Negri Armando Luis, Del Valle Elisa Elena
Institute for Metabolic Research, Faculty of Medicine, Del Salvador University, Libertad 836, 1 Floor, 1012, Buenos Aires, Argentina.
Int Urol Nephrol. 2022 Sep;54(9):2197-2204. doi: 10.1007/s11255-022-03119-2. Epub 2022 Jan 27.
Paracellular transport in the kidney is mediated by a family of proteins located in the tight junctions called claudins which confers its ionic selectivity. Claudin-2 is highly expressed in the proximal tubule and descending limb of Henle and mediate paracellular reabsorption of sodium and calcium cations. In the thick ascending limb of Henle (TALH) calcium is reabsorbed by a paracellular channel formed by Claudin-16 and-19. Claudin-16 mediates cationic permeability while Claudin-19 increases the cationic selectivity of Claudin-16 by blocking anionic permeability. On the other hand, Claudin 14, that is also located in TALH, inhibits the paracellular permeability of Claudin-16 to calcium. Recent wide genomic association analysis studies have detected four common synonymous variants (genetic polymorphisms of a single nucleotide, SNPs) at the locus of Claudin-14 gene that were significantly associated with the presence of renal lithiasis. Another study of wide genomic association and nephrolithiasis was carried out in the general population but including chromosome X, where claudin-2 gene is located. They detected nine SNPs that had a significant association with renal lithiasis risk. A greater knowledge of the paracellular pathway controlled by claudins and its regulation will allow us to develop future new treatments for idiopathic hypercalciuria and renal lithiasis.
肾脏中的细胞旁转运由位于紧密连接中的一类称为紧密连接蛋白的蛋白质介导,这些蛋白质赋予其离子选择性。紧密连接蛋白-2在近端小管和髓袢降支中高度表达,并介导钠和钙阳离子的细胞旁重吸收。在髓袢升支粗段(TALH),钙通过由紧密连接蛋白-16和-19形成的细胞旁通道被重吸收。紧密连接蛋白-16介导阳离子通透性,而紧密连接蛋白-19通过阻断阴离子通透性增加紧密连接蛋白-16的阳离子选择性。另一方面,同样位于TALH的紧密连接蛋白14抑制紧密连接蛋白-16对钙的细胞旁通透性。最近广泛的基因组关联分析研究在紧密连接蛋白-14基因位点检测到四个常见的同义变体(单核苷酸的基因多态性,SNPs),它们与肾结石的存在显著相关。另一项针对普通人群的广泛基因组关联和肾结石研究,但包括紧密连接蛋白-2基因所在的X染色体。他们检测到九个与肾结石风险显著相关的SNPs。对由紧密连接蛋白控制的细胞旁途径及其调节有更深入的了解,将使我们能够开发出针对特发性高钙尿症和肾结石的未来新疗法。