Department of Science, Graduate School of Science, Kyoto University, Sakyo, Kyoto 606-8501, Japan.
Bioorg Med Chem. 2013 Jul 15;21(14):4201-9. doi: 10.1016/j.bmc.2013.05.002. Epub 2013 May 13.
Development of multifunctional transcriptional activators is of increasing importance as they could trigger complicated gene networks. Recently, we developed a differential gene activating multifunctional small molecule SAHA-PIP (Sδ) by conjugating a histone deacetylase (HDAC) inhibitor, SAHA, to a selective DNA-binding pyrrole-imidazole polyamide (PIP). Epigenetic activity of Sδ was attributed to the active metal-binding (-NHOH) domain of SAHA. We synthesized a derivative of Sδ, called Jδ to evaluate the role of surface recognition domain (-phenyl) of SAHA in Sδ-mediated transcriptional activation. In vitro studies revealed that Jδ displayed potent inhibitory activity against HDAC8. Jδ retained the pluripotency gene-inducing ability of Sδ when used alone and in combination with Sδ; a notable increase in the pluripotency gene expression was observed. Interestingly, Jδ significantly induced the expression of HDAC8-controlled Otx2 and Lhx1. Our results suggest that the epigenetic activity of our multifunctional molecule could be altered to improve its efficiency as a transcriptional activator for intricate gene network(s).
多功能转录激活剂的开发越来越重要,因为它们可以触发复杂的基因网络。最近,我们通过将组蛋白去乙酰化酶(HDAC)抑制剂 SAHA 与选择性 DNA 结合吡咯-咪唑聚酰胺(PIP)偶联,开发了一种多功能小分子 SAHA-PIP(Sδ)。Sδ 的表观遗传活性归因于 SAHA 的活性金属结合(-NHOH)结构域。我们合成了 Sδ 的衍生物 Jδ,以评估 SAHA 的表面识别结构域(-苯基)在 Sδ 介导的转录激活中的作用。体外研究表明,Jδ 对 HDAC8 具有很强的抑制活性。当单独使用和与 Sδ 联合使用时,Jδ 保留了 Sδ 的多能基因诱导能力;观察到多能基因表达显著增加。有趣的是,Jδ 显著诱导了 HDAC8 控制的 Otx2 和 Lhx1 的表达。我们的结果表明,我们的多功能分子的表观遗传活性可以改变,以提高其作为复杂基因网络转录激活剂的效率。