【2h】

Templating efficiency of naked DNA

机译:裸DNA的模板效率

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摘要

Template-directed synthesis of complementary strands is pivotal for life. Nature employs polymerases for this reaction, leaving the ability of DNA itself to direct the incorporation of individual nucleotides at the end of a growing primer difficult to assess. Using 64 sequences, we now find that any of the four nucleobases, in combination with any neighboring residue, support enzyme-free primer extension when primer and mononucleotide are sufficiently reactive, with ≥93% primer extension for all sequences. Between the 64 possible base triplets, the rate of extension for the poorest template, C>AG, with >A as templating base, and the most efficient template, T>CT, with >C as templating base, differs by less than two orders of magnitude. Further, primer extension with a balanced mixture of monomers shows ≥72% of the correct extension product in all cases, and ≥90% incorporation of the correct base for 46 out of 64 triplets in the presence of a downstream-binding strand. A mechanism is proposed with a binding equilibrium for the monomer, deprotonation of the primer, and two chemical steps, the first of which is most strongly modulated by the sequence. Overall, rates show a surprisingly smooth reactivity landscape, with similar incorporation on strongly and weakly templating sequences. These results help to clarify the substrate contribution to copying, as found in polymerase-catalyzed replication, and show an important feature of DNA as genetic material.
机译:互补链的模板指导合成对于生命至关重要。 Nature使用聚合酶进行此反应,使得DNA本身无法指导单个核苷酸在生长中的引物末端掺入的能力很难评估。现在,使用64个序列,我们发现,当引物和单核苷酸具有足够的反应性时,四个核碱基中的任何一个与任何相邻残基结合均可支持无酶引物延伸,所有引物的引物延伸率均≥93%。在64个可能的三元组之间,最差的模板C > A G的扩展率(以> A 作为模板基础)和最有效的模板T >以> C 为模板基础的C T相差不到两个数量级。此外,在所有情况下,采用平衡单体混合物进行引物延伸均显示≥72%的正确延伸产物,并且在存在下游结合链的情况下,对于64个三联体中的46个,正确的碱基掺入≥90%。提出了一种具有单体结合平衡,引物去质子化和两个化学步骤的机理,其中两个化学步骤最受序列的调控。总的来说,速率显示出令人惊讶的平滑反应性,在强和弱模板序列中的引入相似。这些结果有助于阐明底物对复制的贡献,如在聚合酶催化的复制中发现的那样,并显示了DNA作为遗传物质的重要特征。

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