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Claudin-21 Has a Paracellular Channel Role at Tight Junctions
Author(s) -
Hiroo Tanaka,
Yasuko Yamamoto,
Hiroka Kashihara,
Yuji Yamazaki,
Kazutoshi Tani,
Yoshinori Fujiyoshi,
Katsuhiko Mineta,
Kosei Takeuchi,
Atsushi Tamura,
Sachiko Tsukita
Publication year - 2016
Publication title -
molecular and cellular biology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.14
H-Index - 327
eISSN - 1067-8824
pISSN - 0270-7306
DOI - 10.1128/mcb.00758-15
Subject(s) - claudin , paracellular transport , tight junction , biology , microbiology and biotechnology , channel (broadcasting) , biophysics , genetics , permeability (electromagnetism) , telecommunications , computer science , membrane
Claudin protein family members, of which there are at least 27 in humans and mice, polymerize to form tight junctions (TJs) between epithelial cells, in a tissue- and developmental stage-specific manner. Claudins have a paracellular barrier function. In addition, certain claudins function as paracellular channels for small ions and/or solutes by forming selective pores at the TJs, although the specific claudins involved and their functional mechanisms are still in question. Here we show for the first time that claudin-21, which is more highly expressed in the embryonic than the postnatal stages, acts as a paracellular channel for small cations, such as Na(+), similar to the typical channel-type claudins claudin-2 and -15. Claudin-21 also allows the paracellular passage of larger solutes. Our findings suggest that claudin-21-based TJs allow the passage of small and larger solutes by both paracellular channel-based and some additional mechanisms.

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