Analysis of Combinatorial Epigenomic States.

Paul D Soloway

Journal: ACS chemical biology 2016;11(3):621-31

PMID: 26555135

Abstract

Hundreds of distinct chemical modifications to DNA and histone amino acids have been described. Regulation exerted by these so-called epigenetic marks is vital to normal development, stability of cell identity through mitosis, and nongenetic transmission of traits between generations through meiosis. Loss of this regulation contributes to many diseases. Evidence indicates epigenetic marks function in combinations, whereby a given modification has distinct effects on local genome control, depending on which additional modifications are locally present. This review summarizes emerging methods for assessing combinatorial epigenomic states, as well as challenges and opportunities for their refinement.

Address: Division of Nutritional Sciences, Cornell University , Ithaca, New York 14853, United States.

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