Common variants in CLDN14 are associated with differential excretion of magnesium over calcium in urine.

Tanguy Corre, Eric Olinger, Sarah E Harris, Michela Traglia, Sheila Ulivi, Stefania Lenarduzzi, Hendrica Belge, Sonia Youhanna, Natsuko Tokonami, Olivier Bonny, Pascal Houillier, Ozren Polasek, Ian J Deary, John M Starr, Daniela Toniolo, Paolo Gasparini, Peter Vollenweider, Caroline Hayward, Murielle Bochud, Olivier Devuyst
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Abstract

The nature and importance of genetic factors regulating the differential handling of Ca2+ and Mg2+ by the renal tubule in the general population are poorly defined. We conducted a genome-wide meta-analysis of urinary magnesium-to-calcium ratio to identify associated common genetic variants. We included 9320 adults of European descent from four genetic isolates and three urban cohorts. Urinary magnesium and calcium concentrations were measured centrally in spot urine, and each study conducted linear regression analysis of urinary magnesium-to-calcium ratio on ~2.5 million single-nucleotide polymorphisms (SNPs) using an additive model. We investigated, in mouse, the renal expression profile of the top candidate gene and its variation upon changes in dietary magnesium. The genome-wide analysis evidenced a top locus (rs172639, p = 1.7 × 10-12), encompassing CLDN14, the gene coding for claudin-14, that was genome-wide significant when using urinary magnesium-to-calcium ratio, but not either one taken separately. In mouse, claudin-14 is expressed in the distal nephron segments specifically handling magnesium, and its expression is regulated by chronic changes in dietary magnesium content. A genome-wide approach identified common variants in the CLDN14 gene exerting a robust influence on the differential excretion of Mg2+ over Ca2+ in urine. These data highlight the power of urinary electrolyte ratios to unravel genetic determinants of renal tubular function. Coupled with mouse experiments, these results support a major role for claudin-14, a gene associated with kidney stones, in the differential paracellular handling of divalent cations by the renal tubule.

CLDN14的常见变异与尿中镁多于钙的排泄差异有关。
在一般人群中,调节肾小管对Ca2+和Mg2+处理差异的遗传因素的性质和重要性尚不清楚。我们对尿镁钙比进行了全基因组荟萃分析,以确定相关的常见遗传变异。我们纳入了来自4个遗传分离株和3个城市队列的9320名欧洲裔成年人。尿镁和钙浓度在尿样中集中测量,每项研究使用加性模型对约250万个单核苷酸多态性(snp)进行尿镁钙比的线性回归分析。我们在小鼠中研究了该候选基因的肾脏表达谱及其随膳食镁含量变化的变化。全基因组分析证实了一个顶层位点(rs172639, p = 1.7 × 10-12),包含CLDN14, CLDN14是编码claudin-14的基因,当使用尿镁钙比时,该位点在全基因组范围内显著,但单独使用任何一个位点都不显著。在小鼠中,claudin-14在处理镁的远端肾单元段表达,其表达受膳食镁含量的慢性变化调控。一种全基因组方法确定了CLDN14基因的常见变异,对尿中Mg2+与Ca2+的排泄差异产生强大的影响。这些数据强调了尿电解质比率揭示肾小管功能遗传决定因素的力量。结合小鼠实验,这些结果支持了claudin-14(一种与肾结石相关的基因)在肾小管对二价阳离子的细胞旁处理差异中的主要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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