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  5. Inactivation of paracellular cation-selective claudin-2 channels attenuates immune-mediated experimental colitis in mice
 
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Inactivation of paracellular cation-selective claudin-2 channels attenuates immune-mediated experimental colitis in mice

Journal
Journal of Clinical Investigation
Journal Volume
130
Journal Issue
10
Pages
5197-5208
Date Issued
2020
Author(s)
Raju P.
Shashikanth N.
Tsai P.-Y.
Pongkorpsakol P.
Chanez-Paredes S.
Steinhagen P.R.
WEI-TING KUO  
Singh G.
Tsukita S.
Turner J.R.
DOI
10.1172/JCI138697
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85092232096&doi=10.1172%2fJCI138697&partnerID=40&md5=7e768d5aa8c722b3a5b1303b1e472da3
https://scholars.lib.ntu.edu.tw/handle/123456789/578342
Abstract
The tight junction protein claudin-2 is upregulated in disease. Although many studies have linked intestinal barrier loss to local and systemic disease, these have relied on macromolecular probes. In vitro analyses show, however, that these probes cannot be accommodated by size- and charge-selective claudin-2 channels. We sought to define the impact of claudin-2 channels on disease. Transgenic claudin-2 overexpression or IL-13-induced claudin-2 upregulation increased intestinal small cation permeability in vivo. IL-13 did not, however, affect permeability in claudin-2-knockout mice. Claudin-2 is therefore necessary and sufficient to effect size- and charge-selective permeability increases in vivo. In chronic disease, T cell transfer colitis severity was augmented or diminished in claudin-2-transgenic or -knockout mice, respectively. We translated the in vitro observation that casein kinase-2 (CK2) inhibition blocks claudin-2 channel function to prevent acute, IL-13-induced, claudin-2-mediated permeability increases in vivo. In chronic immune-mediated colitis, CK2 inhibition attenuated progression in claudin-2-sufficient, but not claudin-2-knockout, mice, i.e., the effect was claudin-2 dependent. Paracellular flux mediated by claudin-2 channels can therefore promote immune-mediated colitis progression. Although the mechanisms by which claudin-2 channels intensify disease remain to be defined, these data suggest that claudin-2 may be an accessible target in immune-mediated disorders, including inflammatory bowel disease.
SDGs

[SDGs]SDG3

Publisher
American Society for Clinical Investigation
Type
journal article

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