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Cryo-EM structure of the Slo2.2 Na+-activated K+ channel

机译:Slo2.2 Na +激活的K +通道的Cryo-EM结构

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摘要

Na+-activated K+ channels are members of the Slo family of large conductance K+ channels that are widely expressed in the brain, where their opening regulates neuronal excitability. These channels are fascinating for the biological roles they fulfill as well as for their intriguing biophysical properties, including conductance levels ten times most other K+ channels and gating sensitivity to intracellular Na+. Here we present the structure a complete Na+-activated K+ channel, Slo2.2, in the Na+-free state, determined by cryo-electron microscopy at a nominal resolution of 4.5 Å. The channel is composed of a large cytoplasmic gating ring within which resides the Na+-binding site and a transmembrane domain that closely resembles voltage-gated K+ channels. In the structure, the cytoplasmic domain adopts a closed conformation and the ion conduction pore is also closed. The structure provides a first view of a member of the Slo K+ channel family, which reveals features explaining their high conductance and gating mechanism.
机译:Na + 激活的K + 通道是在大脑中广泛表达的大电导K + 通道的Slo家族的成员开放调节神经元的兴奋性。这些通道因其所发挥的生物学作用以及其有趣的生物物理特性而引人入胜,包括电导水平是其他大多数K + 通道的十倍,以及对细胞内Na + 的门控敏感性。在这里,我们介绍了一个完整的Na + 激活的K + 通道Slo2.2,处于无Na + 状态的结构,具体取决于冷冻电子显微镜,标称分辨率为4.5。该通道由一个大的细胞质门控环组成,该环内存在Na + 结合位点,一个跨膜结构域与电压门控的K + 通道极为相似。在结构中,胞质结构域采用封闭构象,离子传导孔也封闭。该结构提供了Slo K + 通道家族成员的第一个视图,该视图揭示了解释其高电导和门控机制的特征。

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