4.4 Article

Double gene deletion reveals lack of cooperation between claudin 11 and claudin 14 tight junction proteins

期刊

CELL AND TISSUE RESEARCH
卷 333, 期 3, 页码 427-438

出版社

SPRINGER
DOI: 10.1007/s00441-008-0621-9

关键词

tight junction; claudin 11; claudin 14; knockout mouse

资金

  1. Intramural NIH HHS [Z01 DC000039] Funding Source: Medline
  2. NIDCD NIH HHS [Z01-DC-00039-11, R01 DC006262-05, R01 DC006262] Funding Source: Medline

向作者/读者索取更多资源

Members of the claudin family of proteins are the main components of tight junctions (TJs), the major selective barrier of the paracellular pathway between epithelial cells. The selectivity and specificity of TJ strands are determined by the type of claudins present. An understanding of the cooperation between different claudins in various tissues is thus important. To study the possible cooperation between claudin 11 and claudin 14, we have generated claudin 11/claudin 14 double-deficient mice, which exhibit a combination of the phenotypes found in each of the singly deficient mutants, including deafness, neurological deficits, and male sterility. These two claudins have distinct and partially overlapping expression patterns in the kidney. Claudin 11 is located in both the proximal and distal convoluted tubules, whereas claudin 14 occurs in both the thin descending and thick ascending limbs of the loop of Henle and in the proximal convoluted tubules. Although daily urinary excretion of Mg++, and to a lesser extent of Ca++, tends to be higher in claudin 11/claudin 14 double mutants, these changes do not reach statistical significance compared with wild-type animals. Thus, under normal conditions, co-deletion of claudin 11 and claudin 14 does not affect kidney function or ion balance. Our data demonstrate that, despite the importance of each of these claudins, there is probably no functional cooperation between them. Generation of additional mouse models in which different claudins are abolished should provide further insight into the complex interactions between claudin proteins in various physiological systems.

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