Long non-coding RNA TUG1 promotes airway remodeling and mucus production in asthmatic mice through the microRNA-181b/HMGB1 axis

被引:19
作者
Huang, Wufeng [1 ]
Yu, Changhui [1 ]
Liang, Shixiu [1 ]
Wu, Hong [1 ]
Zhou, Zili [1 ]
Liu, Aihua [1 ]
Cai, Shaoxi [1 ]
机构
[1] Southern Med Univ, Nanfang Hosp, Dept Resp & Crit Care Med, Chron Airways Dis Lab, Guangzhou 510515, Guangdong, Peoples R China
基金
中国国家自然科学基金;
关键词
Asthma; LncRNA TUG1; miR-181b; HMGB1; NF-KAPPA-B; INFLAMMATION; MICRORNAS; CELLS; HMGB1;
D O I
10.1016/j.intimp.2021.107488
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
MicroRNA-181b (miR-181b) has been well noted with anti-inflammatory properties in several pathological conditions. It has also been suggested to be downregulated in patients with asthma. In this study, we explored the function of miR-181b in airway remodeling in asthmatic mice and the molecular mechanism. A mouse model with asthma was induced by ovalbumin (OVA) challenge, and miR-181b was found to be downregulated in lung tissues in the OVA-challenged mice. Overexpression of miR-181b was introduced in mice, after which the respiratory resistance, inflammatory infiltration, mucus production, and epithelial-mesenchymal transition (EMT) and fibrosis in mouse airway tissues were decreased. The integrated bioinformatics analysis suggested long noncoding RNA (lncRNA) TUG1 as a sponge for miR-181b. miR-181 directly targeted high mobility group box 1 (HMGB1) mRNA. HMGB1 was suggested to enhance activation of the nuclear factor kappa B (NF-?B) signaling. Further upregulation of lncRNA TUG1 blocked the protective functions of miR-181b in asthmatic mice. To conclude, this study evidenced that lncRNA TUG1 reinforces HMGB1 expression through sequestering microRNA-181b, which activates the NF-?B signaling pathway and promotes airway remodeling in asthmatic mice. This study may provide novel ideas in asthma management.
引用
收藏
页数:9
相关论文
共 39 条
[1]   lncRNA TUG1 promotes endometrial fibrosis and inflammation by sponging miR-590-5p to regulate Fasl in intrauterine adhesions [J].
Ai, Ying ;
Chen, Mingqing ;
Liu, Jia ;
Ren, Li ;
Yan, Xuelan ;
Feng, Yun .
INTERNATIONAL IMMUNOPHARMACOLOGY, 2020, 86
[2]  
[Anonymous], 2010, BRIT DENT J, V208
[3]   The impact of microRNAs on alterations of gene regulatory networks in allergic diseases [J].
Baskara-Yhuellou, Indoumady ;
Tost, Jorg .
INFLAMMATORY DISORDERS - PT B, 2020, 120 :237-312
[4]   Statins in Asthma: Potential Beneficial Effects and Limitations [J].
Bhattacharjee, Dipanjan ;
Chogtu, Bharti ;
Magazine, Rahul .
PULMONARY MEDICINE, 2015, 2015
[5]   Immunologic mechanisms in asthma [J].
Boonpiyathad, Tadech ;
Sozener, Zeynep Celebi ;
Satitsuksanoa, Pattraporn ;
Akdis, Cezmi A. .
SEMINARS IN IMMUNOLOGY, 2019, 46
[6]   Emerging Role of MicroRNAs and Long Noncoding RNAs in Respiratory Disease [J].
Booton, Richard ;
Lindsay, Mark A. .
CHEST, 2014, 146 (01) :193-204
[7]   What have recent advances in therapy taught us about severe asthma disease mechanisms? [J].
Caminati, Marco ;
Polk, Brooke ;
Rosenwasser, Lanny J. .
EXPERT REVIEW OF CLINICAL IMMUNOLOGY, 2019, 15 (11) :1145-1153
[8]   Comprehensive analysis of miRNA-mRNA-lncRNA networks in severe asthma [J].
Chen, Yi ;
Mao, Zheng-Dao ;
Shi, Yu-Jia ;
Qian, Yan ;
Liu, Zhi-Guang ;
Yin, Xiao-Wei ;
Zhang, Qian .
EPIGENOMICS, 2019, 11 (02) :115-131
[9]   Asthma maintenance and reliever therapy Should this be the standard of care? [J].
Cusack, Ruth P. ;
Satia, Imran ;
O'Byrne, Paul M. .
ANNALS OF ALLERGY ASTHMA & IMMUNOLOGY, 2020, 125 (02) :150-155
[10]   Ma Xing Shi Gan Decoction Attenuates PM2.5 Induced Lung Injury via Inhibiting HMGB1/TLR4/NFκB Signal Pathway in Rat [J].
Fei, Yu-xiang ;
Zhao, Bo ;
Yin, Qi-yang ;
Qiu, Yan-ying ;
Ren, Guang-hui ;
Wang, Bo-wen ;
Wang, Ye-fang ;
Fang, Wei-rong ;
Li, Yun-man .
FRONTIERS IN PHARMACOLOGY, 2019, 10