首页> 美国卫生研究院文献>Journal of the Boston Society of Medical Sciences >Asbestos causes translocation of p65 protein and increases NF-kappa B DNA binding activity in rat lung epithelial and pleural mesothelial cells.
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Asbestos causes translocation of p65 protein and increases NF-kappa B DNA binding activity in rat lung epithelial and pleural mesothelial cells.

机译:石棉在大鼠肺上皮和胸膜间皮细胞中引起p65蛋白易位并增加NF-κBDNA结合活性。

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摘要

The mechanisms of cell signaling and altered gene expression by asbestos, a potent inflammatory, fibrogenic, and carcinogenic agent, are unclear. Activation of the transcription factor, nuclear factor (NF)-kappa B, is critical in up-regulating the expression of many genes linked to inflammation and proliferation. Inhalation models of crocidolite- and chrysotile-induced inflammation and asbestosis were used to study the localization of p65, a protein subunit of the NF-kappa B transcription factor, in sham control rats and those exposed to asbestos. In addition, we investigated, using electrophoretic mobility shift analysis, whether in vitro exposure of rat lung epithelial cells and rat pleural mesothelial cells to asbestos increased binding of nuclear proteins, including p65, to the NF-kappa B DNA response element. Furthermore, translocation of p65 into the nucleus was determined by confocal microscopy. In comparison with sham animals, striking increases in p65 immunofluorescence were observed in airway epithelial cells of rats at 5 days after inhalation of asbestos. These increases were diminished by 20 days, the time period necessary for development of fibrotic lesions. In contrast, although inter-animal variability was observed, immunoreactivity for p65 was more dramatic in the interstitial compartment of asbestos-exposed rat lungs at both 5 and 20 days. Changes in p65 expression in pleural mesothelial cells exposed to asbestos in inhalation experiments were unremarkable. Exposure to asbestos also caused significant increases in nuclear protein complexes that bind the NF-kappa B consensus DNA sequence in both rat lung epithelial and rat pleural mesothelial cells. Using confocal microscopy, we observed partial nuclear translocation of p65 in rat pleural mesothelial cells exposed to asbestos. This partial response contrasted with the effects of lipopolysaccharide, which caused rapid and complete translocation of p65 from cytoplasm to nucleus. Our studies are the first to show the presence of the NF-kappa B system in lung tissue and evidence of activation in vitro and in vivo after exposure to a potent inflammatory, fibrinogenic, and carcinogenic environmental agent.
机译:目前尚不清楚石棉的细胞信号传导和基因表达改变的机制,石棉是一种强力的炎症,纤维生成和致癌剂。转录因子核因子(NF)-κB的激活在上调与炎症和增殖相关的许多基因的表达中至关重要。使用青石棉和温石棉诱导的炎症和石棉吸入模型来研究假对照大鼠和接触石棉的p65(NF-κB转录因子的蛋白亚基)的定位。此外,我们使用电泳迁移率变动分析调查了大鼠肺上皮细胞和大鼠胸膜间皮细胞在石棉中的体外暴露是否增加了核蛋白(包括p65)与NF-κB DNA反应元件的结合。此外,通过共聚焦显微镜确定了p65向核内的易位。与假手术动物相比,在吸入石棉后第5天,在大鼠气道上皮细胞中观察到p65免疫荧光显着增加。这些增加减少了20天,这是纤维化病变发展所必需的时间。相比之下,尽管观察到动物间的差异,但在暴露后5天和20天,在接触石棉的大鼠肺的间质腔中,p65的免疫反应性更为显着。在吸入实验中,暴露于石棉的胸膜间皮细胞中p65表达的变化不明显。接触石棉还导致在大鼠肺上皮细胞和大鼠胸膜间皮细胞中结合NF-κB共有DNA序列的核蛋白复合物显着增加。使用共聚焦显微镜,我们观察到暴露于石棉的大鼠胸膜间皮细胞中p65的部分核易位。这种部分反应与脂多糖的作用形成对比,脂多糖引起p65从细胞质快速完全转移到细胞核。我们的研究首次显示出肺组织中存在NF-κB系统,并且在暴露于强效的炎症,纤维蛋白原性和致癌性环境剂后,体内和体外都有激活的证据。

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