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Aromatic N versus aromatic F: bioisosterism discovered in RNA base pairing interactions leads to a novel class of universal base analogs

机译:芳香氮与芳香族F:在RNA碱基配对相互作用中发现的生物等位基因导致了一类新的通用碱基类似物

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The thermodynamics of base pairing is of fundamental importance. Fluorinated base analogs are valuable tools for investigating pairing interactions. To understand the influence of direct base-base interactions in relation to the role of water, pairing free energies between natural nucleobases and fluorinated analogs are estimated by potential of mean force calculations. Compared to pairing of AU and GC, pairing involving fluorinated analogs is unfavorable by 0.5-1.0 kcal mol(-1). Decomposing the pairing free energies into enthalpic and entropic contributions reveals fundamental differences for Watson-Crick pairs compared to pairs involving fluorinated analogs. These differences originate from direct base-base interactions and contributions of water. Pairing free energies of fluorinated base analogs with natural bases are less unfavorable by 0.5-1.0 kcal mol(-1) compared to non-fluorinated analogs. This is attributed to stabilizing C-(FH)-H-...-N dipolar interactions and stronger (NH)-H-...-C hydrogen bonds, demonstrating direct and indirect influences of fluorine. 7-methyl-7H-purine and its 9-deaza analog (Z) have been suggested as members of a new class of non-fluorinated base analogs. Z is found to be the least destabilizing universal base in the context of RNA known to date. This is the first experimental evidence for nitrogen-containing heterocylces as bioisosteres of aromatic rings bearing fluorine atoms.
机译:碱基配对的热力学至关重要。氟化碱基类似物是研究配对相互作用的有价值的工具。为了了解直接的碱基间相互作用与水的作用有关的影响,通过平均力计算的潜力来估算天然核碱基与氟化类似物之间的自由能配对。与AU和GC配对相比,含氟类似物的配对对0.5-1.0 kcal mol(-1)不利。将成对的自由能分解为焓和熵的贡献表明,与涉及氟化类似物的对相比,沃森-克里克对具有根本的区别。这些差异源自直接的水基相互作用。与非氟化类似物相比,氟化类似物与天然碱的自由能成对减少0.5-1.0 kcal mol(-1)。这归因于稳定的C-(FH)-H -...- N偶极相互作用和更强的(NH)-H -...- C氢键,这表明了氟的直接和间接影响。有人建议将7-甲基-7H-嘌呤及其9-脱氮类似物(Z)视为一类新的非氟化碱基类似物。在迄今为止已知的RNA的背景下,发现Z是最不稳定的通用碱基。这是含氮杂环作为带有氟原子的芳香环的生物等排体的第一个实验证据。

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