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Home: Papers of the Week
Annotation


Thurman RE, Rynes E, Humbert R, Vierstra J, Maurano MT, Haugen E, Sheffield NC, Stergachis AB, Wang H, Vernot B, Garg K, John S, Sandstrom R, Bates D, Boatman L, Canfield TK, Diegel M, Dunn D, Ebersol AK, Frum T, Giste E, Johnson AK, Johnson EM, Kutyavin T, Lajoie B, Lee BK, Lee K, London D, Lotakis D, Neph S, Neri F, Nguyen ED, Qu H, Reynolds AP, Roach V, Safi A, Sanchez ME, Sanyal A, Shafer A, Simon JM, Song L, Vong S, Weaver M, Yan Y, Zhang Z, Zhang Z, Lenhard B, Tewari M, Dorschner MO, Hansen RS, Navas PA, Stamatoyannopoulos G, Iyer VR, Lieb JD, Sunyaev SR, Akey JM, Sabo PJ, Kaul R, Furey TS, Dekker J, Crawford GE, Stamatoyannopoulos JA. The accessible chromatin landscape of the human genome. Nature. 2012 Sep 6;489(7414):75-82. PubMed Abstract

  
Comments on Paper and Primary News
  Primary News: ENCODE Turns Human Genome From Sequence to Machine

Comment by:  P. Hemachandra Reddy
Submitted 20 September 2012  |  Permalink Posted 21 September 2012
  I recommend this paper
Comments on Related News
  Related News: Newly Mapped DNA Elements Help Interpret GWAS

Comment by:  Christiane Reitz
Submitted 20 September 2012  |  Permalink Posted 20 September 2012

If these findings can be validated by additional studies, they will have a significant impact on the analysis and interpretation of GWAS data. GWAS commonly identify genes that are—in terms of their function—at first sight hard to link to the phenotype studied. The connection of numerous DNAse hypersensitive sites harboring GWAS SNPs with promoters of distant genes—as suggested by this study—offers a plausible explanation for these observed associations. In addition, the work suggests that seemingly unconnected variants have common transcription factor networks. If both findings turn out to be true, they would largely help us to understand and disentangle the specific disease studied, since the authors show how apparently unrelated genes can be linked to disease.

These findings also help us understand the links among different diseases, because they provide a framework for elucidating whether diseases share a common transcription factor network and thus may be mechanistically related.

Going forward, association studies could be performed differently than done at present,...  Read more


  Related News: Newly Mapped DNA Elements Help Interpret GWAS

Comment by:  P. Hemachandra Reddy
Submitted 20 September 2012  |  Permalink Posted 21 September 2012
  I recommend the Primary Papers
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