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Cryo-EM structures of calcium homeostasis modulator channels in diverse oligomeric assemblies.


ABSTRACT: Calcium homeostasis modulator (CALHM) family proteins are Ca2+-regulated adenosine triphosphate (ATP)-release channels involved in neural functions including neurotransmission in gustation. Here, we present the cryo-electron microscopy (EM) structures of killifish CALHM1, human CALHM2, and Caenorhabditis elegans CLHM-1 at resolutions of 2.66, 3.4, and 3.6 Å, respectively. The CALHM1 octamer structure reveals that the N-terminal helix forms the constriction site at the channel pore in the open state and modulates the ATP conductance. The CALHM2 undecamer and CLHM-1 nonamer structures show the different oligomeric stoichiometries among CALHM homologs. We further report the cryo-EM structures of the chimeric construct, revealing that the intersubunit interactions at the transmembrane domain (TMD) and the TMD-intracellular domain linker define the oligomeric stoichiometry. These findings advance our understanding of the ATP conduction and oligomerization mechanisms of CALHM channels.

SUBMITTER: Demura K 

PROVIDER: S-EPMC7439320 | biostudies-literature | 2020 Jul

REPOSITORIES: biostudies-literature

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Cryo-EM structures of calcium homeostasis modulator channels in diverse oligomeric assemblies.

Demura Kanae K   Kusakizako Tsukasa T   Shihoya Wataru W   Hiraizumi Masahiro M   Nomura Kengo K   Shimada Hiroto H   Yamashita Keitaro K   Nishizawa Tomohiro T   Taruno Akiyuki A   Nureki Osamu O  

Science advances 20200717 29


Calcium homeostasis modulator (CALHM) family proteins are Ca<sup>2+</sup>-regulated adenosine triphosphate (ATP)-release channels involved in neural functions including neurotransmission in gustation. Here, we present the cryo-electron microscopy (EM) structures of killifish CALHM1, human CALHM2, and <i>Caenorhabditis elegans</i> CLHM-1 at resolutions of 2.66, 3.4, and 3.6 Å, respectively. The CALHM1 octamer structure reveals that the N-terminal helix forms the constriction site at the channel p  ...[more]

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