TGF-β Receptor-dependent Tissue Factor Release and Proteomic Profiling of Extracellular Vesicles from Mechanically Compressed Human Bronchial Epithelial Cells.

IF 5.9 2区 医学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Chimwemwe Mwase, Stephen A Schworer, Rodney C Gilmore, Faria Khan, Alane Blythe C Dy, Adam L Haber, Richard C Boucher, Scott H Randell, Nigel Mackman, Jin-Ah Park
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Abstract

In asthma, tissue factor (TF) levels are elevated in the lung. In our previous studies using mechanically compressed human bronchial epithelial (HBE) cells, which are a well-defined in vitro model of bronchoconstriction during asthma exacerbations, we detected TF within extracellular vesicles (EVs) released from compressed HBE cells. Here, to better characterize the potential role of this mechanism in asthma, we tested the extent to which the transcriptional regulation of epithelial cell-derived TF varied between donors with and without asthma. Using RNA in situ hybridization, we detected epithelial expression of F3, the TF protein-encoding gene, in human airways. Next, to determine the role of TGF-β receptor (TGF-βR) in the regulation of TF, we exposed well-differentiated HBE cells to mechanical compression in the presence or absence of a pharmacological inhibitor of TGF-β receptor. Furthermore, to identify the protein cargo of EVs released from HBE cells, we used Tandem Mass Tag mass spectrometry. Our findings revealed significantly higher F3 expression in the airways of patients with asthma compared to healthy controls. However, we observed no differences in F3 expression or TF release between asthmatic and non-asthmatic HBE cells, both at baseline and after compression. Mechanistically, compression-induced F3 expression in HBE cells depended on TGF-βR. Our proteomic analysis identified 22 differentially released proteins in EVs, with higher levels in compressed cells compared to controls. Gene ontology analysis indicates these proteins are involved in diverse biological processes, highlighting a potential role for epithelial cell-derived EVs during asthma exacerbations.

机械压缩支气管上皮细胞中TGF-β受体依赖的组织因子释放和细胞外小泡的蛋白质组学分析
在哮喘中,肺组织因子(TF)水平升高。在我们之前的研究中,我们使用机械压缩的人支气管上皮细胞(HBE),这是一种明确定义的哮喘发作期间支气管收缩的体外模型,我们在压缩的HBE细胞释放的细胞外囊泡(ev)中检测到TF。在这里,为了更好地描述这种机制在哮喘中的潜在作用,我们测试了上皮细胞来源的TF在有哮喘和没有哮喘的供体之间的转录调节的程度。利用RNA原位杂交技术,我们检测了TF蛋白编码基因F3在人气道上皮中的表达。接下来,为了确定TGF-β受体(TGF-β r)在TF调控中的作用,我们将分化良好的HBE细胞暴露于TGF-β受体药理学抑制剂存在或不存在的机械压迫下。此外,为了鉴定从HBE细胞释放的ev的蛋白质货物,我们使用了串联质量标签质谱法。我们的研究结果显示,与健康对照组相比,哮喘患者气道中F3的表达明显更高。然而,我们观察到在基线和压缩后,哮喘和非哮喘HBE细胞之间F3表达或TF释放没有差异。在机制上,挤压诱导的HBE细胞中F3的表达依赖于TGF-βR。我们的蛋白质组学分析确定了电动汽车中22种差异释放的蛋白质,与对照组相比,压缩细胞中的水平更高。基因本体论分析表明,这些蛋白参与多种生物过程,强调了上皮细胞源性ev在哮喘发作中的潜在作用。
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来源期刊
CiteScore
11.20
自引率
3.10%
发文量
370
审稿时长
3-8 weeks
期刊介绍: The American Journal of Respiratory Cell and Molecular Biology publishes papers that report significant and original observations in the area of pulmonary biology. The focus of the Journal includes, but is not limited to, cellular, biochemical, molecular, developmental, genetic, and immunologic studies of lung cells and molecules.
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