Lysine acetylation regulates gene expression through modulating protein-protein interactions in chromatin. Chemical inhibition of acetyl-lysine binding bromodomains of the major chromatin regulators BET (bromodomain and extraterminal domain) proteins has been shown to effectively block cell proliferation in cancer and inflammation. However, whether selective inhibition of individual BET bromodomains has distinctive functional consequences remains only partially understood. In this study, we show that selective chemical inhibition of the first bromodomain of BET proteins using our small-molecule inhibitor, Olinone, accelerated the progression of mouse primary oligodendrocyte progenitors toward differentiation, whereas inhibition of both bromodomains of BET proteins hindered differentiation. This effect was target specific, as it was not detected in cells treated with inactive analogs and independent of any effect on proliferation. Therefore, selective chemical modulation of individual bromodomains, rather than use of broad-based inhibitors, may enhance regenerative strategies in disorders characterized by myelin loss such as aging and neurodegeneration.
Selective chemical modulation of gene transcription favors oligodendrocyte lineage progression.
选择性地对基因转录进行化学调控有利于少突胶质细胞谱系的进展
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作者:Gacias Mar, Gerona-Navarro Guillermo, Plotnikov Alexander N, Zhang Guangtao, Zeng Lei, Kaur Jasbir, Moy Gregory, Rusinova Elena, Rodriguez Yoel, Matikainen Bridget, Vincek Adam, Joshua Jennifer, Casaccia Patrizia, Zhou Ming-Ming
| 期刊: | Chemistry & Biology | 影响因子: | 0.000 |
| 时间: | 2014 | 起止号: | 2014 Jul 17; 21(7):841-854 |
| doi: | 10.1016/j.chembiol.2014.05.009 | 研究方向: | 细胞生物学 |
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