Sun Leping, Ma Xingyun, Zhang Binliang, Qin Yanjia, Ma Jiezhao, Du Yuhui, Chen Tingjian
MOE International Joint Research Laboratory on Synthetic Biology and Medicines, School of Biology and Biological Engineering, South China University of Technology 510006 Guangzhou China
RSC Chem Biol. 2022 Aug 9;3(10):1173-1197. doi: 10.1039/d2cb00116k. eCollection 2022 Oct 5.
Nucleic acids have been extensively modified in different moieties to expand the scope of genetic materials in the past few decades. While the development of unnatural base pairs (UBPs) has expanded the genetic information capacity of nucleic acids, the production of synthetic alternatives of DNA and RNA has increased the types of genetic information carriers and introduced novel properties and functionalities into nucleic acids. Moreover, the efforts of tailoring DNA polymerases (DNAPs) and RNA polymerases (RNAPs) to be efficient unnatural nucleic acid polymerases have enabled broad application of these unnatural nucleic acids, ranging from production of stable aptamers to evolution of novel catalysts. The introduction of unnatural nucleic acids into living organisms has also started expanding the central dogma . In this article, we first summarize the development of unnatural nucleic acids with modifications or alterations in different moieties. The strategies for engineering DNAPs and RNAPs are then extensively reviewed, followed by summarization of predominant polymerase mutants with good activities for synthesizing, reverse transcribing, or even amplifying unnatural nucleic acids. Some recent application examples of unnatural nucleic acids with their polymerases are then introduced. At the end, the approaches of introducing UBPs and synthetic genetic polymers into living organisms for the creation of semi-synthetic organisms are reviewed and discussed.
在过去几十年里,核酸的不同部分已被广泛修饰,以扩大遗传物质的范围。虽然非天然碱基对(UBP)的发展扩大了核酸的遗传信息容量,但DNA和RNA合成替代物的产生增加了遗传信息载体的类型,并为核酸引入了新的特性和功能。此外,将DNA聚合酶(DNAP)和RNA聚合酶(RNAP)改造为高效的非天然核酸聚合酶的努力,使得这些非天然核酸得到了广泛应用,从稳定适体的生产到新型催化剂的进化。将非天然核酸引入活生物体也开始扩展中心法则。在本文中,我们首先总结了在不同部分进行修饰或改变的非天然核酸的发展情况。然后广泛综述了工程化DNAP和RNAP的策略,接着总结了在合成、逆转录甚至扩增非天然核酸方面具有良好活性的主要聚合酶突变体。随后介绍了一些非天然核酸及其聚合酶的近期应用实例。最后,对将UBP和合成遗传聚合物引入活生物体以创建半合成生物体的方法进行了综述和讨论。