A unique mechanism of inactivation gating of the Kv channel family member Kv7.1 and its modulation by PIP2 and calmodulin.

Lipinsky, Maya; Tobelaim, William Sam; Peretz, Asher; Simhaev, Luba; Yeheskel, Adva; Yakubovich, Daniel; Lebel, Guy; Paas, Yoav et al. · Sci Adv · 2020

basic_science · Level V

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Abstract

Inactivation of voltage-gated K<sup>+</sup> (Kv) channels mostly occurs by fast N-type or/and slow C-type mechanisms. Here, we characterized a unique mechanism of inactivation gating comprising two inactivation states in a member of the Kv channel superfamily, Kv7.1. Removal of external Ca<sup>2+</sup> in wild-type Kv7.1 channels produced a large, voltage-dependent inactivation, which differed from N- or C-type mechanisms. Glu<sup>295</sup> and Asp<sup>317</sup> located, respectively, in the turret and pore entrance are involved in Ca<sup>2+</sup> coordination, allowing Asp<sup>317</sup> to form H-bonding with the pore helix Trp<sup>304</sup>, which stabilizes the selectivity filter and prevents inactivation. Phosphatidylinositol 4,5-bisphosphate (PIP2) and Ca<sup>2+</sup>-calmodulin prevented Kv7.1 inactivation triggered by Ca<sup>2+</sup>-free external solutions, where Ser<sup>182</sup> at the S2-S3 linker relays the calmodulin signal from its inner boundary to the external pore to allow proper channel conduction. Thus, we revealed a unique mechanism of inactivation gating in Kv7.1, exquisitely controlled by external Ca<sup>2+</sup> and allosterically coupled by internal PIP2 and Ca<sup>2+</sup>-calmodulin.

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