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Translating the Histone Code

Science · 2001 · Vol. 293(5532) · pp. 1074–1080
Thomas JenuweinC. David Allis

Abstract

Chromatin, the physiological template of all eukaryotic genetic information, is subject to a diverse array of posttranslational modifications that largely impinge on histone amino termini, thereby regulating access to the underlying DNA. Distinct histone amino-terminal modifications can generate synergistic or antagonistic interaction affinities for chromatin-associated proteins, which in turn dictate dynamic transitions between transcriptionally active or transcriptionally silent chromatin states. The combinatorial nature of histone amino-terminal modifications thus reveals a "histone code" that considerably extends the information potential of the genetic code. We propose that this epigenetic marking system represents a fundamental regulatory mechanism that has an impact on most, if not all, chromatin-templated processes, with far-reaching consequences for cell fate decisions and both normal and pathological development.

Genomics and Chromatin DynamicsEpigenetics and DNA MethylationCancer-related gene regulationHistone codeChromatinHistoneGenetic codeEpigeneticsBiologyComputational biologyHistone H2AEpigenomicsChromatin remodeling

MeSH terms

AcetylationAmino Acid SequenceAnimalsChromatinGene Expression RegulationHistonesMethylationMolecular Sequence DataPhosphorylationTranscription, GeneticTranscriptional ActivationProtein Structure, TertiaryGenomic ImprintingGene Silencing
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References
The language of covalent histone modifications
Nature · 2000 · 8,530 citations
Histone Acetyltransferases
Annual Review of Biochemistry · 2001 · 1,832 citations
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