Song Jie, Intody Zsofia, Li Mei, Wilson John H
Verna and Marrs McLean Department of Biochemistry and Molecular Biology, Baylor College of Medicine, One Baylor Plaza, Houston, TX 77030, USA.
Gene. 2004 Jan 7;324:183-90. doi: 10.1016/j.gene.2003.09.037.
Psoralen-conjugated triplex-forming oligonucleotides (pso-TFOs) can target photochemical adducts to specific DNA sequences. Here, we have used pso-TFOs to activate gene expression on a plasmid. We designed a pso-TFO adapter, consisting of a single-stranded TFO for targeting DNA, linked to a double-stranded hairpin segment that contains a hybrid ecdysone response element (E/GRE) enhancer for binding activated ecdysone receptors. When targeted to the 5' flanking region of a minimal promoter, this pso-TFO adapter increased the expression of a downstream reporter gene three- to four-fold. Gene activation, however, was independent of both the E/GRE hairpin of the adapter and ecdysone receptors, suggesting it was due to an intrinsic effect of triplex. Gene activation was dependent on psoralen photo-crosslinking. Gene activation by pso-TFOs in which the psoralen was linked to the TFO via a disulfide bond was similar before and after detachment of the TFO and its release from the triplex. These results indicate that psoralen photo-crosslinks play a prominent role in activation. Gene activation was undiminished in XPA, XPD and XPG human cell lines, indicating that activation was not dependent on the complete nucleotide excision repair (NER) pathway. Collectively, these results demonstrate that TFOs can be used to direct psoralen crosslinks adjacent to a gene as a way of activating gene expression.
补骨脂素缀合的三链形成寡核苷酸(pso-TFOs)可将光化学加合物靶向特定的DNA序列。在此,我们使用pso-TFOs来激活质粒上的基因表达。我们设计了一种pso-TFO衔接子,它由一个用于靶向DNA的单链TFO组成,与一个双链发夹片段相连,该片段包含一个用于结合活化蜕皮激素受体的杂交蜕皮激素反应元件(E/GRE)增强子。当靶向最小启动子的5'侧翼区域时,这种pso-TFO衔接子使下游报告基因的表达增加了三到四倍。然而,基因激活与衔接子的E/GRE发夹和蜕皮激素受体均无关,这表明它是由于三链体的内在效应所致。基因激活依赖于补骨脂素的光交联。在TFO脱离三链体并从其中释放前后,补骨脂素通过二硫键与TFO相连的pso-TFOs的基因激活情况相似。这些结果表明补骨脂素光交联在激活过程中起重要作用。在XPA、XPD和XPG人类细胞系中,基因激活并未减弱,这表明激活不依赖于完整的核苷酸切除修复(NER)途径。总体而言,这些结果表明TFOs可用于将补骨脂素交联引导至基因附近,作为激活基因表达的一种方式。