Literature DB >> 18024971

Computational epigenetics.

Christoph Bock1, Thomas Lengauer.   

Abstract

Epigenetic research aims to understand heritable gene regulation that is not directly encoded in the DNA sequence. Epigenetic mechanisms such as DNA methylation and histone modifications modulate the packaging of the DNA in the nucleus and thereby influence gene expression. Patterns of epigenetic information are faithfully propagated over multiple cell divisions, which makes epigenetic regulation a key mechanism for cellular differentiation and cell fate decisions. In addition, incomplete erasure of epigenetic information can lead to complex patterns of non-Mendelian inheritance. Stochastic and environment-induced epigenetic defects are known to play a major role in cancer and ageing, and they may also contribute to mental disorders and autoimmune diseases. Recent technical advances such as ChIP-on-chip and ChIP-seq have started to convert epigenetic research into a high-throughput endeavor, to which bioinformatics is expected to make significant contributions. Here, we review pioneering computational studies that have contributed to epigenetic research. In addition, we give a brief introduction into epigenetics-targeted at bioinformaticians who are new to the field-and we outline future challenges in computational epigenetics.

Entities:  

Mesh:

Year:  2007        PMID: 18024971     DOI: 10.1093/bioinformatics/btm546

Source DB:  PubMed          Journal:  Bioinformatics        ISSN: 1367-4803            Impact factor:   6.937


  67 in total

Review 1.  Bioinformatics for personal genome interpretation.

Authors:  Emidio Capriotti; Nathan L Nehrt; Maricel G Kann; Yana Bromberg
Journal:  Brief Bioinform       Date:  2012-01-13       Impact factor: 11.622

2.  Tackling the epigenome: challenges and opportunities for collaboration.

Authors:  John S Satterlee; Dirk Schübeler; Huck-Hui Ng
Journal:  Nat Biotechnol       Date:  2010-10       Impact factor: 54.908

3.  Genomic imprinting in diabetes.

Authors:  Braxton D Mitchell; Toni I Pollin
Journal:  Genome Med       Date:  2010-08-23       Impact factor: 11.117

4.  Improving reference epigenome catalogs by computational prediction.

Authors:  Peter Ebert; Christoph Bock
Journal:  Nat Biotechnol       Date:  2015-04       Impact factor: 54.908

Review 5.  Environmental studies of schizophrenia through the prism of epigenetics.

Authors:  Gabriel Oh; Arturas Petronis
Journal:  Schizophr Bull       Date:  2008-08-14       Impact factor: 9.306

6.  Analysis of the Hox epigenetic code.

Authors:  Zoheir Ezziane
Journal:  World J Clin Oncol       Date:  2012-04-10

Review 7.  Applications of alignment-free methods in epigenomics.

Authors:  Luca Pinello; Giosuè Lo Bosco; Guo-Cheng Yuan
Journal:  Brief Bioinform       Date:  2013-11-06       Impact factor: 11.622

8.  Generalized query-based active learning to identify differentially methylated regions in DNA.

Authors:  Md Muksitul Haque; Lawrence B Holder; Michael K Skinner; Diane J Cook
Journal:  IEEE/ACM Trans Comput Biol Bioinform       Date:  2013 May-Jun       Impact factor: 3.710

9.  Systems biology of embryogenesis.

Authors:  Lucas B Edelman; Sriram Chandrasekaran; Nathan D Price
Journal:  Reprod Fertil Dev       Date:  2010       Impact factor: 2.311

Review 10.  Investigating parent of origin effects in studies of type 2 diabetes and obesity.

Authors:  Evadnie Rampersaud; Braxton D Mitchell; Adam C Naj; Toni I Pollin
Journal:  Curr Diabetes Rev       Date:  2008-11
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