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末端脱氧核苷酸转移酶介导的扩展遗传密码子 DNA 的酶法制备及其应用。

Enzymatic Preparation of DNA with an Expanded Genetic Alphabet Using Terminal Deoxynucleotidyl Transferase and Its Applications.

机构信息

MOE International Joint Research Laboratory on Synthetic Biology and Medicines, School of Biology and Biological Engineering, South China University of Technology, Guangzhou, China.

出版信息

Methods Mol Biol. 2024;2760:133-145. doi: 10.1007/978-1-0716-3658-9_8.

Abstract

Efficient preparation of DNA oligonucleotides containing unnatural nucleobases (UBs) that can pair with their cognates to form unnatural base pairs (UBPs) is an essential prerequisite for the application of UBPs in vitro and in vivo. Traditional preparation of oligonucleotides containing unnatural nucleobases largely relies on solid-phase synthesis, which needs to use unstable nucleoside phosphoramidites and a DNA synthesizer, and is environmentally unfriendly and limited in product length. To overcome these limitations of solid-phase synthesis, we developed enzymatic methods for daily laboratory preparation of DNA oligonucleotides containing unnatural nucleobase dNaM, dTPT3, or one of the functionalized dTPT3 derivatives, which can be used for orthogonal DNA labeling or the preparation of DNAs containing UBP dNaM-dTPT3, one of the most successful UBPs to date, based on the template-independent polymerase terminal deoxynucleotidyl transferase (TdT). Here, we first provide a detailed procedure for the TdT-based preparation of DNA oligonucleotides containing 3'-nucleotides of dNaM, dTPT3, or one of dTPT3 derivatives. We then present the procedures for enzyme-linked oligonucleotide assay (ELONA) and imaging of bacterial cells using DNA oligonucleotides containing 3'-nucleotides of dTPT3 derivatives with different functional groups. The procedure for enzymatic synthesis of DNAs containing an internal UBP dNaM-dTPT3 is also described. Hopefully, these methods will greatly facilitate the application of UBPs and the construction of semi-synthetic organisms with an expanded genetic alphabet.

摘要

高效制备含有非天然碱基(UBs)的 DNA 寡核苷酸,这些碱基可以与它们的互补碱基形成非天然碱基对(UBPs),这是在体外和体内应用 UBPs 的必要前提。传统的含有非天然碱基的寡核苷酸的制备主要依赖于固相合成,该方法需要使用不稳定的核苷亚磷酰胺和 DNA 合成仪,并且不环保,产物长度有限。为了克服固相合成的这些限制,我们开发了酶法用于日常实验室制备含有非天然碱基 dNaM、dTPT3 或其功能化衍生物之一的 DNA 寡核苷酸,这些寡核苷酸可用于正交 DNA 标记或制备含有 UBP dNaM-dTPT3 的 DNA,这是迄今为止最成功的 UBP 之一,其基于无模板依赖性聚合酶末端脱氧核苷酸转移酶(TdT)。在这里,我们首先提供了一种基于 TdT 的制备含有 3'-核苷酸的 dNaM、dTPT3 或其衍生物之一的 DNA 寡核苷酸的详细程序。然后,我们介绍了使用含有不同功能基团的 dTPT3 衍生物 3'-核苷酸的 DNA 寡核苷酸进行酶联寡核苷酸检测(ELONA)和细菌细胞成像的程序。还描述了含有内部 UBP dNaM-dTPT3 的 DNA 的酶促合成程序。希望这些方法将极大地促进 UBPs 的应用和具有扩展遗传字母表的半合成生物的构建。

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