Xiao Xiangshu, Yu Peng, Lim Hyun-Suk, Sikder Devanjan, Kodadek Thomas
Division of Translational Research, Department of Internal Medicine, University of Texas Southwestern Medical Center, 5323 Harry Hines Blvd, Dallas, Texas 75390-9185, USA.
J Comb Chem. 2007 Jul-Aug;9(4):592-600. doi: 10.1021/cc070023a. Epub 2007 May 27.
Synthetic molecules capable of activating the expression of specific genes are of great interest as tools for biological research and, potentially, as a novel class of pharmaceutical agents. It has been demonstrated previously that such synthetic transcription factor mimics (STFMs) can be constructed by connecting a sequence-specific DNA-binding module to a molecule capable of binding to the transcriptional machinery via a suitable linker. These chimeras mimic the two basic properties of native transcription factors, which are able to recognize a promoter sequence specifically and to recruit the transcriptional machinery to that promoter. However, none of the compounds of this type reported to date have been shown to function in living cells. We report here the first example of a cell-permeable STFM that activates the transcription of a reporter gene in mammalian cells. The compound is composed of a cell-permeable coactivator-binding peptoid fused to a DNA-binding hairpin polyamide. The peptoid was identified by screening a combinatorial library of approximately 50,000 compounds for binding to the KIX domain of the CREB-binding protein (CBP), a mammalian transcription coactivator. When incubated with cultured HeLa cells carrying a luciferase reporter plasmid bearing several hairpin polyamide-binding sites, a 5-fold increase in luciferase expression was observed. These experiments set the stage for the identification of hairpin polyamide-peptoid conjugates that are targeted to native genes.
能够激活特定基因表达的合成分子作为生物学研究工具以及潜在的新型药物制剂备受关注。先前已证明,此类合成转录因子模拟物(STFMs)可通过将序列特异性DNA结合模块与能够通过合适接头与转录机制结合的分子相连来构建。这些嵌合体模拟了天然转录因子的两个基本特性,即能够特异性识别启动子序列并将转录机制招募到该启动子上。然而,迄今为止报道的这类化合物均未在活细胞中发挥作用。我们在此报告了首个可穿透细胞的STFM实例,它能在哺乳动物细胞中激活报告基因的转录。该化合物由与DNA结合发夹聚酰胺融合的可穿透细胞的共激活因子结合类肽组成。通过筛选约50,000种化合物的组合文库以寻找与哺乳动物转录共激活因子CREB结合蛋白(CBP)的KIX结构域结合的类肽,从而鉴定出该类肽。当与携带带有多个发夹聚酰胺结合位点的荧光素酶报告质粒的培养HeLa细胞一起孵育时,观察到荧光素酶表达增加了5倍。这些实验为鉴定靶向天然基因的发夹聚酰胺 - 类肽缀合物奠定了基础。