Do protein motifs read the histone code?
Open Access
- 21 January 2005
- Vol. 27 (2) , 164-175
- https://doi.org/10.1002/bies.20176
Abstract
The existence of different patterns of chemical modifications (acetylation, methylation, phosphorylation, ubiquitination and ADP‐ribosylation) of the histone tails led, some years ago, to the histone code hypothesis. According to this hypothesis, these modifications would provide binding sites for proteins that can change the chromatin state to either active or repressed. Interestingly, some protein domains present in histone‐modifying enzymes are known to interact with these covalent marks in the histone tails. This was first shown for the bromodomain, which was found to interact selectively with acetylated lysines at the histone tails. More recently, it has been described that the chromodomain can be targeted to methylation marks in histone N‐terminal domains. Finally, the interaction between the SANT domain and histones is also well documented. Overall, experimental evidence suggests that these domains could be involved in the recruitment of histone‐modifying enzymes to discrete chromosomal locations, and/or in the regulation their enzymatic activity. Within this context, we review the distribution of bromodomains, chromodomains and SANT domains among chromatin‐modifying enzymes and discuss how they can contribute to the translation of the histone code. BioEssays 27:164–175, 2005.Keywords
This publication has 91 references indexed in Scilit:
- The SANT domain: a unique histone-tail-binding module?Nature Reviews Molecular Cell Biology, 2004
- The Pfam protein families databaseNucleic Acids Research, 2004
- Members of the CDY family have different expression patterns: CDY1 transcripts have the best correlation with complete spermatogenesisHuman Genetics, 2003
- Histone Methyltransferase Activity of a Drosophila Polycomb Group Repressor ComplexCell, 2002
- Drosophila Enhancer of Zeste/ESC Complexes Have a Histone H3 Methyltransferase Activity that Marks Chromosomal Polycomb SitesCell, 2002
- Translating the Histone CodeScience, 2001
- Solution structure and acetyl-lysine binding activity of the GCN5 bromodomainJournal of Molecular Biology, 2000
- The language of covalent histone modificationsNature, 2000
- The bromodomain of Gcn5p interacts in vitro with specific residues in the N terminus of histone H4 1 1Edited by T. RichmondJournal of Molecular Biology, 1999
- Self-association of chromo domain peptidesBiochimica et Biophysica Acta (BBA) - Protein Structure and Molecular Enzymology, 1997