Molecular mechanisms of gating in the calcium-activated chloride channel bestrophin.

Miller, Alexandria N; Vaisey, George; Long, Stephen B · Elife · 2019

basic_science · Level V

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Abstract

Bestrophin (BEST1-4) ligand-gated chloride (Cl<sup>-</sup>) channels are activated by calcium (Ca<sup>2+</sup>). Mutation of BEST1 causes retinal disease. Partly because bestrophin channels have no sequence or structural similarity to other ion channels, the molecular mechanisms underlying gating are unknown. Here, we present a series of cryo-electron microscopy structures of chicken BEST1, determined at 3.1 Å resolution or better, that represent the channel's principal gating states. Unlike other channels, opening of the pore is due to the repositioning of tethered pore-lining helices within a surrounding protein shell that dramatically widens a neck of the pore through a concertina of amino acid rearrangements. The neck serves as both the activation and the inactivation gate. Ca<sup>2+</sup> binding instigates opening of the neck through allosteric means whereas inactivation peptide binding induces closing. An aperture within the otherwise wide pore controls anion permeability. The studies define a new molecular paradigm for gating among ligand-gated ion channels.

Medical subject headings