| Literature DB >> 36266333 |
Haon Futamata1, Masahiro Fukuda1,2, Rie Umeda1, Keitaro Yamashita1,3, Atsuhiro Tomita1, Satoe Takahashi4, Takafumi Shikakura5, Shigehiko Hayashi5, Tsukasa Kusakizako1, Tomohiro Nishizawa6,7, Kazuaki Homma8,9, Osamu Nureki10.
Abstract
Outer hair cell elecromotility, driven by prestin, is essential for mammalian cochlear amplification. Here, we report the cryo-EM structures of thermostabilized prestin (PresTS), complexed with chloride, sulfate, or salicylate at 3.52-3.63 Å resolutions. The central positively-charged cavity allows flexible binding of various anion species, which likely accounts for the known distinct modulations of nonlinear capacitance (NLC) by different anions. Comparisons of these PresTS structures with recent prestin structures suggest rigid-body movement between the core and gate domains, and provide mechanistic insights into prestin inhibition by salicylate. Mutations at the dimeric interface severely diminished NLC, suggesting that stabilization of the gate domain facilitates core domain movement, thereby contributing to the expression of NLC. These findings advance our understanding of the molecular mechanism underlying mammalian cochlear amplification.Entities:
Mesh:
Substances:
Year: 2022 PMID: 36266333 PMCID: PMC9584906 DOI: 10.1038/s41467-022-34017-x
Source DB: PubMed Journal: Nat Commun ISSN: 2041-1723 Impact factor: 17.694