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Most bicarbonate secretion by Calu‐3 cells is mediated by CFTR and independent of pendrin

机译:Calu-3细胞分泌的大部分碳酸氢盐是由CFTR介导的与pendrin无关

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摘要

Bicarbonate plays an important role in airway host defense, however, its transport mechanisms remain uncertain. Here we examined the relative contributions of the anion channel CFTR (cystic fibrosis transmembrane conductance regulator, ABCC7) and the anion exchanger pendrin (SLC26A4) to HCO 3 secretion by the human airway cell line Calu‐3. Pendrin and CFTR were both detected in parental Calu‐3 cells, although mRNA and protein expression appeared higher for CFTR than for pendrin. Targeting pendrin transcripts with lentiviral shRNA reduced pendrin detection by immunofluorescence staining but did not alter the rates of HCO 3 or fluid secretion, HCO 3 transport under pH‐stat conditions, or net HCO 3 flux across basolaterally permeabilized monolayers. Intracellular pH varied with step changes in apical Cl and HCO 3 concentrations in control and pendrin knockdown Calu‐3 cells, but not in CFTR deficient cells. Exposure to the proinflammatory cytokine IL‐4, which strongly upregulates pendrin expression in airway surface epithelia, had little effect on Calu‐3 pendrin expression and did not alter fluid or style="fixed-case">HCO 3 secretion. Similar results were obtained using air–liquid interface and submerged cultures, although style="fixed-case">CFTR and pendrin style="fixed-case">mRNA expression were both lower when cells were cultured under submerged conditions. While the conclusions cannot be extrapolated to other airway epithelia, the present results demonstrate that most style="fixed-case">HCO 3 secretion by Calu‐3 cells is mediated by CFTR.
机译:碳酸氢盐在气道宿主防御中起着重要作用,但是其运输机制仍然不确定。在这里,我们研究了阴离子通道CFTR(囊性纤维化跨膜电导调节剂,ABCC7)和阴离子交换体pendrin(SLC26A4)对人气道细胞系Calu-3分泌HCO 3 -的相对贡献。尽管亲本Calu-3细胞中检出了Pendrin和CFTR,但CFTR的mRNA和蛋白质表达似乎比pendrin高。用慢病毒shRNA靶向pendrin转录本可减少免疫荧光染色检测pendrin的速度,但不会改变pH稳定条件下HCO 3 -或液体分泌,HCO 3 -转运的速率,或穿过基底外侧渗透的单层的净HCO 3 -通量。在对照细胞和Pendrin基因敲低的Calu-3细胞中,细胞内pH随顶端Cl -和HCO 3 -浓度的阶跃变化而变化,而在CFTR缺陷型细胞中则没有。暴露于促炎细胞因子IL-4会强烈上调呼吸道表面上皮细胞中Pendrin的表达,对Calu-3 pendrin的表达影响很小,并且不会改变体液或 style =“ fixed-case”> HCO 3 -分泌物。尽管 style =“ fixed-case”> CFTR 和pendrin style =“ fixed-case”> mRNA 表达均较低,但使用气液界面和水下培养也获得了相似的结果。当细胞在淹没条件下培养时。尽管不能将这些结论推断到其他气道上皮细胞,但目前的结果表明,Calu-3细胞分泌的大多数 style =“ fixed-case”> HCO 3 -分泌是由CFTR。

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