首页> 美国卫生研究院文献>Nucleic Acids Research >DNA binding and antigene activity of a daunomycin-conjugated triplex-forming oligonucleotide targeting the P2 promoter of the human c-myc gene
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DNA binding and antigene activity of a daunomycin-conjugated triplex-forming oligonucleotide targeting the P2 promoter of the human c-myc gene

机译:靶向人c-myc基因P2启动子的道诺霉素共轭三链体形成寡核苷酸的DNA结合和抗原活性

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摘要

Triplex-forming oligonucleotides (TFO) that bind DNA in a sequence-specific manner might be used as selective repressors of gene expression and gene-targeted therapeutics. However, many factors, including instability of triple helical complexes in cells, limit the efficacy of this approach. In the present study, we tested whether covalent linkage of a TFO to daunomycin, which is a potent DNA-intercalating agent and anticancer drug, could increase stability of the triple helix and activity of the oligonucleotide in cells. The 11mer daunomycin-conjugated GT (dauno-GT11) TFO targeted a sequence upstream of the P2 promoter, a site known to be critical for transcription of the c-myc gene. Band-shift assays showed that the dauno-GT11 formed triplex DNA with enhanced stability compared to the unmodified TFO. Band shift and footprinting experiments demonstrated that binding of dauno-GT11 was highly sequence-specific with exclusive binding to the 11 bp target site in the c-myc promoter. The daunomycin-conjugated TFO inhibited transcription in vitro and reduced c-myc promoter activity in prostate and breast cancer cells. The daunomycin-conjugated TFO was taken up by cells with a distinctive intracellular distribution compared to free daunomycin. However, cationic lipid-mediated delivery was required for enhanced cellular uptake, nuclear localization and biological activity of the TFO in cells. Dauno-GT11 reduced transcription of the endogenous c-myc gene in cells, but did not affect expression of non-target genes, such as ets-1 and ets-2, which contained very similar target sequences in their promoters. Daunomycin-conjugated control oligonucleotides unable to form triplex DNA with the target sequence did not have any effect in these assays, indicating that daunomycin was not directly responsible for the activity of daunomycin-conjugated TFO. Thus, attachment of daunomycin resulted in increased triplex stability and biological activity of the 11mer GT-rich TFO without compromising its specificity. These results encourage further testing of this approach to develop novel antigene therapeutics.
机译:以序列特异性方式结合DNA的三链形成寡核苷酸(TFO)可用作基因表达和基因靶向治疗剂的选择性阻遏物。但是,许多因素,包括细胞中三螺旋复合物的不稳定性,限制了该方法的有效性。在本研究中,我们测试了TFO与道诺霉素(一种有效的DNA嵌入剂和抗癌药)的共价连接是否可以增加三螺旋的稳定性和寡核苷酸在细胞中的活性。 11mer daunomycin偶联的GT(dauno-GT11)TFO靶向P2启动子上游的序列,该位点已知对c-myc基因的转录至关重要。带移分析表明,与未修饰的TFO相比,dauno-GT11形成的三链DNA具有更高的稳定性。带移和足迹实验表明,dauno-GT11的结合具有高度序列特异性,并且与c-myc启动子中的11 bp目标位点具有排他性结合。结合达莫霉素的TFO在体外抑制转录,并降低前列腺和乳腺癌细胞中的c-myc启动子活性。与游离的道诺霉素相比,结合了道诺霉素的TFO被细胞内分布明显的细胞吸收。但是,阳离子脂质介导的传递是增强细胞中TFO的细胞摄取,核定位和生物活性所必需的。 Dauno-GT11减少了细胞中内源性c-myc基因的转录,但不影响非目标基因的表达,例如ets-1和ets-2,其启动子中包含非常相似的靶序列。无法与靶序列形成三链体DNA的与道诺霉素共轭的对照寡核苷酸在这些测定中没有任何作用,表明道诺霉素对与道诺霉素共轭的TFO的活性不直接负责。因此,附有道诺霉素导致富含11mer GT的TFO的三链体稳定性和生物活性增加,而没有损害其特异性。这些结果鼓励对该方法进行进一步测试以开发新的抗原疗法。

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