Literature DB >> 26965544

Long Noncoding RNAs: From Clinical Genetics to Therapeutic Targets?

Reinier A Boon1, Nicolas Jaé2, Lesca Holdt3, Stefanie Dimmeler4.   

Abstract

Recent studies suggest that the majority of the human genome is transcribed, but only about 2% accounts for protein-coding exons. Long noncoding RNAs (lncRNAs) constitute a heterogenic class of RNAs that includes, for example, intergenic lncRNAs, antisense transcripts, and enhancer RNAs. Moreover, alternative splicing can lead to the formation of circular RNAs. In support of putative functions, GWAS for cardiovascular diseases have shown predictive single-nucleotide polymorphisms in lncRNAs, such as the 9p21 susceptibility locus that encodes the lncRNA antisense noncoding RNA in the INK4 locus (ANRIL). Many lncRNAs are regulated during disease. For example, metastasis-associated lung adenocarcinoma transcript 1 (MALAT1) and myocardial infarction-associated transcript (MIAT) were shown to affect endothelial cell functions and diabetic retinopathy, whereas lincRNA-p21 controls neointima formation. In the heart, several lncRNAs were shown to act as microRNA sponges and to control ischemia-reperfusion injury or act as epigenetic regulators. In this review, the authors summarize the current understanding of lncRNA functions and their role as biomarkers in cardiovascular diseases.
Copyright © 2016 American College of Cardiology Foundation. Published by Elsevier Inc. All rights reserved.

Entities:  

Keywords:  cardiac; long noncoding RNA; microRNA; vascular

Mesh:

Substances:

Year:  2016        PMID: 26965544     DOI: 10.1016/j.jacc.2015.12.051

Source DB:  PubMed          Journal:  J Am Coll Cardiol        ISSN: 0735-1097            Impact factor:   24.094


  166 in total

1.  Transcriptome Sequencing Identifies Potential Biomarker for White Matter Lesions Diagnosis in the Hypertension Population.

Authors:  Wendi Wang; Pei Sun; Fengyue Han; Chunjuan Wang; Yongxiang Wang; Xiang Wang; Lin Cong; Chuanqiang Qu
Journal:  Neurochem Res       Date:  2021-05-26       Impact factor: 3.996

Review 2.  Statistical analysis of non-coding RNA data.

Authors:  Qianchuan He; Yang Liu; Wei Sun
Journal:  Cancer Lett       Date:  2018-01-04       Impact factor: 8.679

Review 3.  Non-coding RNAs: key regulators of smooth muscle cell fate in vascular disease.

Authors:  Nicholas J Leeper; Lars Maegdefessel
Journal:  Cardiovasc Res       Date:  2018-03-15       Impact factor: 10.787

4.  Identification of long noncoding RNA TC0101441 as a novel biomarker for diagnosis and prognosis of gastric cancer.

Authors:  Weiwei Wang; Jianjun Wu
Journal:  Int J Clin Exp Pathol       Date:  2021-03-01

5.  Targeting epigenetics and non-coding RNAs in atherosclerosis: from mechanisms to therapeutics.

Authors:  Suowen Xu; Danielle Kamato; Peter J Little; Shinichi Nakagawa; Jaroslav Pelisek; Zheng Gen Jin
Journal:  Pharmacol Ther       Date:  2018-11-13       Impact factor: 12.310

Review 6.  Long non-coding RNA ANRIL in gene regulation and its duality in atherosclerosis.

Authors:  Jie-Shan Chi; Jian-Zhou Li; Jing-Jing Jia; Ting Zhang; Xiao-Ma Liu; Li Yi
Journal:  J Huazhong Univ Sci Technolog Med Sci       Date:  2017-12-21

7.  Linc00299/miR-490-3p/AURKA axis regulates cell growth and migration in atherosclerosis.

Authors:  Yong Liu; Yaqing Chen; Lili Tan; Hongmei Zhao; Nuan Xiao
Journal:  Heart Vessels       Date:  2019-02-08       Impact factor: 2.037

8.  LncRNAs and Available Databases.

Authors:  Sara Napoli
Journal:  Methods Mol Biol       Date:  2021

Review 9.  Long non-coding RNAs and cell death following ischemic stroke.

Authors:  Masoumeh Alishahi; Farhoodeh Ghaedrahmati; Tannaz Akbari Kolagar; William Winlow; Negin Nikkar; Maryam Farzaneh; Seyed Esmaeil Khoshnam
Journal:  Metab Brain Dis       Date:  2019-05-04       Impact factor: 3.584

Review 10.  Non-coding RNAs in cardiovascular diseases: diagnostic and therapeutic perspectives.

Authors:  Wolfgang Poller; Stefanie Dimmeler; Stephane Heymans; Tanja Zeller; Jan Haas; Mahir Karakas; David-Manuel Leistner; Philipp Jakob; Shinichi Nakagawa; Stefan Blankenberg; Stefan Engelhardt; Thomas Thum; Christian Weber; Benjamin Meder; Roger Hajjar; Ulf Landmesser
Journal:  Eur Heart J       Date:  2018-08-01       Impact factor: 29.983

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