Le Maout S, Brejon M, Olsen O, Merot J, Welling P A
Department de Biologie Cellulaire et Moleculaire, Centre d'Etudes Saclay, France.
Proc Natl Acad Sci U S A. 1997 Nov 25;94(24):13329-34. doi: 10.1073/pnas.94.24.13329.
We recently cloned an inward-rectifying K channel (Kir) cDNA, CCD-IRK3 (mKir 2.3), from a cortical collecting duct (CCD) cell line. Although this recombinant channel shares many functional properties with the "small-conductance" basolateral membrane Kir channel in the CCD, its precise subcellular localization has been difficult to elucidate by conventional immunocytochemistry. To circumvent this problem, we studied the targeting of several different epitope-tagged CCD-IRK3 in a polarized renal epithelial cell line. Either the 11-amino acid span of the vesicular stomatitis virus (VSV) G glycoprotein (P5D4 epitope) or a 6-amino acid epitope of the bovine papilloma virus capsid protein (AU1) was genetically engineered on the extreme N terminus of CCD-IRK3. As determined by patch-clamp and two-microelectrode voltage-clamp analyses in Xenopus oocytes, neither tag affected channel function; no differences in cation selectivity, barium block, single channel conductance, or open probability could be distinguished between the wild-type and the tagged constructs. MDCK cells were transfected with tagged CCD-IRK3, and several stable clonal cell lines were generated by neomycin-resistance selection. Immunoprecipitation studies with anti-P5D4 or anti-AU1 antibodies readily detected the predicted-size 50-kDa protein in the transfected cells lines but not in wild-type or vector-only (PcB6) transfected MDCK cells. As visualized by indirect immunofluorescence and confocal microscopy, both the tagged CCD-IRK3 forms were exclusively detected on the basolateral membrane. To assure that the VSV G tag was not responsible for the targeting, the P5D4 epitope modified by a site-directed mutagenesis (Y2F) to remove a potential basolateral targeting signal contained in this tag. VSV(Y2F) was also detected exclusively on the basolateral membrane, confirming bona fide IRK3 basolateral expression. These observations, with our functional studies, suggest that CCD-IRK3 may encode the small-conductance CCD basolateral K channel.
我们最近从皮质集合管(CCD)细胞系中克隆了一种内向整流钾通道(Kir)cDNA,即CCD - IRK3(mKir 2.3)。尽管这种重组通道与CCD中“小电导”基底外侧膜Kir通道具有许多功能特性,但其精确的亚细胞定位一直难以通过传统免疫细胞化学方法阐明。为了解决这个问题,我们研究了几种不同表位标记的CCD - IRK3在极化肾上皮细胞系中的靶向作用。在CCD - IRK3的极端N端通过基因工程连接了水泡性口炎病毒(VSV)G糖蛋白的11个氨基酸跨度(P5D4表位)或牛乳头瘤病毒衣壳蛋白的6个氨基酸表位(AU1)。通过非洲爪蟾卵母细胞的膜片钳和双微电极电压钳分析确定,两种标签均不影响通道功能;野生型和标记构建体之间在阳离子选择性、钡阻断、单通道电导或开放概率方面没有差异。用标记的CCD - IRK3转染MDCK细胞,并通过新霉素抗性选择产生了几种稳定的克隆细胞系。用抗P5D4或抗AU1抗体进行的免疫沉淀研究在转染细胞系中很容易检测到预测大小为50 kDa的蛋白,但在野生型或仅转染载体(PcB6)的MDCK细胞中未检测到。通过间接免疫荧光和共聚焦显微镜观察,两种标记的CCD - IRK3形式都仅在基底外侧膜上被检测到。为确保VSV G标签与靶向无关,通过定点诱变(Y2F)修饰P5D4表位以去除该标签中潜在的基底外侧靶向信号。VSV(Y2F)也仅在基底外侧膜上被检测到,证实了IRK3在基底外侧的真实表达。这些观察结果以及我们的功能研究表明,CCD - IRK3可能编码小电导的CCD基底外侧钾通道。