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Enzymatic synthesis of biphenyl-DNA oligonucleotides

机译:联苯-DNA寡核苷酸的酶促合成

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摘要

The incorporation of nucleotides equipped with C-glycosidic aromatic nucleobases into DNA and RNA is an alluring strategy for a number of practical applications including fluorescent labelling of oligonucleotides, expansion of the genetic alphabet for the generation of aptamers and semi-synthetic organisms, or the modulation of excess electron transfer within DNA. However, the generation of C-nucleoside containing oligonucleotides relies mainly on solid-phase synthesis which is quite labor intensive and restricted to short sequences. Here, we explore the possibility of constructing biphenyl-modified DNA sequences using enzymatic synthesis. The presence of multiple biphenyl-units or biphenyl residues modified with electron donors and acceptors permits the incorporation of a single dBphMP nucleotide. Moreover, templates with multiple abasic sites enable the incorporation of up to two dBphMP nucleotides, while TdT-mediated tailing reactions produce single-stranded DNA oligonucleotides with four biphenyl residues appended at the 3'-end.
机译:将配备有C-糖苷芳族核酸核酸核酸的核苷酸与DNA和RNA的掺入是许多实际应用的诱饵策略,包括寡核苷酸的荧光标记,膨胀遗传字母表用于产生适体和半合成生物或调制DNA内的过量电子转移。然而,含有寡核苷酸的C-核苷的产生主要依赖于固相合成,其具有相当的劳动密集并限制在短序列中。在此,我们探讨使用酶合成构建联苯改性的DNA序列的可能性。用电子供体和受体改性多种联苯单元或联苯残基的存在允许掺入单一的DBPHMP核苷酸。此外,具有多个Abasic位点的模板使得能够掺入多达两种DbPhMP核苷酸,而TDT介导的尾零反应产生单链DNA寡核苷酸,其在3'-末端附有四个联苯残基。

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