4.8 Article

Claudin-2 deficiency associates with hypercalciuria in mice and human kidney stone disease

期刊

JOURNAL OF CLINICAL INVESTIGATION
卷 130, 期 4, 页码 1948-1960

出版社

AMER SOC CLINICAL INVESTIGATION INC
DOI: 10.1172/JCI127750

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资金

  1. NIH [P30 DK079238, R01 DK062283, P20 GM130423, F30 DK109605, P01 DK56788, P20 GM104936]
  2. Natural Sciences and Engineering Research Council of Canada [RGPIN 05842]
  3. NIH Common Fund
  4. NCI
  5. NHGRI
  6. NHLBI
  7. NIDA
  8. NIMH
  9. NINDS

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The major risk factor for kidney stone disease is idiopathic hypercalciuria. Recent evidence implicates a role for defective calcium reabsorption in the renal proximal tubule. We hypothesized that claudin-2, a paracellular cation channel protein, mediates proximal tubule calcium reabsorption. We found that claudin-2-null mice have hypercalciuria due to a primary defect in renal tubule calcium transport and papillary nephrocalcinosis that resembles the intratubular plugs in kidney stone formers. Our findings suggest that a proximal tubule defect in calcium reabsorption predisposes to papillary calcification, providing support for the vas washdown hypothesis. Claudin-2-null mice were also found to have increased net intestinal calcium absorption, but reduced paracellular calcium permeability in the colon, suggesting that this was due to reduced intestinal calcium secretion. Common genetic variants in the claudin-2 gene were associated with decreased tissue expression of claudin-2 and increased risk of kidney stones in 2 large population-based studies. Finally, we describe a family in which males with a rare missense variant in claudin-2 have marked hypercalciuria and kidney stone disease. Our findings indicate that claudin-2 is a key regulator of calcium excretion and a potential target for therapies to prevent kidney stones.

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