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Items: 1 to 20 of 49

1.

The genomic landscape of histone modifications in human T cells.

Roh TY, Cuddapah S, Cui K, Zhao K.

Proc Natl Acad Sci U S A. 2006 Oct 24;103(43):15782-7. Epub 2006 Oct 16.

2.

The emerging science of epigenomics.

Callinan PA, Feinberg AP.

Hum Mol Genet. 2006 Apr 15;15 Spec No 1:R95-101. Review.

3.
4.

A bivalent chromatin structure marks key developmental genes in embryonic stem cells.

Bernstein BE, Mikkelsen TS, Xie X, Kamal M, Huebert DJ, Cuff J, Fry B, Meissner A, Wernig M, Plath K, Jaenisch R, Wagschal A, Feil R, Schreiber SL, Lander ES.

Cell. 2006 Apr 21;125(2):315-26.

5.

Evolution of cis elements in the differential expression of two Hoxa2 coparalogous genes in pufferfish (Takifugu rubripes).

Tümpel S, Cambronero F, Wiedemann LM, Krumlauf R.

Proc Natl Acad Sci U S A. 2006 Apr 4;103(14):5419-24. Epub 2006 Mar 28.

6.

Epigenomics: mapping the methylome.

Wilson IM, Davies JJ, Weber M, Brown CJ, Alvarez CE, MacAulay C, Schübeler D, Lam WL.

Cell Cycle. 2006 Jan;5(2):155-8. Epub 2006 Jan 16.

PMID:
16397413
7.

Genome-wide mapping of DNase hypersensitive sites using massively parallel signature sequencing (MPSS).

Crawford GE, Holt IE, Whittle J, Webb BD, Tai D, Davis S, Margulies EH, Chen Y, Bernat JA, Ginsburg D, Zhou D, Luo S, Vasicek TJ, Daly MJ, Wolfsberg TG, Collins FS.

Genome Res. 2006 Jan;16(1):123-31. Epub 2005 Dec 12.

8.

The diverse functions of histone lysine methylation.

Martin C, Zhang Y.

Nat Rev Mol Cell Biol. 2005 Nov;6(11):838-49. Review.

PMID:
16261189
9.

Trade-offs in detecting evolutionarily constrained sequence by comparative genomics.

Stone EA, Cooper GM, Sidow A.

Annu Rev Genomics Hum Genet. 2005;6:143-64. Review.

PMID:
16124857
10.

Genomic views of chromatin.

Huebert DJ, Bernstein BE.

Curr Opin Genet Dev. 2005 Oct;15(5):476-81. Review.

PMID:
16099159
11.

Control of gene expression and assembly of chromosomal subdomains by chromatin regulators with antagonistic functions.

Lam AL, Pazin DE, Sullivan BA.

Chromosoma. 2005 Sep;114(4):242-51. Epub 2005 Oct 15. Review.

PMID:
16012860
12.

Chromosome-wide and promoter-specific analyses identify sites of differential DNA methylation in normal and transformed human cells.

Weber M, Davies JJ, Wittig D, Oakeley EJ, Haase M, Lam WL, Schübeler D.

Nat Genet. 2005 Aug;37(8):853-62. Epub 2005 Jul 10.

PMID:
16007088
13.

A high-resolution map of active promoters in the human genome.

Kim TH, Barrera LO, Zheng M, Qu C, Singer MA, Richmond TA, Wu Y, Green RD, Ren B.

Nature. 2005 Aug 11;436(7052):876-80. Epub 2005 Jun 29.

14.

Direct isolation and identification of promoters in the human genome.

Kim TH, Barrera LO, Qu C, Van Calcar S, Trinklein ND, Cooper SJ, Luna RM, Glass CK, Rosenfeld MG, Myers RM, Ren B.

Genome Res. 2005 Jun;15(6):830-9. Epub 2005 May 17.

15.

The key to development: interpreting the histone code?

Margueron R, Trojer P, Reinberg D.

Curr Opin Genet Dev. 2005 Apr;15(2):163-76. Review.

PMID:
15797199
16.

High-throughput localization of functional elements by quantitative chromatin profiling.

Dorschner MO, Hawrylycz M, Humbert R, Wallace JC, Shafer A, Kawamoto J, Mack J, Hall R, Goldy J, Sabo PJ, Kohli A, Li Q, McArthur M, Stamatoyannopoulos JA.

Nat Methods. 2004 Dec;1(3):219-25. Epub 2004 Nov 18.

PMID:
15782197
17.

Active chromatin domains are defined by acetylation islands revealed by genome-wide mapping.

Roh TY, Cuddapah S, Zhao K.

Genes Dev. 2005 Mar 1;19(5):542-52. Epub 2005 Feb 10.

18.

Genomic maps and comparative analysis of histone modifications in human and mouse.

Bernstein BE, Kamal M, Lindblad-Toh K, Bekiranov S, Bailey DK, Huebert DJ, McMahon S, Karlsson EK, Kulbokas EJ 3rd, Gingeras TR, Schreiber SL, Lander ES.

Cell. 2005 Jan 28;120(2):169-81.

19.
20.

Discovery of functional noncoding elements by digital analysis of chromatin structure.

Sabo PJ, Hawrylycz M, Wallace JC, Humbert R, Yu M, Shafer A, Kawamoto J, Hall R, Mack J, Dorschner MO, McArthur M, Stamatoyannopoulos JA.

Proc Natl Acad Sci U S A. 2004 Nov 30;101(48):16837-42. Epub 2004 Nov 18.

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