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Triple helix formation by purine-rich oligonucleotides targeted to the human dihydrofolate reductase promoter

机译:靶向人二氢叶酸还原酶启动子的富嘌呤寡核苷酸形成三重螺旋

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The ability of oligodeoxynucleotides to form specific triple helical structures with critical regulatory sequences in the human dlhydrofolate reductase (DHFR) promoter was investigated. A battery of purine-rich ollgonucleotldes targeted to the two purine-pyrimidine strand biased regions near the DHFR transcription initiation site was developed. The stable triple helical structures formed by binding of the ollgonucleotldes to the native promoter double helix were dominated by G*G-C triplets, with interspersed C*C-G and A*A-T alignments. Mismatches between the oligonucleotlde and the purine-rich strand of the target significantly destabilized third strand binding, and a G*A-T alignment was particularly unfavorable. Formation of a pur-pur-pyr triple helical structure results in a localized limitation of access to the native double helical DNA and produces sequence dependent conformatlonal alterations extending several nucleotides beyond the triplex-duplex boundary. Although they differ only by the insertion of two A-T base pairs, the distal and proximal purine-pyrimidine regions can be targeted individually due to the high degree of sequence specificity of triple helical alignment. Triplex formation overlapping any of three consensus transcriptional regulatory elements and collectively covering 50% of the DHFR core promoter is now possible with this set of oligonucleotides.
机译:研究了人脱氢叶酸还原酶(DHFR)启动子中寡聚脱氧核苷酸形成具有关键调控序列的特定三螺旋结构的能力。开发了一系列富含嘌呤的寡核苷酸,其靶向DHFR转录起始位点附近的两个嘌呤-嘧啶链偏向区域。寡核苷酸与天然启动子双螺旋结合形成的稳定三螺旋结构主要由G * GC三胞胎,散布的C * CG和A *主导 AT对齐方式。寡核苷酸与靶标的富含嘌呤的链之间的错配显着破坏了第三链结合的稳定性,并且特别不利于G * A-T比对。 pur-pur-pyr三螺旋结构的形成导致对天然双螺旋DNA的访问受到局限性限制,并产生依赖序列的共构改变,从而将多个核苷酸延伸到三链双链体边界之外。尽管它们的区别仅在于插入两个A-T碱基对,但由于三重螺旋比对的高度序列特异性,远端和近端嘌呤-嘧啶区可以单独靶向。利用这组寡核苷酸,现在有可能与三个共有转录调控元件中的任何一个重叠的三链体形成并共同覆盖50%的DHFR核心启动子。

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