首页> 外文期刊>The Journal of Organic Chemistry >Double-Coding Nucleic Acids: Introduction of a Nucleobase Sequence in the Major Groove of the DNA Duplex Using Double- Headed Nucleotides
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Double-Coding Nucleic Acids: Introduction of a Nucleobase Sequence in the Major Groove of the DNA Duplex Using Double- Headed Nucleotides

机译:双编码核酸:使用双头核苷酸在DNA双链体的主要凹槽中引入碱基序列

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A series of double-headed nucleosides were synthesized using the Sonogashira cross-coupling reaction. In the reactions, additional nucleobases (thymine, cytosine, adenine, or guanine) were attached to the 5-position of 2′- deoxyuridine or 2′-deoxycytidine through a propyne linker. The modified nucleosides were incorporated into oligonucleotides, and these were combined in different duplexes that were analyzed by thermal denaturation studies. All of the monomers were well tolerated in the DNA duplexes and induced only small changes in the thermal stability. Consecutive incorporations of the monomers led to increases in duplex stability owing to increased stacking interactions. The modified nucleotide monomers maintained the Watson?Crick base pair fidelity. Stable duplexes were observed with heavily modified oligonucleotides featuring 14 consecutive incorporations of different double-headed nucleotide monomers. Thus, modified duplexes with an array of nucleobases on the exterior of the duplex were designed. Molecular dynamics simulations demonstrated that the additional nucleobases could expose their Watson?Crick and/or Hoogsteen faces for recognition in the major groove. This presentation of nucleobases may find applications in providing molecular information without unwinding the duplex.
机译:使用Sonogashira交叉偶联反应合成了一系列双头核苷。在反应中,另外的核碱基(胸腺嘧啶,胞嘧啶,腺嘌呤或鸟嘌呤)通过丙炔接头连接到2'-脱氧尿苷或2'-脱氧胞苷的5位。将修饰的核苷掺入寡核苷酸中,并将它们合并在不同的双链体中,通过热变性研究对其进行分析。在DNA双链体中,所有单体均具有良好的耐受性,并且仅引起热稳定性的微小变化。由于堆叠相互作用的增加,单体的连续引入导致双链体稳定性的增加。修饰的核苷酸单体保持了Watson?Crick碱基对的保真度。用经过重修饰的寡核苷酸观察到了稳定的双链体,该寡核苷酸具有14个连续的不同双头核苷酸单体的掺入特征。因此,设计了在双链体的外部具有核碱基阵列的修饰的双链体。分子动力学模拟表明,其他核碱基可以使它们的Watson?Crick和/或Hoogsteen面暴露出来,以便在主沟中识别。核碱基的这种展示可能会发现在提供分子信息而无需展开双链体的过程中的应用。

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