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肌浆网钙转运蛋白 2 调节非囊性纤维化和囊性纤维化气道上皮细胞对臭氧的反应。

SERCA2 regulates non-CF and CF airway epithelial cell response to ozone.

机构信息

Department of Pediatrics, National Jewish Health, Denver, Colorado, United States of America.

出版信息

PLoS One. 2011;6(11):e27451. doi: 10.1371/journal.pone.0027451. Epub 2011 Nov 11.

Abstract

Calcium mobilization can regulate a wide range of essential functions of respiratory epithelium, including ion transport, ciliary beat frequency, and secretion of mucus, all of which are modified in cystic fibrosis (CF). SERCA2, an important controller of calcium signaling, is deficient in CF epithelium. We conducted this study to determine whether SERCA2 deficiency can modulate airway epithelial responses to environmental oxidants such as ozone. This could contribute to the pathogenesis of pulmonary exacerbations, which are important and frequent clinical events in CF. To address this, we used air-liquid interface (ALI) cultures of non-CF and CF cell lines, as well as differentiated cultures of cells derived from non-CF and CF patients. We found that ozone exposure caused enhanced membrane damage, mitochondrial dysfunction and apoptotic cell death in CF airway epithelial cell lines relative to non-CF. Ozone exposure caused increased proinflammatory cytokine production in CF airway epithelial cell lines. Elevated proinflammatory cytokine production also was observed in shRNA-mediated SERCA2 knockdown cells. Overexpression of SERCA2 reversed ozone-induced proinflammatory cytokine production. Ozone-induced proinflammatory cytokine production was NF-κB- dependent. In a stable NF-κB reporter cell line, SERCA2 inhibition and knockdown both upregulated cytomix-induced NF-κB activity, indicating importance of SERCA2 in modulating NF-κB activity. In this system, increased NF-κB activity was also accompanied by increased IL-8 production. Ozone also induced NF-κB activity and IL-8 release, an effect that was greater in SERCA2-silenced NF-κB-reporter cells. SERCA2 overexpression reversed cytomix-induced increased IL-8 release and total nuclear p65 in CFTR-deficient (16HBE-AS) cells. These studies suggest that SERCA2 is an important regulator of the proinflammatory response of airway epithelial cells and could be a potential therapeutic target.

摘要

钙动员可以调节呼吸上皮的多种基本功能,包括离子转运、纤毛摆动频率和黏液分泌,所有这些功能在囊性纤维化 (CF) 中都发生了改变。钙信号的重要控制器 SERCA2 在 CF 上皮中缺乏。我们进行这项研究是为了确定 SERCA2 缺乏是否可以调节气道上皮对环境氧化剂(如臭氧)的反应。这可能有助于肺部恶化的发病机制,肺部恶化是 CF 中的重要且频繁的临床事件。为了解决这个问题,我们使用了非 CF 和 CF 细胞系的气液界面 (ALI) 培养物,以及非 CF 和 CF 患者来源的细胞的分化培养物。我们发现,与非 CF 相比,臭氧暴露导致 CF 气道上皮细胞系的膜损伤、线粒体功能障碍和凋亡细胞死亡增加。臭氧暴露导致 CF 气道上皮细胞系中促炎细胞因子的产生增加。在 SERCA2 短发夹 RNA 敲低细胞中也观察到促炎细胞因子产生增加。SERCA2 的过表达逆转了臭氧诱导的促炎细胞因子产生。臭氧诱导的促炎细胞因子产生依赖于 NF-κB。在稳定的 NF-κB 报告细胞系中,SERCA2 抑制和敲低均上调细胞毒素诱导的 NF-κB 活性,表明 SERCA2 在调节 NF-κB 活性中的重要性。在该系统中,增加的 NF-κB 活性也伴随着 IL-8 产生的增加。臭氧还诱导 NF-κB 活性和 IL-8 释放,在 SERCA2 沉默的 NF-κB 报告细胞中,这种效应更大。SERCA2 的过表达逆转了细胞毒素诱导的 CFTR 缺陷 (16HBE-AS) 细胞中增加的 IL-8 释放和总核 p65。这些研究表明,SERCA2 是气道上皮细胞炎症反应的重要调节剂,可能是一个有潜力的治疗靶点。

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