Schultheis P J, Lorenz J N, Meneton P, Nieman M L, Riddle T M, Flagella M, Duffy J J, Doetschman T, Miller M L, Shull G E
Department of Molecular Genetics, Biochemistry and Microbiology, the University of Cincinnati College of Medicine, Cincinnati, Ohio 45267-0524, USA.
J Biol Chem. 1998 Oct 30;273(44):29150-5. doi: 10.1074/jbc.273.44.29150.
Mutations in the gene encoding the thiazide-sensitive Na+-Cl- cotransporter (NCC) of the distal convoluted tubule cause Gitelman's syndrome, an inherited hypokalemic alkalosis with hypomagnesemia and hypocalciuria. These metabolic abnormalities are secondary to the deficit in NaCl reabsorption, but the underlying mechanisms are unclear. To gain a better understanding of the role of NCC in sodium and fluid volume homeostasis and in the pathogenesis of Gitelman's syndrome, we used gene targeting to prepare an NCC-deficient mouse. Null mutant (Ncc-/-) mice appear healthy and are normal with respect to acid-base balance, plasma electrolyte concentrations, serum aldosterone levels, and blood pressure. Ncc-/- mice retain Na+ as well as wild-type mice when fed a Na+-depleted diet; however, after 2 weeks of Na+ depletion the mean arterial blood pressure of Ncc-/- mice was significantly lower than that of wild-type mice. In addition, Ncc-/- mice exhibited increased renin mRNA levels in kidney, hypomagnesemia and hypocalciuria, and morphological changes in the distal convoluted tubule. These data indicate that the loss of NCC activity in the mouse causes only subtle perturbations of sodium and fluid volume homeostasis, but renal handling of Mg2+ and Ca2+ are altered, as observed in Gitelman's syndrome.
编码远曲小管噻嗪类敏感型钠氯共转运体(NCC)的基因突变会导致吉特曼综合征,这是一种伴有低镁血症和低钙尿症的遗传性低钾性碱中毒。这些代谢异常是由于氯化钠重吸收不足所致,但其潜在机制尚不清楚。为了更好地理解NCC在钠和液体容量稳态以及吉特曼综合征发病机制中的作用,我们利用基因靶向技术制备了NCC缺陷小鼠。纯合突变(Ncc-/-)小鼠看起来健康,在酸碱平衡、血浆电解质浓度、血清醛固酮水平和血压方面均正常。当喂食低钠饮食时,Ncc-/-小鼠与野生型小鼠一样能保留钠离子;然而,在低钠饮食2周后,Ncc-/-小鼠的平均动脉血压显著低于野生型小鼠。此外,Ncc-/-小鼠肾脏中肾素mRNA水平升高,出现低镁血症和低钙尿症,并且远曲小管出现形态学改变。这些数据表明,小鼠中NCC活性的丧失仅导致钠和液体容量稳态的细微扰动,但正如在吉特曼综合征中所观察到的,肾脏对镁离子和钙离子的处理发生了改变。