Literature DB >> 25962978

Epigenetic modifications and noncoding RNAs in cardiac hypertrophy and failure.

Carolina M Greco1, Gianluigi Condorelli1.   

Abstract

The regulatory networks governing gene expression in cardiomyocytes are under intense investigation, not least because dysregulation of the gene programme has a fundamental role in the development of a failing myocardium. Epigenetic modifications and functional non-protein-coding RNAs (ncRNAs) are important contributors to this process. The epigenetic modifications that regulate transcription comprise post-translational changes to histones-the proteins around which DNA is wound-as well as modifications to cytosine residues on DNA. The most studied of the histone changes are acetylation and methylation. Histone acetylation is known to be important in cardiac physiology and pathophysiology, but the roles of other histone modifications and of cytosine methylation are only starting to be investigated. Understanding of the role of microRNAs has also seen major advancements, but the function of long ncRNAs is less well defined. Moreover, the connection between ncRNAs and epigenetic modifications is poorly understood in the heart. In this Review, we summarize new insights into how these two layers of gene-expression regulation might be involved in the pathogenesis of cardiac hypertrophy and failure, and how we are only beginning to appreciate the complexity of the interactive network of which they are part.

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Year:  2015        PMID: 25962978     DOI: 10.1038/nrcardio.2015.71

Source DB:  PubMed          Journal:  Nat Rev Cardiol        ISSN: 1759-5002            Impact factor:   32.419


  117 in total

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Journal:  Nat Genet       Date:  2002-01-07       Impact factor: 38.330

Review 2.  Multiple roles for ISWI in transcription, chromosome organization and DNA replication.

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Journal:  Biochim Biophys Acta       Date:  2004-03-15

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Journal:  Nat Genet       Date:  2007-02-04       Impact factor: 38.330

4.  Protooncogene induction and reprogramming of cardiac gene expression produced by pressure overload.

Authors:  S Izumo; B Nadal-Ginard; V Mahdavi
Journal:  Proc Natl Acad Sci U S A       Date:  1988-01       Impact factor: 11.205

5.  Clonal inheritance of the pattern of DNA methylation in mouse cells.

Authors:  R Stein; Y Gruenbaum; Y Pollack; A Razin; H Cedar
Journal:  Proc Natl Acad Sci U S A       Date:  1982-01       Impact factor: 11.205

Review 6.  Chromatin remodeling in cardiovascular development and physiology.

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Journal:  Circ Res       Date:  2011-02-04       Impact factor: 17.367

7.  MicroRNA-133a regulates DNA methylation in diabetic cardiomyocytes.

Authors:  Vishalakshi Chavali; Suresh C Tyagi; Paras K Mishra
Journal:  Biochem Biophys Res Commun       Date:  2012-07-27       Impact factor: 3.575

8.  Cardiac p300 is involved in myocyte growth with decompensated heart failure.

Authors:  Tetsuhiko Yanazume; Koji Hasegawa; Tatsuya Morimoto; Teruhisa Kawamura; Hiromichi Wada; Akira Matsumori; Yosuke Kawase; Maretoshi Hirai; Toru Kita
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Journal:  J Mol Cell Cardiol       Date:  2014-08-19       Impact factor: 5.000

10.  Natural antisense transcript of natriuretic peptide precursor A (NPPA): structural organization and modulation of NPPA expression.

Authors:  Tarmo Annilo; Katrin Kepp; Maris Laan
Journal:  BMC Mol Biol       Date:  2009-08-11       Impact factor: 2.946

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  47 in total

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Review 2.  [Non-coding RNA : Innovative regulators with therapeutic perspective].

Authors:  A Bührke; C Bär; T Thum
Journal:  Herz       Date:  2018-03       Impact factor: 1.443

Review 3.  Epigenetics: a potential key mechanism involved in the pathogenesis of cardiorenal syndromes.

Authors:  Grazia Maria Virzì; Anna Clementi; Alessandra Brocca; Massimo de Cal; Claudio Ronco
Journal:  J Nephrol       Date:  2017-08-05       Impact factor: 3.902

Review 4.  Potassium channels in the heart: structure, function and regulation.

Authors:  Eleonora Grandi; Michael C Sanguinetti; Daniel C Bartos; Donald M Bers; Ye Chen-Izu; Nipavan Chiamvimonvat; Henry M Colecraft; Brian P Delisle; Jordi Heijman; Manuel F Navedo; Sergei Noskov; Catherine Proenza; Jamie I Vandenberg; Vladimir Yarov-Yarovoy
Journal:  J Physiol       Date:  2016-11-13       Impact factor: 5.182

Review 5.  Potassium currents in the heart: functional roles in repolarization, arrhythmia and therapeutics.

Authors:  Nipavan Chiamvimonvat; Ye Chen-Izu; Colleen E Clancy; Isabelle Deschenes; Dobromir Dobrev; Jordi Heijman; Leighton Izu; Zhilin Qu; Crystal M Ripplinger; Jamie I Vandenberg; James N Weiss; Gideon Koren; Tamas Banyasz; Eleonora Grandi; Michael C Sanguinetti; Donald M Bers; Jeanne M Nerbonne
Journal:  J Physiol       Date:  2017-01-05       Impact factor: 5.182

6.  Atorvastatin Attenuates Myocardial Hypertrophy Induced by Chronic Intermittent Hypoxia In Vitro Partly through miR-31/PKCε Pathway.

Authors:  Jie Ren; Wei Liu; Guang-Cai Li; Meng Jin; Zhen-Xi You; Hui-Guo Liu; Yi Hu
Journal:  Curr Med Sci       Date:  2018-06-22

Review 7.  Chronic heart failure: Ca(2+), catabolism, and catastrophic cell death.

Authors:  Geoffrey W Cho; Francisco Altamirano; Joseph A Hill
Journal:  Biochim Biophys Acta       Date:  2016-01-13

8.  A Fleeting Glimpse Inside microRNA, Epigenetics, and Micropeptidomics.

Authors:  Gaetano Santulli
Journal:  Adv Exp Med Biol       Date:  2015       Impact factor: 2.622

9.  The Expression of miR-365 in Serum of Hypertension Patients with Left Ventricular Hypertrophy Was Up-Regulated, Which Was Positively Correlated with Left Ventricular Mass Index.

Authors:  Hai-Bo Wu; Chen-Si Yang; Yun-Can Wang; Yue-Tao Xie; Xue-Chao Wang; Hui-Liang Liu; Rong-Pin Du
Journal:  Pharmgenomics Pers Med       Date:  2021-07-21

Review 10.  Transportation noise pollution and cardiovascular disease.

Authors:  Thomas Münzel; Mette Sørensen; Andreas Daiber
Journal:  Nat Rev Cardiol       Date:  2021-03-31       Impact factor: 32.419

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