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Cross-coupling reactions of nucleoside triphosphates followed by polymerase incorporation. Construction and applications of base-functionalized nucleic acids

机译:核苷三磷酸的交叉偶联反应随后是聚合酶的掺入。碱基功能化核酸的构建和应用

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摘要

Construction of functionalized nucleic acids (DNA or RNA) via polymerase incorporation of modified nucleoside triphosphates is reviewed and selected applications of the modified nucleic acids are highlighted. The classical multistep approach for the synthesis of modified NTPs by triphosphorylation of modified nucleosides is compared to the novel approach consisting of direct aqueous cross-coupling reactions of unprotected halogenated nucleoside triphosphates. The combination of cross-coupling of NTPs with polymerase incorporation gives an efficient and straightforward two-step synthesis of modified nucleic acids. Primer extension using biotinylated templates followed by separation using streptavidine-coated magnetic beads and DNA duplex denaturation is used for preparation of modified single stranded oligonucleotides. Examples of using this approach for electrochemical DNA labelling and bioanalytical applications are given.
机译:审查了通过聚合酶结合修饰的三磷酸核苷的功能化核酸(DNA或RNA)的构建,并着重介绍了修饰核酸的选定应用。通过修饰核苷的三磷酸化合成修饰NTP的经典多步方法与由未保护的卤代核苷三磷酸直接水交叉偶联反应组成的新方法进行了比较。 NTP交叉偶联与聚合酶掺入的结合,可实现修饰核酸的高效,简单的两步合成。使用生物素化的模板进行引物延伸,然后使用链霉亲和素包被的磁珠进行分离,然后使用DNA双链变性来制备修饰的单链寡核苷酸。给出了使用这种方法进行电化学DNA标记和生物分析应用的示例。

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