首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Domain-swapped chain connectivity and gated membrane access in a Fab-mediated crystal of the human TRAAK K+ channel
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Domain-swapped chain connectivity and gated membrane access in a Fab-mediated crystal of the human TRAAK K+ channel

机译:Fab介导的人TRAAK K +通道晶体中的域交换链连接性和门控膜访问

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摘要

TRAAK (TWIK-related arachidonic acid-stimulated K+ channel, K2P4.1) K+ ion channels are expressed predominantly in the nervous system to control cellular resting membrane potential and are regulated by mechanical and chemical properties of the lipid membrane. TRAAK channels are twofold symmetric, which precludes a direct extension of gating mechanisms that close canonical fourfold symmetric K+ channels. We present the crystal structure of human TRAAK in complex with antibody antigen-binding fragments (Fabs) at 2.75-Å resolution. In contrast to a previous structure, this structure reveals a domain-swapped chain connectivity enabled by the helical cap that exchanges two opposing outer helices 180° around the channel. An unrelated conformational change of an inner helix seals a side opening to the membrane bilayer and is associated with structural changes around the K+-selectivity filter that may have implications for mechanosensitivity and gating of TRAAK channels.
机译:TRAAK(TWIK相关的花生四烯酸刺激的K + 通道,K2P4.1)K + 离子通道主要在神经系统中表达,以控制细胞静息膜电位,并且由脂质膜的机械和化学性质调节。 TRAAK通道具有双重对称性,因此无法直接关闭封闭经典四倍对称K + 通道的门控机制。我们在2.75Å分辨率与抗体抗原结合片段(Fabs)复杂的人类TRAAK的晶体结构。与先前的结构相比,此结构显示了螺旋盖实现的域交换链连接,螺旋盖在通道周围交换两个相对的外部螺旋180°。内螺旋的无关构象变化密封了膜双层的侧开口,并与K + 选择性滤膜周围的结构变化有关,这可能对机械敏感性和TRAAK通道的门控有影响。

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