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在表型和核型上不同的麦迪逊-达比犬肾细胞克隆对碱性应激的反应不同。

Phenotypically and karyotypically distinct Madin-Darby canine kidney cell clones respond differently to alkaline stress.

作者信息

Wünsch S, Gekle M, Kersting U, Schuricht B, Oberleithner H

机构信息

Department of Physiology, University of Würzburg, Germany.

出版信息

J Cell Physiol. 1995 Jul;164(1):164-71. doi: 10.1002/jcp.1041640121.

Abstract

We isolated two cell clones from the wild-type Madin-Darby canine kidney cell line (MDCK) that resembles renal collecting duct epithelium. Morphology and karyotypes of the two cell clones were evaluated. The MDCK-C7 cell clone morphologically resembles principal cells (polygonal cell shape, flat), while the MDCK-C11 clone resembles intercalated cells (cuboidal cell shape, high). The diploid chromosome number of MDCK-C7 cells is 83.1 +/- 0.2 (n = 139); that for MDCK-C11 cells is 78.8 +/- 0.1 (n = 128). Culture of MDCK-C7 cells in alkaline medium (pH 7.7) induced irreversible phenotypical and genotypical alterations. Transformed MDCK-C7F cells are characterized by two abnormal (biarmed) chromosomes. In contrast, MDCK-C11 cells are not phenotypically altered by alkaline stress. In order to elucidate the role of intracellular pH (pHi) in the transformation process, we measured pHi under control conditions (pH 7.4), after 5 min exposure to alkaline stress ("acute experiment," pH 7.7) and after incubation of the cells in alkaline medium for two weeks ("chronic experiment," pH 7.7). Under control conditions, MDCK-C7 cells maintained pHi at 7.14 +/- 0.01 (n = 154) and MDCK-C11 cells at 7.01 +/- 0.01 (n = 147). Acute alkaline stress increased pHi of both cell types to similar steady-state values. Under chronic alkaline stress, MDCK-C7 cells were unable to maintain intracellular pH within normal limits exhibiting sustained alkalinization, whereas MDCK-C11 cells could successfully regulate pHi. We conclude that wild-type MDCK cells consist of two genetically distinct subpopulations with different morphology and function. Only the MDCK-C7 clone that resembles the principle cell type of renal collecting duct can be transformed by alkaline stress while the MDCK-C11 clone resists this treatment, due to efficient pHi control mechanisms.

摘要

我们从野生型马-达二氏犬肾细胞系(MDCK)中分离出两个细胞克隆,该细胞系类似于肾集合管上皮。对这两个细胞克隆的形态和核型进行了评估。MDCK-C7细胞克隆在形态上类似于主细胞(多边形细胞形状,扁平),而MDCK-C11克隆类似于闰细胞(立方形细胞形状,高)。MDCK-C7细胞的二倍体染色体数为83.1±0.2(n = 139);MDCK-C11细胞的二倍体染色体数为78.8±0.1(n = 128)。在碱性培养基(pH 7.7)中培养MDCK-C7细胞会诱导不可逆的表型和基因型改变。转化后的MDCK-C7F细胞的特征是有两条异常(双臂)染色体。相比之下,MDCK-C11细胞在碱性应激下没有表型改变。为了阐明细胞内pH(pHi)在转化过程中的作用,我们在对照条件下(pH 7.4)、暴露于碱性应激5分钟后(“急性实验”,pH 7.7)以及将细胞在碱性培养基中孵育两周后(“慢性实验”,pH 7.7)测量了pHi。在对照条件下,MDCK-C7细胞将pHi维持在7.14±0.01(n = 154),MDCK-C11细胞将pHi维持在7.01±0.01(n = 147)。急性碱性应激使两种细胞类型的pHi升高到相似的稳态值。在慢性碱性应激下,MDCK-C7细胞无法将细胞内pH维持在正常范围内,表现出持续碱化,而MDCK-C11细胞能够成功调节pHi。我们得出结论,野生型MDCK细胞由两个遗传上不同的亚群组成,它们具有不同的形态和功能。只有类似于肾集合管主细胞类型的MDCK-C7克隆可以被碱性应激转化,而MDCK-C11克隆由于有效的pHi控制机制而抵抗这种处理。

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