FS 1-Meena etal-CellReports 2022
收藏DataCite Commons2022-06-15 更新2024-08-17 收录
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https://figshare.com/articles/dataset/FS_1-Meena_etal-CellReports_2022/13299158
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Intestinal epithelial tight junction disruption is a primary contributing factor in alcohol-associated endotoxemia, systemic inflammation, and multiple organ damage. Ethanol and acetaldehyde disrupt tight junctions by elevating intracellular Ca2+. Here we identify TRPV6, a Ca2+-permeable channel, as responsible for alcohol-induced elevation of intracellular Ca2+, intestinal barrier dysfunction, and systemic inflammation. Ethanol and acetaldehyde elicit TRPV6 ionic currents in Caco-2 cells. Studies in Caco-2 cell monolayers and mouse intestinal organoids show that TRPV6 deficiency or inhibition attenuates ethanol and acetaldehyde-induced Ca2+ influx, tight junction disruption, and barrier dysfunction. Moreover, <em>Trpv6-/-</em> mice are resistant to alcohol-induced intestinal barrier dysfunction. Photoaffinity labeling of 3-Azibutanol identifies a histidine as a potential alcohol-binding site in TRPV6. The substitution of this histidine, and a nearby arginine, reduces ethanol-activated currents. Our findings reveal that TRPV6 is required for alcohol-induced gut barrier dysfunction and inflammation. Molecules that decrease TRPV6 function have the potential to attenuate alcohol-associated tissue injury.
提供机构:
figshare
创建时间:
2020-12-16



