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THE EVOLUTIONARY TRANSITION FROM URACIL TOTHYMINE BALANCES THE GENETIC CODE

机译:尿嘧啶向进化的转变平衡了遗传密码

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A multivariate quantitative physicochemical characterization of the five bases adenine (A), cytosine (C), guanine (G), thymine (T) and uracil (U), followed by principal component analysis, shows that the relative dissimilarities between the bases of DNA (A, C, G and T) are almost the same (i.e. balanced). In contrast, mRNA (containing U instead of T) has a considerably larger relative physicochemical similarity between C and U than between all other pairs of bases and is therefore inherently more unbalanced. These results provide a physicochemical explanation of the presence of thymine instead of uracil as an element of DNA. The principal component scores enable a quantitative description of nucleic acid sequence data to be made for structure-activity modelling purposes.
机译:对五个碱基的腺嘌呤(A),胞嘧啶(C),鸟嘌呤(G),胸腺嘧啶(T)和尿嘧啶(U)进行多变量定量理化表征,然后进行主成分分析,结果表明DNA碱基之间的相对差异(A,C,G和T)几乎相同(即平衡)。相反,mRNA(包含U而不是T)在C和U之间具有比所有其他碱基对之间更大的相对物理化学相似性,因此固有地更加不平衡。这些结果提供了胸腺嘧啶而不是尿嘧啶作为DNA元素的物理化学解释。主成分评分可以对核酸序列数据进行定量描述,以用于结构活性建模。

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