抗原和箝位寡核苷酸基因表达的序列特异性控制。

C Hélène, C Giovannangeli, A L Guieysse-Peugeot, D Praseuth
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引用次数: 25

摘要

在转录水平上的基因表达控制可以通过三联体形成的寡核苷酸来实现,只要目标序列在细胞核的染色质结构内是可接近的。使用寡核苷酸-补骨脂素偶联物作为探针,我们已经证明编码白细胞介素2受体α亚基的基因启动子区域和整合HIV病毒的多嘌呤通道可以在细胞培养中形成序列特异性的三螺旋复合物。寡核苷酸插入物缀合物可以通过与转录因子结合竞争来抑制转录起始。含有N3′->P5′磷酰胺键的寡核苷酸类似物形成稳定的三螺旋结构,能够在延伸阶段阻止转录。夹紧寡核苷酸也可以在单链靶上形成三螺旋。一种靶向HIV RNA多嘌呤通道的钳子能够阻断病毒RNA的逆转录。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sequence-specific control of gene expression by antigene and clamp oligonucleotides.

Control of gene expression at the transcriptional level can be achieved with triplex-forming oligonucleotides provided that the target sequence is accessible within the chromatin structure of cell nuclei. Using oligonucleotide-psoralen conjugates as probes we have shown that the promoter region of the gene encoding the alpha subunit of the interleukin 2 receptor and the polypurine tract of integrated HIV provirus can form sequence-specific, triple-helical complexes in cell cultures. Oligonucleotide-intercalator conjugates can inhibit transcription initiation by competing with transcription factor binding. Oligonucleotide analogues containing N3'-->P5' phosporamidate linkages form stable triple helices that are able to arrest transcription at the elongation step. A triple helix can also be formed on a single-stranded target by clamp oligonucleotides. A clamp targeted to the polypurine tract of HIV RNA is able to block reverse transcription of the viral RNA.

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