4.3 Article

Signaling proteins in raft-like microdomains are essential for Ca2+ wave propagation in glial cells

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CELL CALCIUM
卷 41, 期 2, 页码 155-167

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ELSEVIER SCI LTD
DOI: 10.1016/j.ceca.2006.06.006

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calcium signaling; lipid rafts; wave propagation; glial cells

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The hypothesis that calcium signaling proteins segregate into lipid raft-like microdomains was tested in isolated membranes of rat oligodendrocyte progenitor (OP) cells and astrocytes using Triton X-100 solubilization and density gradient centrifugation. Western blot analysis of gradient fractions showed co-localization of caveolin-1 with proteins involved in the Ca2+ signaling cascade. These included agonist receptors, P2Y(1), and M-1, TRPC1, IP(3)R2, ryanodine receptor, as well as the G protein G alpha(q) and Homer. Membranes isolated from agonist-stimulated astrocytes showed an enhanced recruitment of phospholipase C (PLC beta 1), IP(3)R2 and protein kinase C (PKC-alpha) into lipid raft fractions. IP3R2, TRPC1 and Homer co-immunoprecipitated, suggesting protein-protein interactions. Disruption of rafts by cholesterol depletion using methyl-p-cyclodextrin (beta-MCD) altered the distribution of caveolin-1 and GM1 to non-raft fractions with higher densities. beta-MCD-induced disruption of rafts inhibited agonist-evoked Ca2+ wave propagation in astrocytes and attenuated wave speeds. These results indicate that in glial cells, Ca2+ signaling proteins might exist in organized membrane microdomains, and these complexes may include proteins from different cellular membrane systems. Such an organization is essential for Ca2+ wave propagation. (c) 2006 Elsevier Ltd. All rights reserved.

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