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首页> 外文期刊>American Journal of Physiology >Renal salt wasting and chronic dehydration in claudin-7-deficient mice.
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Renal salt wasting and chronic dehydration in claudin-7-deficient mice.

机译:克劳丁-7缺乏小鼠肾盐浪费和慢性脱水。

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摘要

Claudin-7, a member of the claudin family, is highly expressed in distal nephrons of kidneys and has been reported to be involved in the regulation of paracellular Cl(-) permeability in cell cultures. To investigate the role of claudin-7 in vivo, we generated claudin-7 knockout mice (Cln7(-/-)) by the gene-targeting deletion method. Here we report that Cln7(-/-) mice were born viable, but died within 12 days after birth. Cln7(-/-) mice showed severe salt wasting, chronic dehydration, and growth retardation. We found that urine Na(+), Cl(-), and K(+) were significantly increased in Cln7(-/-) mice compared with that of Cln7(+/+) mice. Blood urea nitrogen and hematocrit were also significantly higher in Cln7(-/-) mice. The wrinkled skin was evident when Cln7(-/-) mice were approximately 1 wk old, indicating that they suffered from chronic fluid loss. Transepidermal water loss measurements showed no difference between Cln7(+/+) and Cln7(-/-) skin, suggesting that there was no transepidermal water barrier defect in Cln7(-/-) mice. Claudin-7 deletion resulted in the dramatic increase of aldosterone synthase mRNA level as early as 2 days after birth. The significant increases of epithelial Na(+) channel alpha, Na(+)-Cl(-) cotransporter, and aquaporin 2 mRNA levels revealed a compensatory response to the loss of electrolytes and fluid in Cln7(-/-) mice. Na(+)-K(+)-ATPase alpha(1) expression level was also greatly increased in distal convoluted tubules and collecting ducts where claudin-7 is normally expressed. Our study demonstrates that claudin-7 is essential for NaCl homeostasis in distal nephrons, and the paracellular ion transport pathway plays indispensable roles in keeping ionic balance in kidneys.
机译:Claudin-7是克劳丁家族的成员,在肾脏的远端肾脏中高度表达,并据报道涉及细胞培养物中肺细胞Cl( - )渗透性的调节。为了探讨Claudin-7在体内的作用,我们通过基因靶向缺失方法产生Claudin-7敲除小鼠(ClN7( - / - ))。在这里,我们举报了CLN7( - / - )小鼠出生了可行,但在出生后12天内死亡。 CLN7( - / - )小鼠显示出严重的盐浪费,慢性脱水和生长迟缓。我们发现,与CLN7(+ / +)小鼠相比,ClN7( - / - )小鼠中尿Na(+),Cl( - )和K(+)显着增加。 ClN7( - / - )小鼠中血尿尿素氮和血细胞比容也显着较高。当ClN7( - / - )小鼠约为1周龄时,皱纹的皮肤很明显,表明它们患有慢性液体损失。 TRANSEPIDERMAL水损测量显示CLN7(+ / +)和CLN7( - / - )皮肤之间没有差异,表明CLN7( - / - )小鼠中没有TRANSEPIDAMAL水屏障缺陷。克劳丁-7缺失导致醛固酮合酶mRNA水平的显着增加,早在出生后2天。上皮Na(+)通道α,Na(+) - Cl( - )COT转折,AQUAPORIN 2 mRNA水平的显着增加显示了对CLN7(/ - / - )小鼠的电解质和液体丧失的补偿响应。 Na(+) - k(+) - ATPaseα(1)表达水平在远侧卷积小管中也大大增加,并且在通常表达CLAUDIN-7的收集管道上也大大增加。我们的研究表明,Claudin-7对于远端肾脏的NaCl稳态至关重要,并且荚膜离子运输途径在保持肾脏中的离子平衡方面发挥不可或缺的作用。

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