Literature DB >> 25010962

Emerging role of MicroRNAs and long noncoding RNAs in respiratory disease.

Richard Booton1, Mark A Lindsay2.   

Abstract

The advent of techniques such as microarrays and high-throughput sequencing has revolutionized our ability to examine messenger RNA (mRNA) expression within the respiratory system. Importantly, these approaches have also uncovered the widespread expression of "noncoding RNAs," including microRNAs and long noncoding RNAs, which impact biologic responses through the regulation of mRNA transcription and/or translation. To date, most studies of the role of noncoding RNAs have focused on microRNAs, which regulate mRNA translation via the RNA interference pathway. These studies have shown changes in microRNA expression in cells and tissues derived from patients with asthma, pulmonary fibrosis, cystic fibrosis, COPD, and non-small cell lung cancer. Although the evidence is currently limited, we review the work that has been carried out in cell and animal models that has identified the function and mechanism of action of a small number of these microRNAs in disease etiology. In addition to microRNAs, we assess the emerging evidence that long noncoding RNAs regulate respiratory phenotype. Because these investigations into long noncoding RNAs were performed almost exclusively in non-small cell lung cancer, future work will need to extend these into other respiratory diseases and to analyze how microRNAs and long noncoding RNAs interact to regulate mRNA expression. From a clinical perspective, the targeting of noncoding RNAs as a novel therapeutic approach will require a deeper understanding of their function and mechanism of action. However, in the short term, changes in miRNA and long noncoding RNA expression are likely to be of use as biomarkers for disease stratification and/or assessment of drug action.

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Year:  2014        PMID: 25010962     DOI: 10.1378/chest.13-2736

Source DB:  PubMed          Journal:  Chest        ISSN: 0012-3692            Impact factor:   9.410


  70 in total

1.  LINC00312 inhibits the migration and invasion of bladder cancer cells by targeting miR-197-3p.

Authors:  Yun-Yan Wang; Zi-Yu Wu; Gong-Cheng Wang; Kun Liu; Xiao-Bing Niu; Shuo Gu; Jun-Song Meng
Journal:  Tumour Biol       Date:  2016-09-08

Review 2.  Asthma Pharmacogenomics: 2015 Update.

Authors:  Joshua S Davis; Scott T Weiss; Kelan G Tantisira
Journal:  Curr Allergy Asthma Rep       Date:  2015-07       Impact factor: 4.806

3.  MicroRNAs as Therapeutic Targets in Lung Disease: Prospects and Challenges.

Authors:  Tadashi Sato; Hario Baskoro; Stephen I Rennard; Kuniaki Seyama; Kazuhisa Takahashi
Journal:  Chronic Obstr Pulm Dis       Date:  2015-12-14

4.  Exosomal microRNA predicts and protects against severe bronchopulmonary dysplasia in extremely premature infants.

Authors:  Charitharth Vivek Lal; Nelida Olave; Colm Travers; Gabriel Rezonzew; Kalsang Dolma; Alexandra Simpson; Brian Halloran; Zubair Aghai; Pragnya Das; Nirmal Sharma; Xin Xu; Kristopher Genschmer; Derek Russell; Tomasz Szul; Nengjun Yi; J Edwin Blalock; Amit Gaggar; Vineet Bhandari; Namasivayam Ambalavanan
Journal:  JCI Insight       Date:  2018-03-08

Review 5.  ncRNA-regulated immune response and its role in inflammatory lung diseases.

Authors:  Na Xie; Gang Liu
Journal:  Am J Physiol Lung Cell Mol Physiol       Date:  2015-10-02       Impact factor: 5.464

6.  Acute 4,4'-Methylene Diphenyl Diisocyanate Exposure-Mediated Downregulation of miR-206-3p and miR-381-3p Activates Inducible Nitric Oxide Synthase Transcription by Targeting Calcineurin/NFAT Signaling in Macrophages.

Authors:  Chen-Chung Lin; Brandon F Law; Justin M Hettick
Journal:  Toxicol Sci       Date:  2020-01-01       Impact factor: 4.849

7.  mRNAs and miRNAs in whole blood associated with lung hyperplasia, fibrosis, and bronchiolo-alveolar adenoma and adenocarcinoma after multi-walled carbon nanotube inhalation exposure in mice.

Authors:  Brandi N Snyder-Talkington; Chunlin Dong; Linda M Sargent; Dale W Porter; Lauren M Staska; Ann F Hubbs; Rebecca Raese; Walter McKinney; Bean T Chen; Lori Battelli; David T Lowry; Steven H Reynolds; Vincent Castranova; Yong Qian; Nancy L Guo
Journal:  J Appl Toxicol       Date:  2015-04-29       Impact factor: 3.446

Review 8.  The code of non-coding RNAs in lung fibrosis.

Authors:  Huachun Cui; Na Xie; Victor J Thannickal; Gang Liu
Journal:  Cell Mol Life Sci       Date:  2015-05-31       Impact factor: 9.261

Review 9.  Epigenetic contributions to the developmental origins of adult lung disease.

Authors:  Lisa A Joss-Moore; Robert H Lane; Kurt H Albertine
Journal:  Biochem Cell Biol       Date:  2014-10-13       Impact factor: 3.626

Review 10.  The growth arrest-specific transcript 5 (GAS5): a pivotal tumor suppressor long noncoding RNA in human cancers.

Authors:  Chenhui Ma; Xuefei Shi; Qingqing Zhu; Qian Li; Yafang Liu; Yanwen Yao; Yong Song
Journal:  Tumour Biol       Date:  2015-12-03
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