Two-stage electro-mechanical coupling of a K<sub>V</sub> channel in voltage-dependent activation.

Hou, Panpan; Kang, Po Wei; Kongmeneck, Audrey Deyawe; Yang, Nien-Du; Liu, Yongfeng; Shi, Jingyi; Xu, Xianjin; White, Kelli McFarland et al. · Nat Commun · 2020

basic_science · Level V

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Abstract

In voltage-gated potassium (K<sub>V</sub>) channels, the voltage-sensing domain (VSD) undergoes sequential activation from the resting state to the intermediate state and activated state to trigger pore opening via electro-mechanical (E-M) coupling. However, the spatial and temporal details underlying E-M coupling remain elusive. Here, utilizing K<sub>V</sub>7.1's unique two open states, we report a two-stage E-M coupling mechanism in voltage-dependent gating of K<sub>V</sub>7.1 as triggered by VSD activations to the intermediate and then activated state. When the S4 segment transitions to the intermediate state, the hand-like C-terminus of the VSD-pore linker (S4-S5L) interacts with the pore in the same subunit. When S4 then proceeds to the fully-activated state, the elbow-like hinge between S4 and S4-S5L engages with the pore of the neighboring subunit to activate conductance. This two-stage hand-and-elbow gating mechanism elucidates distinct tissue-specific modulations, pharmacology, and disease pathogenesis of K<sub>V</sub>7.1, and likely applies to numerous domain-swapped K<sub>V</sub> channels.

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