Wang Weidong, Kwon Tae-Hwan, Li Chunling, Frøkiaer Jørgen, Knepper Mark A, Nielsen Søren
Water and Salt Research Center, University of Aarhus, DK-8000 Aarhus C, Denmark.
Am J Physiol Renal Physiol. 2002 Jan;282(1):F34-44. doi: 10.1152/ajprenal.0101.2001. Epub 2002 Sep 3.
Chronic hypercalcemia (HC) is accompanied by urinary concentration defects, and functional studies indicate defects in the thick ascending limb (TAL). We hypothesize that dysregulation of renal sodium transporters may play an important role in this. Vitamin D-induced HC in rats resulted in polyuria, natriuresis, and phosphaturia. Immunoblotting revealed a marked reduction in the abundance of rat type 1 bumetanide-sensitive Na-K-2Cl cotransporter (BSC-1) in inner stripe of the outer medullary (ISOM; 36 +/- 5%) and whole kidney (51 +/- 11%) in HC. Consistent with this finding, immunocytochemistry and immunoelectron microscopy demonstrated reduced BSC-1 labeling of the apical plasma membrane. Immunoblotting and immunohistochemical labeling of the K channel Kir 1.1 (ROMK) was also reduced in HC. In contrast, there were no reductions in the expression of Na/H exchanger (NHE)3 and Na,K-ATPase in ISOM. The abundance of the proximal tubule type II Na-P(i) cotransporter (NaPi-2) (but not Na,K-ATPase and NHE3) was significantly reduced (25 +/- 4%), consistent with a dramatic increase in urinary phosphate excretion. In conclusion, 1) the reduced abundance of BSC-1 and ROMK in TAL is likely to play a major role in the urinary concentration defects associated with HC and 2) the reduced abundance of NaPi-2 is likely to play a role in the increased urinary phosphate excretion.
慢性高钙血症(HC)伴有尿浓缩功能障碍,功能研究表明在髓袢升支粗段(TAL)存在功能缺陷。我们推测肾钠转运体的失调可能在其中起重要作用。维生素D诱导的大鼠高钙血症导致多尿、利钠和磷酸盐尿。免疫印迹显示,高钙血症大鼠外髓质内带(ISOM;36±5%)和全肾(51±11%)中,1型布美他尼敏感的钠-钾-2氯共转运体(BSC-1)的丰度显著降低。与此发现一致,免疫细胞化学和免疫电子显微镜显示顶端质膜的BSC-1标记减少。高钙血症时,钾通道Kir 1.1(ROMK)的免疫印迹和免疫组织化学标记也减少。相比之下,ISOM中钠/氢交换体(NHE)3和钠钾ATP酶的表达没有降低。近端小管II型钠-磷共转运体(NaPi-2)(而非钠钾ATP酶和NHE3)的丰度显著降低(25±4%),这与尿磷酸盐排泄的显著增加一致。总之,1)TAL中BSC-1和ROMK丰度的降低可能在与高钙血症相关的尿浓缩功能障碍中起主要作用,2)NaPi-2丰度的降低可能在尿磷酸盐排泄增加中起作用。