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Src Signaling Links Mediators of Inflammation to Cx43 Gap Junction Channels in Primary and Transformed CFTR-Expressing Airway Cells

机译:Src信号传导将炎症介导因子连接至表达CFTR的原代和转化气道细胞中的Cx43间隙连接通道。

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Dysfunction of the cystic fibrosis transmembrane conductance regulator (CFTR) is associated with recurrent pulmonary infections and inflammation. We previously reported that tumor necrosis factor (TNF)-α decreases gap junction connectivity in cell lines derived from the airway epithelium of non-cystic fibrosis (non-CF) subjects, a mechanism that was defective in cells derived from CF patients, and identified the tyrosine kinase c-Src as a possible bridge between TNF-α and Cx43. To examine whether this modulation also takes place in primary epithelial cells, the functional expression of Cx43 was studied in non-CF and CF airway cells, obtained from surgical polypectomies and turbinectomies, which were grown either on culture dishes or permeable filters. Expression of Cx43 was detected by immunofluorescence on cells grown under both culture conditions. Non-CF and CF airway cells also showed inter-cellular diffusion of Lucifer Yellow. Dye coupling was rapidly abolished in non-CF cells in the presence of TNF-α, lipopolysaccharide and lysophosphatidic acid, and could be prevented by tyrphostin47, an inhibitor of Src tyrosine kinases. This down-regulation, however, was not detected in CF airway cells. These data indicate that CFTR dysfunction is associated with altered Src signaling, resulting in the persistence of gap junction connectivity in primary and transformed CF airway cells.
机译:囊性纤维化跨膜电导调节器(CFTR)的功能障碍与复发性肺部感染和炎症相关。我们先前曾报道肿瘤坏死因子(TNF)-α降低了非囊性纤维化(non-CF)受试者气道上皮来源的细胞系中的间隙连接连通性,这种机制在源自CF患者的细胞中存在缺陷,并且已被鉴定酪氨酸激酶c-Src作为TNF-α和Cx43之间的可能桥梁。为了检查这种调节是否也发生在原代上皮细胞中,研究了在非CF和CF气道细胞中Cx43的功能表达,这些气道细胞是从外科多镜和透支切开术中获得的,这些细胞生长在培养皿或可渗透滤器上。通过在两种培养条件下生长的细胞上的免疫荧光检测Cx43的表达。非CF和CF气道细胞也显示出路西法黄的细胞间扩散。在存在TNF-α,脂多糖和溶血磷脂酸的情况下,染料在非CF细胞中的结合迅速消失,并且可以被Src酪氨酸激酶抑制剂tyrphostin47阻止。但是,在CF气道细胞中未检测到这种下调。这些数据表明,CFTR功能障碍与Src信号传导改变有关,导致原发性和转化CF气道细胞中间隙连接的持续存在。

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