| Literature DB >> 22145013 |
J Martin Herold1, Lindsey A Ingerman, Cen Gao, Stephen V Frye.
Abstract
The recognition of methyl-lysine and -arginine residues on both histone and other proteins by specific "reader" elements is important for chromatin regulation, gene expression, and control of cell-cycle progression. Recently the crucial role of these reader proteins in cancer development and dedifferentiation has emerged, owing to the increased interest among the scientific community. The methyl-lysine and -arginine readers are a large and very diverse set of effector proteins and targeting them with small molecule probes in drug discovery will inevitably require a detailed understanding of their structural biology and mechanism of binding. In the following review, the critical elements of methyl-lysine and -arginine recognition will be summarized with respect to each protein family and initial results in assay development, probe design, and drug discovery will be highlighted.Entities:
Keywords: Histones; chemical probes; chromatin; drug discovery.; methyl-arginine; methyl-lysine; pi-cation interactions; post-translational modifications; reader domains
Year: 2011 PMID: 22145013 PMCID: PMC3229088 DOI: 10.2174/1875397301005010051
Source DB: PubMed Journal: Curr Chem Genomics ISSN: 1875-3973
IC50-Values for Select Small Molecule Ligands of Four MBT Domains as Identified by a Chemiluminescent Assay
| Entry | Compound | L3MBTL1 [µM] | L3MBTL3 [µM] | L3MBTL4 [µM] | MBth1 [µM] |
|---|---|---|---|---|---|
| 1 | 14 ± 0.7 | ND | > 100 | > 100 | |
| 2 | 21 ± 2 | 6 ± 2 | > 100 | 73 ± 14 | |
| 3 | 17 ± 0.1 | 57 ± 11 | > 100 | 59 ± 5 |