Publication | Closed Access
Structure of a eukaryotic voltage-gated sodium channel at near-atomic resolution
430
Citations
92
References
2017
Year
Voltage-gated sodium (Na<sub>v</sub>) channels are responsible for the initiation and propagation of action potentials. They are associated with a variety of channelopathies and are targeted by multiple pharmaceutical drugs and natural toxins. Here, we report the cryogenic electron microscopy structure of a putative Na<sub>v</sub> channel from American cockroach (designated Na<sub>v</sub>PaS) at 3.8 angstrom resolution. The voltage-sensing domains (VSDs) of the four repeats exhibit distinct conformations. The entrance to the asymmetric selectivity filter vestibule is guarded by heavily glycosylated and disulfide bond-stabilized extracellular loops. On the cytoplasmic side, a conserved amino-terminal domain is placed below VSD<sub>I</sub>, and a carboxy-terminal domain binds to the III-IV linker. The structure of Na<sub>v</sub>PaS establishes an important foundation for understanding function and disease mechanism of Na<sub>v</sub> and related voltage-gated calcium channels.
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