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首页> 外文期刊>ACS Omega >Role of Pseudoisocytidine Tautomerization in Triplex-Forming Oligonucleotides: In Silico and in Vitro Studies
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Role of Pseudoisocytidine Tautomerization in Triplex-Forming Oligonucleotides: In Silico and in Vitro Studies

机译:伪异胞苷互变异构在三链体形成寡核苷酸中的作用:计算机和体外研究

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Pseudoisocytidine (~(Ψ)C) is a synthetic cytidine analogue that can target DNA duplex to form parallel triplex at neutral pH. Pseudoisocytidine has mainly two tautomers, of which only one is favorable for triplex formation. In this study, we investigated the effect of sequence on ~(Ψ)C tautomerization using λ-dynamics simulation, which takes into account transitions between states. We also performed in vitro binding experiments with sequences containing ~(Ψ)C and furthermore characterized the structure of the formed triplex using molecular dynamics simulation. We found that the neighboring methylated or protonated cytidine promotes the formation of the favorable tautomer, whereas the neighboring thymine or locked nucleic acid has a poor effect, and consecutive ~(Ψ)C has a negative influence. The deleterious effect of consecutive ~(Ψ)C in a triplex formation was confirmed using in vitro binding experiments. Our findings contribute to improving the design of ~(Ψ)C-containing triplex-forming oligonucleotides directed to target G-rich DNA sequences.
机译:伪异胞苷(〜(C)C)是合成的胞苷类似物,可在中性pH下靶向DNA双链体以形成平行三链体。伪异胞苷主要有两个互变异构体,其中只有一个有利于三链体的形成。在这项研究中,我们使用λ动力学模拟研究了序列对〜(Ψ)C互变异构的影响,该模拟考虑了状态之间的转换。我们还对含有〜(Ψ)C的序列进行了体外结合实验,并使用分子动力学模拟进一步表征了形成的三链体的结构。我们发现,相邻的甲基化或质子化胞嘧啶核苷可促进有利的互变异构体的形成,而相邻的胸腺嘧啶或锁核酸的效果较差,而连续的〜(Ψ)C则具有负面影响。使用体外结合实验证实了连续〜(Ψ)C在三链体形成中的有害作用。我们的发现有助于改进针对富含G的目标DNA序列的含〜(C)C的三链体形成寡核苷酸的设计。

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