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Continuous nonenzymatic cross-replication of DNA strands with in situ activated DNA oligonucleotides

机译:DNA链与原位活化的DNA寡核苷酸的连续非酶交叉复制

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摘要

Continuous enzyme-free replication of oligonucleotides is central for open-ended evolution experiments that mimic the origin of life. Here, we studied a reaction system, whereby two 24mer DNA templates cross-catalyzed each other's synthesis from four 12mer DNA fragments, two of which were in situ activated with the condensing agent 1-ethyl-3-(3-dimethylamino-propyl)carbodiimide (EDC). We circumvented the problem of product inhibition by melting the stable product duplexes for their reuse as templates in the following ligation step. The system reproduced itself through ligation/melting cycles and survived exponential dilution. We quantified EDC-induced side reactions in a detailed kinetic model. The model allowed us to analyze the effects of various reaction rates on the system's kinetics and confirmed maximal replication under the chosen conditions. The presented system enables us to study nonenzymatic open-ended evolution experiments starting from diverse sequence pools.
机译:寡核苷酸连续无酶复制对于模拟生命起源的开放式进化实验至关重要。在这里,我们研究了一个反应系统,其中两个24mer DNA模板互相交叉催化四个12mer DNA片段的合成,其中两个被缩合剂1-乙基-3-(3-二甲基氨基-丙基)碳二亚胺原位活化。 (EDC)。我们通过熔化稳定的产物双链体以在随后的连接步骤中重新用作模板来解决产物抑制的问题。该系统通过连接/融化循环进行自我复制,并在指数稀释后存活下来。我们在详细的动力学模型中量化了EDC引起的副反应。该模型使我们能够分析各种反应速率对系统动力学的影响,并确认在所选条件下的最大复制量。提出的系统使我们能够研究从不同序列池开始的非酶促开放式进化实验。

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