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Junctional abnormalities in human airway epithelial cells expressing F508del CFTR

机译:表达F508del CFTR的人气道上皮细胞的连接异常

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摘要

Cystic fibrosis (CF) has a profound impact on airway physiology. Accumulating evidence suggests that intercellular junctions are impaired in CF. We examined changes to CF transmembrane conductance regulator (CFTR) function, tight junctions, and gap junctions in NuLi-1 (CFTRwt/wt) and CuFi-5 (CFTRΔF508/ΔF508) cells. Cells were studied at air-liquid interface (ALI) and compared with primary human bronchial epithelial cells. On the basis of fluorescent lectin binding, the phenotype of the NuLi-1 and CuFi-5 cells at week 8 resembled that of serous, glycoprotein-rich airway cells. After week 7, CuFi-5 cells possessed 130% of the epithelial Na+ channel activity and 17% of the CFTR activity of NuLi-1 cells. In both cell types, expression levels of CFTR were comparable to those in primary airway epithelia. Transepithelial resistance of NuLi-1 and CuFi-5 cells stabilized during maturation in ALI culture, with significantly lower transepithelial resistance for CuFi-5 than NuLi-1 cells. We also found that F508del CFTR negatively affects gap junction function in the airway. NuLi-1 and CuFi-5 cells express the connexins Cx43 and Cx26. While both connexins were properly trafficked by NuLi-1 cells, Cx43 was mistrafficked by CuFi-5 cells. Cx43 trafficking was rescued in CuFi-5 cells treated with 4-phenylbutyric acid (4-PBA), as assessed by intracellular dye transfer. 4-PBA-treated CuFi-5 cells also exhibited an increase in forskolin-induced CFTR-mediated currents. The Cx43 trafficking defect was confirmed using IB3-1 cells and found to be corrected by 4-PBA treatment. These data support the use of NuLi-1 and CuFi-5 cells to examine the effects of F508del CFTR expression on tight junction and gap junction function in the context of serous human airway cells.
机译:囊性纤维化(CF)对气道生理有深远影响。越来越多的证据表明,CF中细胞间连接受损。我们研究了NuLi-1(CFTR wt / wt )和CuFi-5(CFTR ΔF508/ΔF508)细胞。在气液界面(ALI)上研究了细胞,并与人类原代支气管上皮细胞进行了比较。基于荧光凝集素结合,在第8周时NuLi-1和CuFi-5细胞的表型类似于浆液,富含糖蛋白的气道细胞。第7周后,CuFi-5细胞具有NuLi-1细胞上皮Na + 通道活性的130%和CFTR活性的17%。在两种细胞类型中,CFTR的表达水平均与原发气道上皮中的表达水平相当。在ALI培养物中,NuLi-1和CuFi-5细胞的跨上皮抵抗力稳定,并且对CuFi-5的跨上皮抵抗力明显低于NuLi-1细胞。我们还发现F508del CFTR对气道间隙连接功能产生负面影响。 NuLi-1和CuFi-5细胞表达连接蛋白Cx43和Cx26。虽然这两种连接蛋白均被NuLi-1细胞适当地转运,但Cx43被CuFi-5细胞误转运了。通过细胞内染料转移评估,在用4-苯基丁酸(4-PBA)处理的CuFi-5细胞中挽救了Cx43转运。 4-PBA处理的CuFi-5细胞还表现出毛喉素诱导的CFTR介导的电流增加。使用IB3-1细胞确认了Cx43转运缺陷,并通过4-PBA处理得以纠正。这些数据支持使用NuLi-1和CuFi-5细胞来检查F508del CFTR表达在浆液性人类气道细胞中对紧密连接和间隙连接功能的影响。

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