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Effect of DNA target sequence on triplex formation by oligo-2'-deoxy- and 2'-O-methylbonucleotides

机译:DNA靶序列对寡聚2'-脱氧和2'-O-甲基核糖核苷酸形成三链体的影响

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摘要

The interactions of pyrimidine deoxyribo- or 2'-O-methylribo-psoralen-conjugated, triplex-forming oligonucleotides, psTFOs, with a 17-bp env-DNA whose purine tract is 5'-AGAGAGAAAAAAGAG-3', or an 18-bp gag-DNA whose purine tract is 5'-AGGGGGAAAGAAAAAA-3', were studied over the pH range 6.0-7.5. The stability of the triplex formed by a deoxy-env-psTFO containing 5-methylcytosines and thymines decreased with increasing pH (T_m=56 ℃ at pH 6.0; 27 ℃ at pH 7.5). Replacement of 5-methylcytosines with 8-oxo-adenines reduced the pH dependence, but lowered triplex stability. A 2'-O-methyl-env-psTFO containing uracil and cytosine did not form a triplex at pH 7.5. Surprisingly, replacement of the cytosines in this oligomer with 5-methylcytosines dramatically increased triplex stability (T_m=25 ℃ at pH 7.5), and even greater stability was achieved by selective replacement of uracils with thymines (T_m=37 ℃ at pH 7.5). Substitution of the contiguous 5-methylcytosines of the deoxy-gag-psTFO with 8-oxo-adenines significantly reduced pH dependence and increased triplex stability. In contrast to the behavior of env-specific TFOs, triplexes formed by 2'-O-methyl-gag-psTFOs did not show enhanced stability. Replacement of the 3'-terminal phosphodiester of the TFO with a methylphosphonate group significantly increased the resistance of both deoxy- and 2'-O-methyl-TFOs to degradation by 3'-exonucleases, while maintaining triplex stability.
机译:嘧啶脱氧核糖核苷或2'-O-甲基核糖-补骨脂素缀合的三链体形成寡核苷酸psTFO与嘌呤段为5'-AGAGAGAAAAAAAAAGAG-3'或18-bp的17-bp env-DNA的相互作用在6.0-7.5的pH范围内研究了嘌呤为5'-AGGGGGAAAGAAAAAA-3'的gag-DNA。含5-甲基胞嘧啶和胸腺嘧啶的脱氧-env-psTFO形成的三链体的稳定性随pH的升高而降低(pH值为6.0时T_m = 56℃; pH值为7.5时为27℃)。用8-氧代腺嘌呤替代5-甲基胞嘧啶可降低pH依赖性,但降低三链体稳定性。含尿嘧啶和胞嘧啶的2'-O-甲基-env-psTFO在pH 7.5时不形成三链体。出乎意料的是,用5-甲基胞嘧啶取代低聚物中的胞嘧啶可显着提高三链体稳定性(在pH 7.5下T_m = 25℃),并通过用胸腺嘧啶选择性替换尿嘧啶(在pH 7.5上T_m = 37℃)获得了更大的稳定性。脱氧gag-psTFO的连续5-甲基胞嘧啶替换为8-氧代腺嘌呤可显着降低pH依赖性并增加三链体稳定性。与env特定的TFO的行为相反,由2'-O-甲基-gag-psTFO形成的三链体未显示出增强的稳定性。用甲基膦酸酯基团代替TFO的3'-末端磷酸二酯显着增加了脱氧-和2'-O-甲基-TFO对3'-核酸外切酶降解的抵抗力,同时保持了三链体稳定性。

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