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首页> 外文期刊>Nucleic Acids Research >Purine twisted-intercalating nucleic acids: a new class of anti-gene molecules resistant to potassium-induced aggregation.
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Purine twisted-intercalating nucleic acids: a new class of anti-gene molecules resistant to potassium-induced aggregation.

机译:嘌呤扭曲插入核酸:一类新的抗钾诱导的聚集抗基因分子。

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摘要

Sequence-specific targeting of genomic DNA by triplex-forming oligonucleotides (TFOs) is a promising strategy to modulate in vivo gene expression. Triplex formation involving G-rich oligonucleotides as third strand is, however, strongly inhibited by potassium-induced TFO self-association into G-quartet structures. We report here that G-rich TFOs with bulge insertions of (R)-1-O-[4-(1-pyrenylethynyl)-phenylmethyl] glycerol (called twisted intercalating nucleic acids, TINA) show a much lower tendency to aggregate in potassium than wild-type analogues do. We designed purine-motif TINA-TFOs for binding to a regulatory polypurine-polypyrimidine (pur/pyr) motif present in the promoter of the KRAS proto-oncogene. The binding of TINA-TFOs to the KRAS target has been analysed by electrophoresis mobility shift assays and DNase I footprinting experiments. We discovered that in the presence of potassium the wild-type TFOs did not bind to the KRAS target, differently from the TINA analogues, whose binding was observed up to 140 mM KCl. The designed TINA-TFOs were found to abrogate the formation of a DNA-protein complex at the pur/pyr site and to down-regulate the transcription of CAT driven by the murine KRAS promoter. Molecular modelling of the DNA/TINA-TFO triplexes are also reported. This study provides a new and promising approach to create TFOs to target in vivo the genome.
机译:通过三链体形成寡核苷酸(TFO)对基因组DNA进行序列特异性靶向是调节体内基因表达的有前途的策略。但是,钾诱导的TFO自缔合为G四重态结构会强烈抑制涉及富含G的寡核苷酸作为第三链的三链体形成。我们在这里报告,带有(R)-1-O- [4-(1-苯乙炔基乙炔基)-苯基甲基]甘油的隆隆插入的富含G的TFO(称为扭曲插入核酸,TINA)显示出在钾中聚集的趋势要低得多比野生型类似物好。我们设计了嘌呤基序的TINA-TFO,以与存在于KRAS原癌基因启动子中的调节性聚嘌呤-聚嘧啶(pur / pyr)基序结合。 TINA-TFO与KRAS靶标的结合已通过电泳迁移率迁移分析和DNase I足迹实验进行了分析。我们发现,在钾的存在下,野生型TFOs不会与KRAS靶标结合,这与TINA类似物不同,后者在高达140 mM KCl的情况下均能结合。发现设计的TINA-TFO消除了pur / pyr位点的DNA-蛋白质复合物的形成,并下调了由鼠KRAS启动子驱动的CAT的转录。还报道了DNA / TINA-TFO三链体的分子模型。这项研究提供了一种新的有前途的方法来创建TFO靶向体内基因组。

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