HATs and HDACs: from structure, function and regulation to novel strategies for therapy and prevention
Top Cited Papers
- 13 August 2007
- journal article
- review article
- Published by Springer Nature in Oncogene
- Vol. 26 (37) , 5310-5318
- https://doi.org/10.1038/sj.onc.1210599
Abstract
Acetylation of the ɛ-amino group of a lysine residue was first discovered with histones in 1968, but the responsible enzymes, histone acetyltransferases and deacetylases, were not identified until the mid-1990s. In the past decade, knowledge about this modification has exploded, with targets rapidly expanding from histones to transcription factors and other nuclear proteins, and then to cytoskeleton, metabolic enzymes, and signaling regulators in the cytoplasm. Thus, protein lysine acetylation has emerged as a major post-translational modification to rival phosphorylation. In this issue of Oncogene, 19 articles review various aspects of the enzymes governing lysine acetylation, especially about their intimate links to cancer. To introduce the articles, we highlight here four central themes: (i) multisubunit enzymatic complexes; (ii) non-histone substrates in diverse cellular processes; (iii) interplay of lysine acetylation with other regulatory mechanisms, such as noncoding RNA-mediated gene silencing and activation; and (iv) novel therapeutic strategies and preventive measures to combat cancer and other human diseases.Keywords
This publication has 140 references indexed in Scilit:
- Histone acetyltransferase complexes: one size doesn't fit allNature Reviews Molecular Cell Biology, 2007
- Histone H3-K56 Acetylation Is Catalyzed by Histone Chaperone-Dependent ComplexesMolecular Cell, 2007
- Chromatin Modifications and Their FunctionCell, 2007
- Acetylation of the p53 DNA-Binding Domain Regulates Apoptosis InductionPublished by Elsevier ,2006
- Reading protein modifications with interaction domainsNature Reviews Molecular Cell Biology, 2006
- Histone deacetylase inhibitors and the promise of epigenetic (and more) treatments for cancerNature Reviews Cancer, 2006
- The CREB coactivator TORC2 is a key regulator of fasting glucose metabolismNature, 2005
- An essential role for CoREST in nucleosomal histone 3 lysine 4 demethylationNature, 2005
- Histone Demethylation Mediated by the Nuclear Amine Oxidase Homolog LSD1Cell, 2004
- The Transcriptional Coactivators p300 and CBP Are Histone AcetyltransferasesPublished by Elsevier ,1996