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DNA-Templated Organic Synthesis and Selection of a Library of Macrocycles

机译:DNA模板有机合成和大环库的选择

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摘要

The translation of nucleic acid libraries into corresponding synthetic compounds would enable selection and amplification principles to be applied to man-made molecules. We used multistep DNA-templated organic synthesis to translate libraries of DNA sequences, each containing three “codons,” into libraries of sequence-programmed synthetic small-molecule macrocycles. The resulting DNA-macrocycle conjugates were subjected to in vitro selections for protein affinity. The identity of a single macrocycle possessing known target protein affinity was inferred through the sequence of the amplified DNA template surviving the selection. This work represents the translation, selection, and amplification of libraries of nucleic acids encoding synthetic small molecules rather than biological macromolecules.
机译:核酸文库翻译成相应的合成化合物将使选择和扩增原理能够应用于人造分子。我们使用多步DNA模板有机合成将每个包含三个“密码子”的DNA序列文库翻译成序列编程的合成小分子大环化合物文库。对所得的DNA-大环缀合物进行蛋白质亲和力的体外选择。通过选择后存活的扩增DNA模板的序列推断具有已知靶蛋白亲和力的单个大环的身份。这项工作代表编码合成小分子而非生物大分子的核酸文库的翻译,选择和扩增。

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