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Formation of a G-tetrad and higher order structures correlates with biological activity of the RelA (NF-kappaB p65) 'antisense' oligodeoxynucleotide

机译:G-四联体和更高阶结构的形成与RelA(NF-kappaB p65)'反义'寡脱氧核苷酸的生物学活性相关

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We have examined the behavior of the phosphorothioate antisense Rel A (NF-kappaB p65) oligodeoxynucleotide (oligo) and related molecules. Because of the presence of a G-tetrad near its 5'terminus, this molecule is capable of forming tetraplexes and other higher order structures in a temperature and time dependent manner. The G-tetrad in the phosphodiester congener is protected from methylation by dimethylsulfate when the oligomer is 3'-phosphorylated. However, this protection is completely lost when it is 5'phosphorylated, indicating that the formation of at least some higher order structures has been blocked. In addition, we also prevented tetraplex formation by substitution of 7-deazaguanosine (7-DG) for guanosine at several positions within and outside of the tetrad. This substitution retains Watson-Crick base pair hybridization but prevents Hoogsteen base-pair interactions. When murine K-Balb cells were treated with 20microM antisense RelA oligo, complete blockade of nuclear translocation of RelA was observed. However, this effect was virtually entirely abrogated in most cases by 7-DG substitution within the tetrad, but retained when the substitution was made 3' to the tetrad. The AS RelA-induced downregulation of Sp-1 activity behaved similarly after 7-DG substitution. Thus, the parent phosphorothioate AS RelA molecule cannot be a Watson-Crick antisense agent. However, these conclusions cannot be extrapolated to other G-tetrad containing oligomers and each must be evaluated individually.
机译:我们已经检查了硫代磷酸酯反义Rel A(NF-kappaB p65)寡脱氧核苷酸(oligo)和相关分子的行为。由于在其5'末端附近存在G-tetrad,因此该分子能够以温度和时间相关的方式形成四链体和其他更高阶的结构。当低聚物被3'-磷酸化时,磷酸二酯同源物中的G-四联体被保护免受甲基二甲基化的甲基化。然而,当其被5'磷酸化时,该保护作用完全丧失,表明至少一些更高阶结构的形成已被阻断。此外,我们还通过在四分体内外的多个位置上用7-脱氮鸟苷(7-DG)取代鸟苷来防止四链体形成。该取代保留了Watson-Crick碱基对杂交,但阻止了Hoogsteen碱基对相互作用。当用20microM反义RelA寡核苷酸处理鼠K-Balb细胞时,观察到RelA的核易位完全被阻断。但是,在大多数情况下,通过在tetrad内进行7-DG取代实际上消除了这种作用,但是在对tetrad进行3'取代时这种作用得以保留。在7-DG取代后,AS RelA诱导的Sp-1活性下调表现相似。因此,母体硫代磷酸酯AS RelA分子不能是Watson-Crick反义剂。但是,这些结论不能外推至其他含G-tetrad的低聚物,因此必须分别进行评估。

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