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      Crystal Structure of a Mammalian Voltage-Dependent Shaker Family K+ Channel

      Science
      American Association for the Advancement of Science (AAAS)

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          Abstract

          Voltage-dependent potassium ion (K+) channels (Kv channels) conduct K+ ions across the cell membrane in response to changes in the membrane voltage, thereby regulating neuronal excitability by modulating the shape and frequency of action potentials. Here we report the crystal structure, at a resolution of 2.9 angstroms, of a mammalian Kv channel, Kv1.2, which is a member of the Shaker K+ channel family. This structure is in complex with an oxido-reductase beta subunit of the kind that can regulate mammalian Kv channels in their native cell environment. The activation gate of the pore is open. Large side portals communicate between the pore and the cytoplasm. Electrostatic properties of the side portals and positions of the T1 domain and beta subunit are consistent with electrophysiological studies of inactivation gating and with the possibility of K+ channel regulation by the beta subunit.

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          Author and article information

          Journal
          Science
          Science
          American Association for the Advancement of Science (AAAS)
          0036-8075
          1095-9203
          August 05 2005
          August 05 2005
          : 309
          : 5736
          : 897-903
          Article
          10.1126/science.1116269
          16002581
          88f92655-7324-4907-8858-19e064ce9603
          © 2005
          History

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