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首页> 外文期刊>Journal of the American Society of Nephrology: JASN >Upregulation of Urea Transporter UT-A2 and Water Channels AQP2 and AQP3 in Mice Lacking Urea Transporter UT-B
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Upregulation of Urea Transporter UT-A2 and Water Channels AQP2 and AQP3 in Mice Lacking Urea Transporter UT-B

机译:缺乏尿素转运蛋白UT-B的小鼠中尿素转运蛋白UT-A2和水通道AQP2和AQP3的上调

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ABSTRACT. The UT-B urea transporter is the major urea transporter in red blood cells and kidney descending vasa recta. Humans and mice that lack UT-B have a mild urine-concentrating defect. Whether deletion of UT-B altered the expression of other transporter proteins involved in urinary concentration was tested. Fluorescence-based real-time reverse transcriptiona€“PCR and Northern blot analysis showed upregulation of the UT-A2 urea transporter and the aquaporin 2 (AQP2) and AQP3 water channel transcripts but no change in other urea transporters or AQP. Western blot analysis showed that UT-A2 protein abundance in the outer medulla of UT-B null mice increased to 122 ?± 6% of wild-type control. AQP2 protein abundance increased to 177 ?± 32% and 127 ?± 7% in the outer and inner medulla, respectively, of UT-B null versus wild-type mice. The abundance of UT-A1, AQP1, renal outer medullary potassium channel, and NKCC2/BSC1 proteins were not significantly different between UT-B null and wild-type mice. The increases in AQP2 and AQP3 would reduce water loss and improve concentrating ability. The lack of UT-B does not result in a change in expression of urea transporters involved in urea reabsorption from the inner medullary collecting duct (UT-A1 and UT-A3). However, UT-B null mice have a selective increase in UT-A2 protein abundance. This may be an adaptive response to the loss of UT-B, because UT-B and UT-A2 are involved in different intrarenal urea recycling pathways.
机译:抽象。 UT-B尿素转运蛋白是红细胞和肾脏降支血管直肠的主要尿素转运蛋白。缺乏UT-B的人和小鼠有轻度的尿液浓缩缺陷。测试了UT-B的缺失是否改变了与尿液浓度有关的其他转运蛋白的表达。基于荧光的实时逆转录PCR和Northern印迹分析显示UT-A2尿素转运蛋白和水通道蛋白2(AQP2)和AQP3水通道转录物上调,但其他尿素转运蛋白或AQP没有变化。 Western印迹分析表明,UT-B无效小鼠的髓质中UT-A2蛋白的丰度增加到野生型对照的122?±6%。与野生型小鼠相比,UT-B无效小鼠的外和内髓质中AQP2蛋白的丰度分别增加到177±32%和127±±7%。 UT-B空小鼠和野生型小鼠的UT-A1,AQP1,肾外髓质钾通道和NKCC2 / BSC1蛋白的丰度没有显着差异。 AQP2和AQP3的增加将减少水分流失并提高浓缩能力。缺乏UT-B不会导致参与尿素从内髓收集管(UT-A1和UT-A3)重新吸收的尿素转运蛋白表达的变化。但是,UT-B null小鼠的UT-A2蛋白丰度选择性增加。这可能是对UT-B丢失的适应性反应,因为UT-B和UT-A2参与了不同的肾内尿素回收途径。

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