of the channel, consistent with a Grotthuss mechanism model for proton transport to the His37 tetrad. This ordered solvent at pH 5.5 could act to stabilize the positive charges that build up on the gating His37 tetrad during the proton conduction cycle. The number of ordered pore waters decreases at pH 6.5 and 8.0, where the Inwardopen state is less stable. These studies provide a graphical view of the response of water to a change in charge within a restricted channel environment.
机译:甲型流感的M2质子通道是流感病毒复制必不可少的药物靶标。它也是用于研究跨膜的选择性单向质子传输的模型系统。有人提出,排列在通道孔内“金属丝”中的有序水分子在质子传导至四个门His37残基的传导以及通道内多个正电荷的稳定中都起着作用。为了在室温下可视化通道孔中的溶剂,同时最大程度地减少辐射损伤的影响,使用X射线自由电子激光(XFEL)在三种不同的pH条件下(pH 5.5)将数据收集到1.4Å的分辨率,pH 6.5和pH 8.0。在Inwardopen状态下收集数据,Inwardopen状态是在His37四联体的高质子化下积累的中间体。在pH 5.5时,水分子的连续氢键网络跨越通道的垂直长度,这与质子传输到His37四元体的Grotthuss机理模型一致。在pH 5.5时,这种有序的溶剂可以起到稳定在质子传导周期中在门控His37四联体上累积的正电荷的作用。在pH值为6.5和8.0的情况下,有序孔隙水的数量会减少,而Inwardopen状态的稳定性较差。这些研究提供了在受限通道环境中水对电荷变化的响应的图形视图。

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