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Cryo-EM structure of the calcium homeostasis modulator 1 channel
Author(s) -
Yue Ren,
Tianlei Wen,
Zhiqin Xi,
Shunjin Li,
Jing Lu,
Xing Zhang,
Xue Yang,
Yuequan Shen
Publication year - 2020
Publication title -
science advances
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.928
H-Index - 146
ISSN - 2375-2548
DOI - 10.1126/sciadv.aba8161
Subject(s) - biophysics , gating , antiparallel (mathematics) , chemistry , ion channel , transmembrane domain , transmembrane protein , cryo electron microscopy , microbiology and biotechnology , voltage dependent calcium channel , calcium , biochemistry , biology , membrane , physics , receptor , quantum mechanics , magnetic field , organic chemistry
Calcium homeostasis modulator 1 (CALHM1) is a voltage-gated ATP release channel that plays an important role in neural gustatory signaling and the pathogenesis of Alzheimer's disease. Here, we present a cryo-electron microscopy structure of full-length Ca-free CALHM1 from Danio rerio at an overall resolution of 3.1 Å. Our structure reveals an octameric architecture with a wide pore diameter of ~20 Å, presumably representing the active conformation. The overall structure is substantially different from that of the isoform CALHM2, which forms both undecameric hemichannels and gap junctions. The N-terminal small helix folds back to the pore and forms an antiparallel interaction with transmembrane helix 1. Structural analysis revealed that the extracellular loop 1 region within the dimer interface may contribute to oligomeric assembly. A positive potential belt inside the pore was identified that may modulate ion permeation. Our structure offers insights into the assembly and gating mechanism of the CALHM1 channel.

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