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首页> 外文期刊>Chemistry & biodiversity >Addressing the problems of base pairing and strand cyclization in template-directed synthesis - A case for the utility and necessity of 'molecular midwives' and reversible backbone linkages for the origin of proto-RNA
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Addressing the problems of base pairing and strand cyclization in template-directed synthesis - A case for the utility and necessity of 'molecular midwives' and reversible backbone linkages for the origin of proto-RNA

机译:解决模板指导的合成中碱基配对和链环化的问题-“分子助产士”的实用性和必要性以及可逆主链连接作为原RNA起源的案例

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摘要

Nucleic acid synthesis is precisely controlled in living organisms by highly evolved protein enzymes. The remarkable fidelity of information transfer realized between template and product strands is the result of both the spatial selectivity of the polymerase active site for Watson-Crick base pairs at the point of nucleotide coupling and subsequent proof-reading mechanisms. In the absence of naturally derived polymerases, in vitro template-directed synthesis by means of chemically activated mononucleotides has proven remarkably inefficient and error-prone. Nevertheless, the spontaneous emergence of RNA polymers and their protein-free replication is frequently taken as a prerequisite for the hypothetical 'RNA world'. We present two specific difficulties that face the de novo synthesis of RNA-like polymers in a prebiotic (enzyme-free) environment: nucleoside base selection and intramolecular strand cyclization. These two problems are inherent to the assumption that RNA formed de novo from pre-existing, chemically-activated mononucleotides in solution. As a possible resolution to these problems, we present arguments and experimental support for our hypothesis that small molecules (referred to as 'molecular midwives') and alternative backbone linkages (under equilibrium control) facilitated the emergence of the first RNA-like polymers of life.
机译:核酸的合成可以通过高度进化的蛋白质酶精确地控制在生物体内。在模板链和产物链之间实现的显着保真度信息传递是聚合酶活性位点对核苷酸偶联点上的Watson-Crick碱基对的空间选择性和随后的校对机制的结果。在不存在天然衍生的聚合酶的情况下,已证明通过化学活化的单核苷酸进行的体外模板指导的合成非常低效且容易出错。然而,RNA聚合物的自发出现及其无蛋白复制经常被视为假想的“ RNA世界”的前提。我们提出了在益生元(无酶)环境中RNA样聚合物从头合成面临的两个具体困难:核苷碱基选择和分子内链环化。这两个问题是RNA从溶液中预先存在的化学活化单核苷酸重新形成的假设所固有的。作为对这些问题的可能解决方案,我们为以下假设提供了论点和实验依据:小分子(称为“分子助产士”)和可替代的主链连接(在平衡控制下)促进了生命中第一个RNA样聚合物的出现。

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