A transformed human epithelial cell line that retains tight junctions post crisis.

A L Cozens, M J Yezzi, M Yamaya, D Steiger, J A Wagner, S S Garber, L Chin, E M Simon, G R Cutting, P Gardner
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引用次数: 72

Abstract

The successful establishment of a postcrisis SV-40 T antigen transformed epithelial cell line, 1HAEo-, which retains tight junctions and vectorial ion transport, is described. Immunocytochemical analysis of 1HAEo- cells shows a defined pattern of cytokeratin staining and a characteristic pericellular localization of the adhesion molecule cellCAM 120/80, indicating the presence of junctional complexes. The presence of both tight junctions and desmosomes has been confirmed by electron microscopy. Cell monolayers have good transepithelial resistance measured in Ussing chambers. Cells increase chloride ion transport in response to addition of agents that raise either intracellular cAMP or calcium, measured either by 36Cl- efflux or whole-cell patch clamp. An increase in short-circuit current, in response to these agents, can be measured in Ussing chambers. The presence of a depolarization-induced outwardly rectifying 45 pS chloride channel has been demonstrated in single cell detached membrane patches. In addition, the cells have been found to express mucin mRNA. These cells therefore demonstrate that it is possible to select transformed cell clones with particular morphologic characteristics, i.e. the presence of tight junctions and cell polarity, which also retain useful epithelial cell-specific functions, including vectorial ion transport. They also provide a major resource for the study of the structure and function of human epithelia.

一种转化的人上皮细胞系,在危机后保持紧密连接。
成功建立危机后SV-40 T抗原转化上皮细胞系,1HAEo-,保持紧密连接和载体离子运输,描述。免疫细胞化学分析显示1HAEo-细胞有明确的细胞角蛋白染色模式和粘附分子细胞cam 120/80的特征性细胞周定位,表明存在连接复合物。电镜证实了紧密连接和桥粒的存在。单层细胞具有良好的跨上皮阻力在使用室测量。通过36Cl-外排或全细胞膜片钳测量,细胞增加氯离子运输是对增加细胞内cAMP或钙的试剂的反应。短路电流的增加,作为对这些试剂的反应,可以在使用室中测量。在单细胞分离膜斑块中已经证明了去极化诱导的向外整流45 pS氯离子通道的存在。此外,还发现这些细胞表达粘蛋白mRNA。因此,这些细胞表明,选择具有特定形态特征的转化细胞克隆是可能的,即紧密连接和细胞极性的存在,也保留了有用的上皮细胞特异性功能,包括载体离子运输。它们也为研究人类上皮的结构和功能提供了重要的资源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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