Tenenhouse Harriet S, Martel Josée, Gauthier Claude, Segawa Hiroko, Miyamoto Ken-ichi
Department of Pediatrics, McGill University, Montreal, Quebec H3Z 2Z3, Canada.
Am J Physiol Renal Physiol. 2003 Dec;285(6):F1271-8. doi: 10.1152/ajprenal.00252.2003. Epub 2003 Sep 2.
The present study was undertaken to define the mechanisms governing the regulation of the novel renal brush-border membrane (BBM) Na-phosphate (Pi) cotransporter designated type IIc (Npt2c). To address this issue, the renal expression of Npt2c was compared in two hypophosphatemic mouse models with impaired renal BBM Na-Pi cotransport. In mice homozygous for the disrupted Npt2a gene (Npt2-/-), BBM Npt2c protein abundance, relative to actin, was increased 2.8-fold compared with Npt2+/+ littermates, whereas a corresponding increase in renal Npt2c mRNA abundance, relative to beta-actin, was not evident. In contrast, in X-linked Hyp mice, which harbor a large deletion in the Phex gene, the renal abundance of both Npt2c protein and mRNA was significantly decreased by 80 and 50%, respectively, relative to normal littermates. Pi deprivation elicited a 2.5-fold increase in BBM Npt2c protein abundance in Npt2+/+ mice but failed to elicit a further increase in Npt2c protein in Npt2-/- mice. Pi restriction led to an increase in BBM Npt2c protein abundance in both normal and Hyp mice without correcting its renal expression in the mutants. In summary, we report that BBM Npt2c protein expression is differentially regulated in Npt2-/- mice and Hyp mice and that the Npt2c response to low-Pi challenge differs in both hypophosphatemic mouse strains. We demonstrate that Npt2c protein is maximally upregulated in Npt2-/- mice and suggest that Npt2c likely accounts for residual BBM Na-Pi cotransport in the knockout model. Finally, our data indicate that loss of Phex function abrogates renal Npt2c protein expression.
本研究旨在确定调控新型肾刷状缘膜(BBM)IIc型钠-磷酸盐(Pi)共转运体(Npt2c)的机制。为解决这一问题,在两种肾BBM钠-磷共转运受损的低磷血症小鼠模型中比较了Npt2c的肾表达情况。在Npt2a基因敲除纯合子小鼠(Npt2-/-)中,相对于肌动蛋白,BBM Npt2c蛋白丰度与Npt2+/+同窝小鼠相比增加了2.8倍,而相对于β-肌动蛋白,肾Npt2c mRNA丰度的相应增加并不明显。相反,在Phex基因存在大片段缺失的X连锁低磷血症(Hyp)小鼠中,相对于正常同窝小鼠,Npt2c蛋白和mRNA的肾丰度分别显著降低了80%和50%。Pi缺乏使Npt2+/+小鼠的BBM Npt2c蛋白丰度增加了2.5倍,但未能使Npt2-/-小鼠的Npt2c蛋白进一步增加。Pi限制导致正常小鼠和Hyp小鼠的BBM Npt2c蛋白丰度增加,但未纠正突变体中的肾表达。总之,我们报告BBM Npt2c蛋白表达在Npt2-/-小鼠和Hyp小鼠中受到不同调控,并且两种低磷血症小鼠品系中Npt2c对低Pi刺激的反应不同。我们证明Npt2c蛋白在Npt2-/-小鼠中最大程度地上调,并表明Npt2c可能是敲除模型中残余BBM钠-磷共转运的原因。最后,我们的数据表明Phex功能丧失消除了肾Npt2c蛋白表达。