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急性吸入臭氧可诱导长 Evans 大鼠肺部阿片肽的 DNA 甲基化。

Acute inhalation of ozone induces DNA methylation of apelin in lungs of Long-Evans rats.

作者信息

Miller Colette N, Dye Janice A, Schladweiler Mette C, Richards Judy H, Ledbetter Allen D, Stewart Erica J, Kodavanti Urmila P

机构信息

a Environmental Public Health Division, National Health and Environmental Effects Research Laboratory, Cardiopulmonary and Immunology Branch, Office of Research and Development , US Environmental Protection Agency , Research Triangle Park , NC , USA.

b Oak Ridge Institute for Science and Education , Oak Ridge , TN , USA.

出版信息

Inhal Toxicol. 2018 Mar-Apr;30(4-5):178-186. doi: 10.1080/08958378.2018.1483984. Epub 2018 Jun 27.

Abstract

Apelin has cardiopulmonary protective properties that promote vasodilation and maintenance of the endothelial barrier. While reductions in apelin have been identified as a contributor to various lung diseases, including pulmonary edema, its role in the effect of air pollutants has not been examined. Thus, in the current study, we sought to investigate if apelin is a downstream target of inhaled ozone and if such change in expression is related to altered DNA methylation in the lung. Male, Long-Evans rats were exposed to filtered air or 1.0 ppm ozone for 4 h. Ventilation changes were assessed using whole-body plethysmography immediately following exposure, and markers of pulmonary edema and inflammation were assessed in the bronchoaveolar lavage (BAL) fluid. The enzymatic regulators of DNA methylation were measured in the lung, along with methylation and hydroxymethylation of the apelin promoter. Data showed that ozone exposure was associated with increased enhanced pause and protein leakage in the BAL fluid. Ozone exposure reduced DNA cytosine-5-methyltransferase (DNMT) activity and Dnmt3a/b gene expression. Exposure-induced upregulation of proliferating cell nuclear antigen, indicative of DNA damage, repair, and maintenance methylation. Increased methylation and reduced hydroxymethylation were measured on the apelin promoter. These epigenetic modifications accompanied ozone-induced reduction of apelin expression and development of pulmonary edema. In conclusion, epigenetic regulation, specifically increased methylation of the apelin promoter downstream of DNA damage, may lead to reductions in protective signaling of the apelinergic system, contributing to the pulmonary edema observed following the exposure to oxidant air pollution.

摘要

阿片肽具有心肺保护特性,可促进血管舒张并维持内皮屏障。虽然已确定阿片肽减少是包括肺水肿在内的各种肺部疾病的一个促成因素,但其在空气污染物影响中的作用尚未得到研究。因此,在本研究中,我们试图探究阿片肽是否是吸入臭氧的下游靶点,以及这种表达变化是否与肺部DNA甲基化改变有关。将雄性Long-Evans大鼠暴露于过滤空气或1.0 ppm臭氧中4小时。暴露后立即使用全身体积描记法评估通气变化,并在支气管肺泡灌洗(BAL)液中评估肺水肿和炎症标志物。在肺中测量DNA甲基化的酶调节剂,以及阿片肽启动子的甲基化和羟甲基化。数据显示,臭氧暴露与BAL液中增强的呼吸暂停和蛋白质渗漏增加有关。臭氧暴露降低了DNA胞嘧啶-5-甲基转移酶(DNMT)活性和Dnmt3a/b基因表达。暴露诱导增殖细胞核抗原上调,这表明存在DNA损伤、修复和维持甲基化。在阿片肽启动子上检测到甲基化增加和羟甲基化减少。这些表观遗传修饰伴随着臭氧诱导的阿片肽表达减少和肺水肿的发展。总之,表观遗传调控,特别是DNA损伤下游阿片肽启动子甲基化增加,可能导致阿片肽能系统保护信号减少,从而导致暴露于氧化性空气污染后出现肺水肿。

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