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5-氯尿嘧啶碱基与天然核苷碱基的比较。结构和光谱研究,以及三种建议的抗病毒修饰核苷。

Base pairs with 5-chloroorotic acid and comparison with the natural nucleobase. Structural and spectroscopic study, and three suggested antiviral modified nucleosides.

机构信息

Departamento de Química Física, Facultad de Ciencias Químicas, Universidad Complutense, Madrid, Spain.

Dpto. de Enfermería, Facultad de Enfermería, Fisioterapia y Podología, Universidad Complutense, Madrid, Spain.

出版信息

J Biomol Struct Dyn. 2024 Jul;42(10):4956-4984. doi: 10.1080/07391102.2023.2226738. Epub 2023 Jul 4.

Abstract

A structural and spectroscopic study of 5-chloroorotic acid (5-ClOA) biomolecule was carried out by IR and FT-Raman and the results obtained were compared to those achieved in 5-fluoroorotic acid and 5-aminoorotic acid compounds. The structures of all possible tautomeric forms were determined using DFT and MP2 methods. To know the tautomer form present in the solid state, the crystal unit cell was optimized through dimer and tetramer forms in several tautomeric forms. The form was confirmed through an accurate assignment of all the bands. For this purpose, an additional improvement in the theoretical spectra was carried out using linear scaling equations (LSE) and polynomic equations (PSE) deduced from uracil molecule. Base pairs with uracil, thymine and cytosine nucleobases were optimized and compared to the natural Watson-Crick (WC) pairs. The counterpoise (CP) corrected interaction energies of the base pairs were also calculated. Three nucleosides were optimized based on 5-ClOA as nucleobase, and their corresponding WC pairs with adenosine. These modified nucleosides were inserted in DNA:DNA and RNA:RNA microhelices, which were optimized. The position of the -COOH group in the uracil ring of these microhelices interrupts the DNA/RNA helix formation. Because of the special characteristic of these molecules they can be used as antiviral drugs.Communicated by Ramaswamy H. Sarma.

摘要

采用红外和傅里叶变换拉曼光谱对 5-氯乳清酸(5-ClOA)生物分子进行了结构和光谱研究,并将所得结果与 5-氟乳清酸和 5-氨基乳清酸化合物的结果进行了比较。使用 DFT 和 MP2 方法确定了所有可能互变异构形式的结构。为了了解固态中存在的互变异构形式,通过二聚体和四聚体形式在几种互变异构形式中优化了晶体单元。通过对所有谱带进行准确的归属,确定了 形式。为此,使用来自尿嘧啶分子的线性标度方程(LSE)和多项式方程(PSE)对理论光谱进行了额外的改进。与天然 Watson-Crick(WC)对相比,优化并比较了与尿嘧啶、胸腺嘧啶和胞嘧啶碱基的碱基对。还计算了碱基对的 CP 校正相互作用能。基于 5-ClOA 作为碱基,优化了三个核苷,并与腺嘌呤形成相应的 WC 对。这些修饰的核苷被插入 DNA:DNA 和 RNA:RNA 微螺旋中,并进行了优化。这些微螺旋中尿嘧啶环上的-COOH 基团的位置打断了 DNA/RNA 螺旋的形成。由于这些分子的特殊特性,它们可以用作抗病毒药物。由 Ramaswamy H. Sarma 传达。

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