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Encoded synthesis and evolution of alkyl-phosphonate nucleic acids: a synthetic genetic polymer with an uncharged backbone chemistry

机译:烷基膦酸核酸的编码合成和进化:具有不带电主链化学的合成遗传聚合物

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摘要

The physicochemical properties of nucleic acids are dominated by their highly charged phosphodiester backbone chemistry. The polyelectrolyte structure decouples information content (base sequence) from bulk properties such as solubility and has been proposed as a defining trait of all informational polymers. However, this conjecture has not been tested experimentally. Here, we describe the encoded synthesis of a genetic polymer with an uncharged backbone chemistry: alkyl-phosphonate nucleic acids (phNA), in which the canonical, negatively charged phosphodiester is replaced by an uncharged P-alkyl-phosphonodiester backbone. Using synthetic chemistry and polymerase engineering, we describe the enzymatic, DNA-templated synthesis of P-methyl- and P-ethyl-phNAs, and the directed evolution of specific streptavidin-binding phNA aptamer ligands directly from random-sequence, mixed P-methyl- / P-ethyl-phNA repertoires. Our results establish a first example of the DNA-templated enzymatic synthesis and evolution of an uncharged genetic polymer and provide a foundational methodology for their exploration as a source of novel, functional molecules.
机译:核酸的物理化学特性主要由其带高电荷的磷酸二酯主链化学决定。聚电解质结构使信息含量(碱基序列)与整体性质(如溶解度)脱钩,并已被提议作为所有信息聚合物的定义特征。但是,这个猜想尚未经过实验测试。在这里,我们描述了具有不带电主链化学结构的遗传聚合物的编码合成:烷基膦酸酯核酸(phNA),其中规范的,带负电荷的磷酸二酯被不带电的P-烷基-膦二酸酯主链代替。使用合成化学和聚合酶工程技术,我们描述了酶促,DNA模板合成的P-甲基和P-乙基-phNA,以及直接从随机序列,混合的P-甲基直接结合链霉亲和素的phNA适体配体的定向进化-/ P-乙基-phNA曲目。我们的结果建立了不带电荷的遗传聚合物的DNA模板酶促合成和进化的第一个实例,并为它们作为新型功能分子来源的探索提供了基础方法。

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