Literature DB >> 15347255

Future potential of the Human Epigenome Project.

Florian Eckhardt1, Stephan Beck, Ivo G Gut, Kurt Berlin.   

Abstract

Deciphering the information encoded in the human genome is key for the further understanding of human biology, physiology and evolution. With the draft sequence of the human genome completed, elucidation of the epigenetic information layer of the human genome becomes accessible. Epigenetic mechanisms are mediated by either chemical modifications of the DNA itself or by modifications of proteins that are closely associated with DNA. Defects of the epigenetic regulation involved in processes such as imprinting, X chromosome inactivation, transcriptional control of genes, as well as mutations affecting DNA methylation enzymes, contribute fundamentally to the etiology of many human diseases. Headed by the Human Epigenome Consortium, the Human Epigenome Project is a joint effort by an international collaboration that aims to identify, catalog and interpret genome-wide DNA methylation patterns of all human genes in all major tissues. Methylation variable positions are thought to reflect gene activity, tissue type and disease state, and are useful epigenetic markers revealing the dynamic state of the genome. Like single nucleotide polymorphisms, methylation variable positions will greatly advance our ability to elucidate and diagnose the molecular basis of human diseases.

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Year:  2004        PMID: 15347255     DOI: 10.1586/14737159.4.5.609

Source DB:  PubMed          Journal:  Expert Rev Mol Diagn        ISSN: 1473-7159            Impact factor:   5.225


  15 in total

Review 1.  Genetic epidemiology in aging research.

Authors:  M Daniele Fallin; Amy Matteini
Journal:  J Gerontol A Biol Sci Med Sci       Date:  2009-01-23       Impact factor: 6.053

2.  High throughput characterization of combinatorial histone codes.

Authors:  Nicolas L Young; Peter A DiMaggio; Mariana D Plazas-Mayorca; Richard C Baliban; Christodoulos A Floudas; Benjamin A Garcia
Journal:  Mol Cell Proteomics       Date:  2009-08-04       Impact factor: 5.911

Review 3.  The impact of nutrition on differential methylated regions of the genome.

Authors:  Anne Parle-McDermott; Mari Ozaki
Journal:  Adv Nutr       Date:  2011-11-03       Impact factor: 8.701

Review 4.  DNA methylation of cancer genome.

Authors:  Hoi-Hung Cheung; Tin-Lap Lee; Owen M Rennert; Wai-Yee Chan
Journal:  Birth Defects Res C Embryo Today       Date:  2009-12

Review 5.  Techniques and Approaches to Genetic Analyses in Nephrological Disorders.

Authors:  Laurel K Willig
Journal:  J Pediatr Genet       Date:  2015-08-13

Review 6.  The human Major Histocompatibility Complex as a paradigm in genomics research.

Authors:  Claire Vandiedonck; Julian C Knight
Journal:  Brief Funct Genomic Proteomic       Date:  2009-05-25

Review 7.  Integrating the multiple dimensions of genomic and epigenomic landscapes of cancer.

Authors:  Raj Chari; Kelsie L Thu; Ian M Wilson; William W Lockwood; Kim M Lonergan; Bradley P Coe; Chad A Malloff; Adi F Gazdar; Stephen Lam; Cathie Garnis; Calum E MacAulay; Carlos E Alvarez; Wan L Lam
Journal:  Cancer Metastasis Rev       Date:  2010-03       Impact factor: 9.264

Review 8.  Folic acid food fortification-its history, effect, concerns, and future directions.

Authors:  Krista S Crider; Lynn B Bailey; Robert J Berry
Journal:  Nutrients       Date:  2011-03-15       Impact factor: 5.717

9.  Hypomethylation of serum blood clot DNA, but not plasma EDTA-blood cell pellet DNA, from vitamin B12-deficient subjects.

Authors:  Eoin P Quinlivan; Krista S Crider; Jiang-Hui Zhu; David R Maneval; Ling Hao; Zhu Li; Sonja A Rasmussen; R J Berry; Lynn B Bailey
Journal:  PLoS One       Date:  2013-06-13       Impact factor: 3.240

10.  The role of longitudinal cohort studies in epigenetic epidemiology: challenges and opportunities.

Authors:  Jane W Y Ng; Laura M Barrett; Andrew Wong; Diana Kuh; George Davey Smith; Caroline L Relton
Journal:  Genome Biol       Date:  2012-06-29       Impact factor: 13.583

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