University of Edinburgh/British Heart Foundation Centre for Cardiovascular Science, The University of Edinburgh , Edinburgh , United Kingdom.
Am J Physiol Renal Physiol. 2018 May 1;314(5):F820-F831. doi: 10.1152/ajprenal.00354.2017. Epub 2017 Dec 20.
The cortical collecting duct of the mammalian kidney plays a critical role in the regulation of body volume, sodium pH, and osmolarity and is composed of two distinct cells types, principal cells and intercalated cells. Each cell type is detectable in the kidney by the localization of specific transport proteins such as aquaporin 2 (Aqp2) and epithelial sodium channel (ENaC) in principal cells and V-ATPase B1 and connexin 30 (Cx30) in intercalated cells. mCCD cells have been widely used as a mouse principal cell line on the basis of their physiological characteristics. In this study, the mCCD parental cell line and three sublines cloned from isolated single cells (Ed1, Ed2, and Ed3) were grown on filters to assess their transepithelial resistance, transepithelial voltage, equivalent short circuit current and expression of the cell-specific markers Aqp2, ENaC, V-ATPaseB1, and Cx30. The parental mCCD cell line presented amiloride-sensitive electrogenic sodium transport indicative of principal cell function; however, immunocytochemistry and RT-PCR showed that some cells expressed the intercalated cell-specific markers V-ATPase B1 and Cx30, including a subset of cells also positive for Aqp2 and ENaC. The three subclonal lines contained cells that were positive for both intercalated and principal cell-specific markers. The vertical transmission of both principal and intercalated cell characteristics via single cell cloning reveals the plasticity of mCCD cells and a direct lineage relationship between these two physiologically important cell types and is consistent with mCCD cells being precursor cells.
哺乳动物肾脏的皮质集合管在调节体液量、pH 值和渗透压方面起着关键作用,由两种不同的细胞类型组成,即主细胞和闰细胞。通过特定转运蛋白的定位,如主细胞中的水通道蛋白 2(Aqp2)和上皮钠通道(ENaC),以及闰细胞中的 V-ATPase B1 和连接蛋白 30(Cx30),可以在肾脏中检测到每种细胞类型。mCCD 细胞已被广泛用作基于其生理特征的小鼠主细胞系。在这项研究中,mCCD 亲本细胞系和从分离的单个细胞克隆的三个亚系(Ed1、Ed2 和 Ed3)在滤器上生长,以评估它们的跨上皮电阻、跨上皮电压、等效短路电流和细胞特异性标志物 Aqp2、ENaC、V-ATPaseB1 和 Cx30 的表达。亲本 mCCD 细胞系表现出阿米洛利敏感的电致钠转运,表明其具有主细胞功能;然而,免疫细胞化学和 RT-PCR 显示,一些细胞表达闰细胞特异性标志物 V-ATPase B1 和 Cx30,包括一部分细胞也对 Aqp2 和 ENaC 呈阳性。三个亚克隆系包含同时表达闰细胞和主细胞特异性标志物的细胞。通过单细胞克隆传递主细胞和闰细胞特征表明 mCCD 细胞具有可塑性,并且这两种重要生理细胞类型之间存在直接的谱系关系,这与 mCCD 细胞是前体细胞一致。