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首页> 外文期刊>Pulmonary pharmacology & therapeutics >DeltaF508 CFTR processing correction and activity in polarized airway and non-airway cell monolayers.
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DeltaF508 CFTR processing correction and activity in polarized airway and non-airway cell monolayers.

机译:DeltaF508 CFTR在极化气道和非气道细胞单层中的处理校正和活性。

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摘要

We examined the activity of DeltaF508 cystic fibrosis transmembrane conductance regulator (CFTR) stably expressed in polarized cystic fibrosis bronchial epithelial cells (CFBE41o(-)) human airway cells and Fisher Rat Thyroid (FRT) cells following treatment with low temperature and a panel of small molecule correctors of DeltaF508 CFTR misprocessing. Corr-4a increased DeltaF508 CFTR-dependent Cl(-) conductance in both cell types, whereas treatment with VRT-325 or VRT-640 increased activity only in FRT cells. Total currents stimulated by forskolin and genistein demonstrated similar dose/response effects to Corr-4a treatment in each cell type. When examining the relative contribution of forskolin and genistein to total stimulated current, CFBE41o(-) cells had smaller forskolin-stimulated I(sc) following either low temperature or corr-4a treatment (10-30% of the total I(sc) produced by the combination of both CFTR agonists). In contrast, forskolin consistently contributed greater than 40% of total I(sc) in DeltaF508 CFTR-expressing FRT cells corrected with low temperature, and corr-4a treatment preferentially enhanced forskolin dependent currents only in FRT cells (60% of total I(sc)). DeltaF508 CFTR cDNA transcript levels, DeltaF508 CFTR C band levels, or cAMP signaling did not account for the reduced forskolin response in CFBE41o(-) cells. Treatment with non-specific inhibitors of phosphodiesterases (papaverine) or phosphatases (endothall) did not restore DeltaF508 CFTR activation by forskolin in CFBE41o(-) cells, indicating that the Cl(-) transport defect in airway cells is distal to cAMP or its metabolism. The results identify important differences in DeltaF508 CFTR activation in polarizing epithelial models of CF, and have important implications regarding detection of rescued of DeltaF508 CFTR in vivo.
机译:我们检查了低温和一组小剂量治疗后稳定在极化囊性纤维化支气管上皮细胞(CFBE41o(-))人气道细胞和Fisher大鼠甲状腺(FRT)细胞中稳定表达的DeltaF508囊性纤维化跨膜电导调节器(CFTR)的活性。 DeltaF508 CFTR错误处理的分子校正剂。在两种细胞类型中,Corr-4a均可增加DeltaF508 CFTR依赖的Cl(-)电导,而仅使用FRT-325细胞进行VRT-325或VRT-640的处理可提高活性。在每种细胞类型中,福司柯林和染料木黄酮刺激的总电流显示出与Corr-4a处理相似的剂量/响应效应。当检查佛司可林和染料木黄酮对总刺激电流的相对贡献时,经过低温或corr-4a处理后,CFBE41o(-)细胞的佛司可林刺激的I(sc)较小(占总I(sc)的10-30%)两种CFTR激动剂的组合)。相反,在经过低温校正的DeltaF508 CFTR表达FRT细胞中,佛司可林持续贡献了总I(sc)的40%以上,而corr-4a处理仅在FRT细胞中优先增强了佛司可林依赖性电流(总I(sc)的60% ))。 DeltaF508 CFTR cDNA转录水平,DeltaF508 CFTR C带水平或cAMP信号传导不能解释CFBE41o(-)细胞中毛喉素应答的降低。用磷酸二酯酶(罂粟碱)或磷酸酶(内皮索尔)的非特异性抑制剂治疗不能恢复福斯科林在CFBE41o(-)细胞中的DeltaF508 CFTR活化,表明气道细胞中的Cl(-)转运缺陷位于cAMP或其代谢的远端。结果确定了CF极化上皮模型中DeltaF508 CFTR激活的重要差异,并且对体内DeltaF508 CFTR的抢救检测具有重要意义。

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