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Aquaporin 11 insufficiency modulates kidney susceptibility to oxidative stress

Authors :
Atochina-Vasserman, Elena N.
Biktasova, Asel
Abramova, Elena
Cheng, Dong-Sheng
Polosukhin, Vasiliy V.
Tanjore, Harikrishna
Takahashi, Saki
Sonoda, Hiroko
Foye, Liberty
Venkov, Christo
Ryzhov, Sergey V.
Novitskiy, Sergey
Shlonimskaya, Natalia
Ikeda, Masahiro
Blackwell, Timothy S.
Lawson, William E.
Gow, Andrew J.
Harris, Raymond C.
Dikov, Mikhail M.
Tchekneva, Elena E.
Source :
American Journal of Physiology - Renal Physiology; May 2013, Vol. 304 Issue: 10 pF1295-F1307, 13p
Publication Year :
2013

Abstract

Aquaporin 11 (AQP11) is a newly described member of the protein family of transport channels. AQP11 associates with the endoplasmic reticulum (ER) and is highly expressed in proximal tubular epithelial cells in the kidney. Previously, we identified and characterized a recessive mutation of the highly conserved Cys227 to Ser227 in mouse AQP11 that caused proximal tubule (PT) injury and kidney failure in mutant mice. The current study revealed induction of ER stress, unfolded protein response, and apoptosis as molecular mechanisms of this PT injury. Cys227Ser mutation interfered with maintenance of AQP11 oligomeric structure. AQP11 is abundantly expressed in the S1 PT segment, a site of major renal glucose flux, and Aqp11mutant mice developed PT-specific mitochondrial injury. Glucose increased AQP11 protein expression in wild-type kidney and upregulation of AQP11 expression by glucose in vitro was prevented by phlorizin, an inhibitor of sodium-dependent glucose transport across PT. Total AQP11 levels in heterozygotes were higher than in wild-type mice but were not further increased in response to glucose. In Aqp11insufficient PT cells, glucose potentiated increases in reactive oxygen species (ROS) production. ROS production was also elevated in Aqp11mutation carriers. Phenotypically normal mice heterozygous for the Aqp11mutation repeatedly treated with glucose showed increased blood urea nitrogen levels that were prevented by the antioxidant sulforaphane or by phlorizin. Our results indicate an important role for AQP11 to prevent glucose-induced oxidative stress in proximal tubules.

Details

Language :
English
ISSN :
1931857x and 15221466
Volume :
304
Issue :
10
Database :
Supplemental Index
Journal :
American Journal of Physiology - Renal Physiology
Publication Type :
Periodical
Accession number :
ejs30377011
Full Text :
https://doi.org/10.1152/ajprenal.00344.2012