Department of Biomedicine, Aarhus University, Wilhelm Meyers Allé 3, Bldg. 1233/1234, DK-8000 Aarhus C, Denmark.
Am J Physiol Cell Physiol. 2012 May 15;302(10):C1452-9. doi: 10.1152/ajpcell.00285.2011. Epub 2012 Feb 22.
Mutational changes of one transporter can have deleterious effects on epithelial function leaving the cells with the options of either compensating for the loss of function or dedifferentiating. Previous studies have shown that the choroid plexus epithelium (CPE) from mice lacking the Na(+)-dependent Cl(-)/HCO(3)(-) exchanger (NCBE) encoded by Slc4a10 leads to retargeting of the Na(+)/H(+) exchanger 1 (NHE1) from the luminal to the basolateral plasma membrane. We hypothesized that disruption of NCBE, the main basolateral Na(+) importer in the CPE, would lead to a compensatory increase in the abundance of other important transport proteins in this tissue. Aquaporin-1 (AQP1) abundance was 42.7% lower and Na,K-ATPase 36.4% lower in the CPE of Slc4a10 knockout mice, respectively. The NHE1 binding ezrin cytoskeleton appeared disrupted in Slc4a10 knockout mice, whereas no changes were observed in cellular polarization with respect to claudin-2 and appearance of luminal surface microvilli. The renal proximal tubule constitutes a leaky epithelium with high transport rate similar to CPE. Here, Slc4a10 knockout did not affect Na,K-ATPase or AQP1 expression. CPE from AQP1 knockout mice has a secretory defect similar to Slc4a10 mice. However, neither NCBE nor Na,K-ATPase expression was affected in CPE from AQP1 knockout mice. By contrast, the abundance of Na,K-ATPase and NBCe1 was decreased by 23 and 31.7%, respectively, in AQP1 knockout proximal tubules, while the NHE3 abundance was unchanged. In conclusion, CPE lacking NCBE seems to spare the molecular machinery involved in CSF secretion rather than compensate for the loss of the Na(+) loader. Slc4a10 knockout seems to be more deleterious to CPE than AQP1 knockout.
一种转运蛋白的突变变化可能对上皮细胞功能产生有害影响,使细胞要么补偿功能丧失,要么去分化。先前的研究表明,缺乏 Slc4a10 编码的 Na(+)-依赖性 Cl(-)/HCO(3)(-)交换体(NCBE)的小鼠脉络丛上皮(CPE)导致 Na(+)/H(+)交换体 1(NHE1)从腔侧到基底外侧质膜的再靶向。我们假设,NCBE 的破坏,即 CPE 中的主要基底外侧 Na(+)摄取器,会导致该组织中其他重要转运蛋白的丰度代偿性增加。AQP1 的丰度在 Slc4a10 敲除小鼠的 CPE 中降低了 42.7%,而 Na,K-ATPase 则降低了 36.4%。NHE1 结合的 ezrin 细胞骨架在 Slc4a10 敲除小鼠中似乎被破坏,而 Claudin-2 和腔面微绒毛的出现方面没有观察到细胞极化的变化。肾近端小管构成具有高转运率的渗漏上皮,类似于 CPE。在这里,Slc4a10 敲除不影响 Na,K-ATPase 或 AQP1 的表达。AQP1 敲除小鼠的 CPE 具有与 Slc4a10 小鼠相似的分泌缺陷。然而,在 AQP1 敲除小鼠的 CPE 中,NCBE 或 Na,K-ATPase 的表达均不受影响。相比之下,AQP1 敲除近端小管中 Na,K-ATPase 和 NBCe1 的丰度分别降低了 23%和 31.7%,而 NHE3 的丰度不变。总之,缺乏 NCBE 的 CPE 似乎不会补偿 CSF 分泌所涉及的分子机制,而是会补偿 Na(+)加载器的丧失。Slc4a10 敲除似乎比 AQP1 敲除对 CPE 更具危害性。