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Solid-phase molecular recognition of cytosine based on proton-transfer reaction. Part II. supramolecular architecture in the cocrystals of cytosine and its 5-Fluoroderivative with 5-Nitrouracil

机译:基于质子转移反应的胞嘧啶固相分子识别。第二部分胞嘧啶及其5-氟衍生物与5-硝基尿嘧啶共晶体的超分子结构

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摘要

BackgroundCytosine is a biologically important compound owing to its natural occurrence as a component of nucleic acids. Cytosine plays a crucial role in DNA/RNA base pairing, through several hydrogen-bonding patterns, and controls the essential features of life as it is involved in genetic codon of 17 amino acids. The molecular recognition among cytosines, and the molecular heterosynthons of molecular salts fabricated through proton-transfer reactions, might be used to investigate the theoretical sites of cytosine-specific DNA-binding proteins and the design for molecular imprint.
机译:背景技术由于其天然存在作为核酸的组成部分,所以胞嘧啶是生物学上重要的化合物。胞嘧啶通过几种氢键键合方式在DNA / RNA碱基配对中起关键作用,并控制生命的基本特征,因为它涉及17个氨基酸的遗传密码子。胞嘧啶之间的分子识别,以及通过质子转移反应制备的分子盐的分子杂合子,可用于研究胞嘧啶特异性DNA结合蛋白的理论位点和分子印迹的设计。

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