A multi-layered set of epigenetic marks, including post-translational modifications of histones and methylation of DNA, is finely tuned to define the epigenetic state of chromatin in any given cell type under specific conditions. Recently, the knowledge about the combinations of epigenetic marks occurring in the genome of different cell types under various conditions is rapidly increasing. Computational methods were developed for the identification of these states, unraveling the combinatorial nature of epigenetic marks and their association to genomic functional elements and transcriptional states. Nevertheless, the precise rules defining the interplay between all these marks remain poorly characterized. In this perspective we review the current state of this research field, illustrating the power and the limitations of current approaches. Finally, we sketch future avenues of research illustrating how the adoption of specific experimental designs coupled with available experimental approaches could be critical for a significant progress in this area.

de Pretis, S., Pelizzola, M. (2014). Computational and experimental methods to decipher the epigenetic code. FRONTIERS IN GENETICS, 5(SEP) [10.3389/fgene.2014.00335].

Computational and experimental methods to decipher the epigenetic code

Pelizzola M
Ultimo
2014

Abstract

A multi-layered set of epigenetic marks, including post-translational modifications of histones and methylation of DNA, is finely tuned to define the epigenetic state of chromatin in any given cell type under specific conditions. Recently, the knowledge about the combinations of epigenetic marks occurring in the genome of different cell types under various conditions is rapidly increasing. Computational methods were developed for the identification of these states, unraveling the combinatorial nature of epigenetic marks and their association to genomic functional elements and transcriptional states. Nevertheless, the precise rules defining the interplay between all these marks remain poorly characterized. In this perspective we review the current state of this research field, illustrating the power and the limitations of current approaches. Finally, we sketch future avenues of research illustrating how the adoption of specific experimental designs coupled with available experimental approaches could be critical for a significant progress in this area.
Articolo in rivista - Articolo scientifico
Chromatin regulators; Chromatin state; Epigenetic code; Epigenome editing; Histone code; Histone mark;
English
2014
5
SEP
335
open
de Pretis, S., Pelizzola, M. (2014). Computational and experimental methods to decipher the epigenetic code. FRONTIERS IN GENETICS, 5(SEP) [10.3389/fgene.2014.00335].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/447358
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