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Alternate strand recognition of double-helical DNA by (T,G)-containing oligonucleotides in the presence of a triple helix-specific ligand.

机译:在三重螺旋特异性配体的存在下,含(T,G)的寡核苷酸对双螺旋DNA的交替链识别。

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摘要

Triple helix formation requires a polypurine- polypyrimidine sequence in the target DNA. Recent works have shown that this constraint can be circumvented by using alternate strand triplex-forming oligonucleotides. We have previously demonstrated that (T,G)-containing triplex- forming oligonucleotides may adopt a parallel or an antiparallel orientation with respect to an oligopurine target, depending upon the sequence and, in particular, upon the number of 5'-GpT-3' and 5'-TpG-3' steps [Sun et al. (1991) C.R. Acad. Sci. Paris Ser III, 313, 585-590]. A single (T,G)-containing oligonucleotide can therefore interact with two oligopurine stretches which alternate on the two strands of the target DNA. The (T,G) switch oligonucleotide contains a 5'-part targeted to one of the oligopurine sequences in a parallel orientation followed by a 3'-part that adopts an antiparallel orientation with respect to the second oligopurine sequence. We show that a limitation to the stability of such a triplex may arise from the instability of the antiparallel part, composed of reverse-Hoogsteen C.GxG and T.AxT base triplets. Using DNase I footprinting and ultraviolet absorption experiments, we report that a benzo[e]pyridoindole derivative [(3-methoxy- 7H-8-methyl-11-[(3'-amino-propyl) amino] benzo[e]pyrido [4,3-b]indole (BePI)], a drug interacting more tightly with a triplex than with a duplex DNA, strongly stabilizes triplexes with reverse-Hoogsteen C.GxG and T.AxT triplets thus allowing a stabilization of the triplex-forming switch (T,G) oligonucleotide on alternating oligopurine- oligopyrimidine 5'-(Pu)14(Py)14-3' duplex sequences. These results lead to an extension of the range of oligonucleotide sequences for alternate strand recognition of duplex DNA.
机译:三螺旋的形成需要靶DNA中的聚嘌呤-聚嘧啶序列。最近的工作表明,可以通过使用形成双链三链体的寡核苷酸来绕开这种限制。先前我们已经证明,含(T,G)的三链体形成寡核苷酸可相对于寡嘌呤靶标采取平行或反平行取向,这取决于序列,尤其是取决于5'-GpT-3的数目'和5'-TpG-3'步骤[Sun等。 (1991)C.R. Acad。科学巴黎Ser III,313,585-590]。因此,单个含(T,G)的寡核苷酸可以与在靶DNA的两条链上交替的两个寡嘌呤片段相互作用。 (T,G)开关寡核苷酸包含以平行方向靶向寡嘌呤序列之一的5′部分,随后是相对于第二个寡嘌呤序列采用反平行取向的3′部分。我们表明,由反向Hoogsteen C.GxG和T.AxT基三胞胎组成的反平行部分的不稳定性可能会导致这种三链体稳定性的限制。使用DNase I足迹和紫外线吸收实验,我们报道了苯并[e]吡啶并吲哚衍生物[(3-甲氧基-7H-8-甲基-11-[(3'-氨基-丙基)氨基]苯并[e]吡啶并[ 4,3-b]吲哚(BePI)]与三链体的相互作用比与双链体DNA的相互作用更紧密,可通过反向Hoogsteen C.GxG和T.AxT三联体牢固地稳定三链体,从而稳定三链体的形成在交替的寡嘌呤-寡嘧啶5'-(Pu)14(Py)14-3'双链体序列上切换(T,G)寡核苷酸,这些结果导致了用于双链体DNA交替链识别的寡核苷酸序列范围的扩大。

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