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Enzymatic Synthesis of Sequence-Defined Synthetic Nucleic Acid Polymers with Diverse Functional Groups

机译:酶法合成具有不同官能团的序列定义的合成核酸聚合物

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摘要

The development and in-depth analysis of T4 DNA ligase-catalyzed DNA templated oligonucleotide polymerization toward the generation of diversely functionalized nucleic acid polymers is described. The NNNNT codon set enables low codon bias, high fidelity, and high efficiency for the polymerization of ANNNN libraries comprising various functional groups. The robustness of the method was highlighted in the copolymerization of a 256-membered ANNNN library comprising 16 sub-libraries modified with different functional groups. This enabled the generation of diversely functionalized synthetic nucleic acid polymer libraries with 93.8% fidelity. This process should find ready application in DNA nano-technology, DNA computing, and in vitro evolution of functional nucleic acid polymers.
机译:描述并发展了T4 DNA连接酶催化的DNA模板寡核苷酸聚合反应,并朝着产生功能多样化的核酸聚合物的方向进行了深入分析。 NNNNT密码子集可实现低密码子偏倚,高保真度和高效率,以聚合包含各种官能团的ANNNN库。该方法的鲁棒性在256个成员的ANNNN库的共聚中得到了强调,该库包含16个用不同官能团修饰的子库。这使得能够以93.8%的保真度产生多样化功能化的合成核酸聚合物文库。此过程应在DNA纳米技术,DNA计算以及功能性核酸聚合物的体外进化中找到现成的应用。

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