Chronic obstructive pulmonary disease (COPD) is characterized by persistent airflow limitation and chronic inflammation, often exacerbated by cigarette smoke exposure. Ovarian tumor protease domainâcontaining protein 1 (OTUD1), a deubiquitinase, has previously been identified as a negative regulator of inflammation through its suppression of NFâκB signaling. The present study explored the role of OTUD1 in COPD and the regulatory effects of N6âmethyladenosine (m6A) methylation on OTUD1 expression. The expression of OTUD1 in COPD was analyzed using public datasets (GSE38974 and GSE69818). In addition, BEASâ2B cells were exposed to cigarette smoke extract (CSE) to investigate OTUD1 expression changes. OTUD1 overexpression and knockdown models were also constructed, and the levels of inflammationârelated genes and proteins, inflammatory cytokines and cell pyroptosis were measured using reverse transcriptionâquantitative PCR, western blotting, ELISA and flow cytometry. The role of methyltransferaseâlike 3 (METTL3)âmediated m6A methylation in regulating OTUD1 was also examined. Notably, OTUD1 expression was significantly reduced in advanced COPD compared with that in the earlier stage. Furthermore, CSE exposure suppressed OTUD1 expression, which was associated with increased cell pyroptosis and elevated levels of the inflammatory cytokines ILâ1β and ILâ18. OTUD1 overexpression mitigated these effects, indicating its protective role against CSEâinduced cellular damage. Furthermore, METTL3âmediated m6A methylation inhibited OTUD1 expression, with YTH m6A RNA binding protein 2 (YTHDF2) acting as the reader of this modification. Knockdown of METTL3 or YTHDF2 reduced m6A methylation and restored OTUD1 expression, highlighting a potential mechanism by which cigarette smoke suppresses OTUD1 through enhanced m6A methylation. In conclusion, OTUD1 may serve a protective role in COPD by inhibiting inflammation and reducing cell damage caused by cigarette smoke exposure. The suppression of OTUD1 through METTL3âmediated m6A methylation and YTHDF2 interaction represents a novel mechanism contributing to COPD pathogenesis, suggesting potential therapeutic targets for mitigating disease progression.
METTL3âmediated m6A methylation and its impact on OTUD1 expression in chronic obstructive pulmonary disease.
METTL3介导的m6A甲基化及其对慢性阻塞性肺疾病中OTUD1表达的影响
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作者:Gao Jiameng, Shen Zheyi, Tian Weibin, Xia Junyi, Cao Weixin, Chen Zhuoru, Wang Zhihua, Shen Yao
| 期刊: | Molecular Medicine Reports | 影响因子: | 3.500 |
| 时间: | 2025 | 起止号: | 2025 Aug |
| doi: | 10.3892/mmr.2025.13571 | 研究方向: | 表观遗传 |
| 信号通路: | DNA甲基化 | ||
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