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TitleStructure of the mechanically activated ion channel Piezo1.
Journal, issue, pagesNature, Vol. 554, Issue 7693, Page 481-486, Year 2018
Publish dateFeb 22, 2018
AuthorsKei Saotome / Swetha E Murthy / Jennifer M Kefauver / Tess Whitwam / Ardem Patapoutian / Andrew B Ward /
PubMed AbstractPiezo1 and Piezo2 are mechanically activated ion channels that mediate touch perception, proprioception and vascular development. Piezo proteins are distinct from other ion channels and their ...Piezo1 and Piezo2 are mechanically activated ion channels that mediate touch perception, proprioception and vascular development. Piezo proteins are distinct from other ion channels and their structure remains poorly defined, which impedes detailed study of their gating and ion permeation properties. Here we report a high-resolution cryo-electron microscopy structure of the mouse Piezo1 trimer. The detergent-solubilized complex adopts a three-bladed propeller shape with a curved transmembrane region containing at least 26 transmembrane helices per protomer. The flexible propeller blades can adopt distinct conformations, and consist of a series of four-transmembrane helical bundles that we term Piezo repeats. Carboxy-terminal domains line the central ion pore, and the channel is closed by constrictions in the cytosol. A kinked helical beam and anchor domain link the Piezo repeats to the pore, and are poised to control gating allosterically. The structure provides a foundation to dissect further how Piezo channels are regulated by mechanical force.
External linksNature / PubMed:29261642 / PubMed Central
MethodsEM (single particle)
Resolution3.8 Å
Structure data

EMDB-7128, PDB-6bpz:
Structure of the mechanically activated ion channel Piezo1
Method: EM (single particle) / Resolution: 3.8 Å

Source
  • mus musculus (house mouse)
KeywordsMEMBRANE PROTEIN / mechanosensitive ion channel

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