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PMID: 23831618 已发表 · ppublish 英语

DNA methylation in nasal epithelial cells from smokers: identification of ULBP3-related effects.

Rager Julia E, Bauer Rebecca N, Müller Loretta L, Smeester Lisa, Carson Johnny L, Brighton Luisa E, Fry Rebecca C, Jaspers Ilona

摘要

We previously demonstrated that, in nasal epithelial cells (NECs) from smokers, methylation of an antiviral gene was associated with impaired antiviral defense responses. To expand these findings and better understand biological mechanisms underlying cigarette smoke (CS)-induced modifications of host defense responses, we aimed to compare DNA methylation of genes that may play a role in antiviral response. We used a two-tiered analytical approach, where we first implemented a genome-wide strategy. NECs from smokers differed in the methylation levels of 390 genes, the majority (84%) of which showed decreased methylation in smokers. Secondly, we generated an a priori set of 161 antiviral response-related genes, of which five were differentially methylated in NEC from smokers (CCL2, FDPS, GSK3B, SOCS3, and ULBP3). Assessing these genes at the systems biology level revealed a protein interaction network associated with CS-induced epigenetic modifications involving SOCS3 and ULBP3 signaling, among others. Subsequent confirmation studies focused on SOCS3 and ULBP3, which were hypomethylated and hypermethylated, respectively. Expression of SOCS3 was increased, whereas ULBP3 expression was decreased in NECs from smokers. Addition of the demethylating agent 5-Aza-2-deoxycytidine enhanced ULBP3 expression in NECs from smokers. Furthermore, infection of differentiated NECs with influenza virus resulted in significantly lower levels of ULBP3 in cells from smokers. Taken together, our findings show that genomic DNA methylation profiles are altered in NECs from smokers and that these changes are associated with decreased antiviral host defense responses, indicating that epigenenic dysregulation of genes such as SOCS3 and ULBP3 likely impacts immune responses in the epithelium.

关键词
antiviral defense response cigarette smoke epigenetic influenza
文献信息
期刊
American journal of physiology. Lung cellular and molecular physiology
期刊简称
Am J Physiol Lung Cell Mol Physiol
发表日期
2013-11-12
收录日期
2013-09-16
更新日期
2016-11-25
语言
英语
国家/地区
United States
NLM ID
100901229
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