RRC ID 53494
著者 Ma Z, Tanis JE, Taruno A, Foskett JK.
タイトル Calcium homeostasis modulator (CALHM) ion channels.
ジャーナル Pflugers Arch
Abstract Calcium homeostasis modulator 1 (CALHM1), formerly known as FAM26C, was recently identified as a physiologically important plasma membrane ion channel. CALHM1 and its Caenorhabditis elegans homolog, CLHM-1, are regulated by membrane voltage and extracellular Ca(2+) concentration ([Ca(2+)]o). In the presence of physiological [Ca(2+)]o (∼1.5 mM), CALHM1 and CLHM-1 are closed at resting membrane potentials but can be opened by strong depolarizations. Reducing [Ca(2+)]o increases channel open probability, enabling channel activation at negative membrane potentials. Together, voltage and Ca(2+) o allosterically regulate CALHM channel gating. Through convergent evolution, CALHM has structural features that are reminiscent of connexins and pannexins/innexins/LRRC8 (volume-regulated anion channel (VRAC)) gene families, including four transmembrane helices with cytoplasmic amino and carboxyl termini. A CALHM1 channel is a hexamer of CALHM1 monomers with a functional pore diameter of ∼14 Å. CALHM channels discriminate poorly among cations and anions, with signaling molecules including Ca(2+) and ATP able to permeate through its pore. CALHM1 is expressed in the brain where it plays an important role in cortical neuron excitability induced by low [Ca(2+)]o and in type II taste bud cells in the tongue that sense sweet, bitter, and umami tastes where it functions as an essential ATP release channel to mediate nonsynaptic neurotransmitter release. CLHM-1 is expressed in C. elegans sensory neurons and body wall muscles, and its genetic deletion causes locomotion defects. Thus, CALHM is a voltage- and Ca(2+) o-gated ion channel, permeable to large cations and anions, that plays important roles in physiology.
巻・号 468(3)
ページ 395-403
公開日 2016-3-1
DOI 10.1007/s00424-015-1757-6
PII 10.1007/s00424-015-1757-6
PMID 26603282
PMC PMC5308871
MeSH Animals Calcium / metabolism* Calcium Channels / chemistry Calcium Channels / genetics Calcium Channels / metabolism* Connexins / chemistry Connexins / genetics Connexins / metabolism Humans Ion Channel Gating* Ion Channels / chemistry Ion Channels / genetics Ion Channels / metabolism* Membrane Glycoproteins / chemistry Membrane Glycoproteins / genetics Membrane Glycoproteins / metabolism* Sensory Receptor Cells / metabolism Sensory Receptor Cells / physiology Signal Transduction
IF 3.158
引用数 29
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