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首页> 外文期刊>Helvetica chimica acta >The Base-Pairing Properties of 7-Deaza-2'-deoxyisoguanosine and 2'-Deoxyisoguanosine in Oligonucleotide Duplexes with Parallel and Antiparallel Chain Orientation
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The Base-Pairing Properties of 7-Deaza-2'-deoxyisoguanosine and 2'-Deoxyisoguanosine in Oligonucleotide Duplexes with Parallel and Antiparallel Chain Orientation

机译:具有平行和反平行链取向的寡核苷酸双链体中7-Deaza-2'-deoxyisoguanosine和2'-Deoxyisoguanosine的碱基配对性质

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Oligonucleotides with parallel (ps) or antiparallel (aps) chain orientation containing 7-deaza-2'-deoxyisoguanosine (1)or 2'-deoxyisoguanosine (2) were prepared. The phosphoramidite and phosphonate building blocks 3-6 were synthesized and used in solid-phase synthesis. The diphenylcarbamoyl (dpc) residue was used for the 2-oxo group protection and the isobutyryl (iBu=ib) resudue for the amino function. Hybridization experiments were performed with oligonucleotides containing 7-deazaisoguanine or isoguanine. Regarding 7-deazapurine-containing oligonucleotides, the 7-deazaisoguanine cytosine base pair was the strongest in ps-duplexes, while that of 7-deazaisoguanine . 5-methlisocytosine was the most stable one in aps-DNA. Ambiguous base pairing of 7-deazaisoguanine with cytosine, 5-methyliocytosine, thymine, and guanine was observed in the case of aps-duplexes, whereas in ps-duplexes, the ambiguity was extended to adenine. The 7-deazaisoguanine-containing duplexes showed almost identical base-pair stabilities as those containing isoguanine. According to this, various base-pair motifs are proposed. The 7-deaza-2'-deoxyisoguanosine was found to be an effective substitute of 2'-deoxyisoguanosine.
机译:制备具有7-脱氮基2'-脱氧异鸟苷(1)或2'-脱氧异鸟苷(2)的具有平行(ps)或反平行(aps)链取向的寡核苷酸。合成了亚磷酰胺和膦酸酯结构单元3-6,并将其用于固相合成。二苯基氨基甲酰基(dpc)残基用于保护2-氧代基团,异丁酰基(iBu = ib)用于氨基官能团。用含有7-脱氮异鸟嘌呤或异鸟嘌呤的寡核苷酸进行杂交实验。关于含7-脱氮嘌呤的寡核苷酸,在ps-双链体中7-脱氮异鸟嘌呤胞嘧啶碱基对最强,而7-脱氮异鸟嘌呤则最强。 5-甲基胞嘧啶是aps-DNA中最稳定的一种。在aps双链体的情况下,观察到7-脱氮异鸟嘌呤与胞嘧啶,5-甲基碘胞嘧啶,胸腺嘧啶和鸟嘌呤的碱基配对不明确,而在ps双链体中,歧义扩展到腺嘌呤。含7-脱氮异鸟嘌呤的双链体显示出与含异鸟嘌呤的碱基对几乎相同的碱基对稳定性。据此,提出了各种碱基对基序。发现7-脱氮基2'-脱氧异鸟苷是2'-脱氧异鸟苷的有效替代物。

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