首页> 外文期刊>Chemistry: A European journal >Chemical Etiology of Nucleic Acid Structure: The Pentulofuranosyl Oligonucleotide Systems: The (1'→3')-β-L-Ribulo, (4' →3')-α-L-Xylulo, and (1'→3')-α-L-Xylulo Nucleic Acids
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Chemical Etiology of Nucleic Acid Structure: The Pentulofuranosyl Oligonucleotide Systems: The (1'→3')-β-L-Ribulo, (4' →3')-α-L-Xylulo, and (1'→3')-α-L-Xylulo Nucleic Acids

机译:核酸结构的化学病因:戊呋喃糖基寡核苷酸系统:(1'→3')-β-L-核糖基,(4'→3')-α-L-木糖基和(1'→3')- α-L-木糖核酸

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摘要

Under potentially prebiotic scenarios, ribose (pentose), the component of RNA is formed in meager amounts, as opposed to ribulose and xylulose (pentuloses). Consequently, replacement of ribose in RNA, with pentulose sugars, gives rise to prospective oligonucleotide candidates that are potentially prebiotic structural variants of RNA that could be formed by the same type of chemical pathways that gave rise to RNA from ribose. The potentially natural alternative (1'→3')-ribulo oligonucleotides and (4'→3')-and (1'→3')-xylulo oligonucleotides consisting of adenine and thymine were synthesized and found to exhibit no self-pairing or cross-pairing with RNA. This signifies that even though pentulose sugars may have been abundant in a prebiotic scenario, the pentulose nucleic acids (NAs), if and when formed, would not have been competitors of RNA, or interfered with the emergence of RNA as a functional informational system. The reason for the lack of base pairing in pentulose NA highlights the contrasting and central role played by the furanosyl ring in RNA and pentulose NA, enabling and optimizing the base pairing in RNA, while impeding it in pentulose NA.
机译:在潜在的益生元场景下,核糖(戊糖)与核糖和木酮糖(戊糖)相比,形成的RNA成分很少。因此,用戊糖替代RNA中的核糖会产生潜在的寡核苷酸候选物,它们可能是RNA的益生元结构变异体,可以通过从核糖产生RNA的相同类型的化学途径形成。合成了由腺嘌呤和胸腺嘧啶组成的潜在天然替代(1'→3')-核糖寡核苷酸以及(4'→3')-和(1'→3')-木酮寡核苷酸,发现没有自配对或与RNA交叉配对。这表明,即使在益生元场景中戊糖含量可能很高,但如果形成戊糖核酸(NAs),就不会成为RNA的竞争者,也不会干扰RNA作为功能性信息系统的出现。戊糖NA中缺乏碱基配对的原因突显了呋喃糖基环在RNA和戊糖NA中所起的对比作用和中心作用,使得并优化了RNA中的碱基配对,同时阻碍了其在戊糖NA中的形成。

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