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Structural and functional characterization of the bestrophin-2 anion channel.

Aaron P OwjiQingqing ZhaoChangyi JiAlec KittredgeAustin HopiavuoriZiao FuNancy WardOliver B ClarkeYin ShenYu ZhangWayne A HendricksonTingting Yang
Published in: Nature structural & molecular biology (2020)
The bestrophin family of calcium (Ca2+)-activated chloride (Cl-) channels, which mediate the influx and efflux of monovalent anions in response to the levels of intracellular Ca2+, comprises four members in mammals (bestrophin 1-4). Here we report cryo-EM structures of bovine bestrophin-2 (bBest2) bound and unbound by Ca2+ at 2.4- and 2.2-Å resolution, respectively. The bBest2 structure highlights four previously underappreciated pore-lining residues specifically conserved in Best2 but not in Best1, illustrating the differences between these paralogs. Structure-inspired electrophysiological analysis reveals that, although the channel is sensitive to Ca2+, it has substantial Ca2+-independent activity for Cl-, reflecting the opening at the cytoplasmic restriction of the ion conducting pathway even when Ca2+ is absent. Moreover, the ion selectivity of bBest2 is controlled by multiple residues, including those involved in gating.
Keyphrases
  • protein kinase
  • ionic liquid
  • reactive oxygen species
  • single molecule