Hidekazu Hoshino, Yuuya Kasahara and Satoshi Obika
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This undesirable bias reduces the possibility of generating high-quality XNA aptamers and XNAzymes. Here, we demonstrate that polyamine-induced DNA/ANA duplex stabilisation promotes ANA synthesis that is catalysed by thermophilic polymerase mutants. Several polyamines, including spermine, spermidine, cadaverine, and putrescine promote ANA synthesis. The negative effect of polyamines on the fidelity of ANA synthesis was negligible. We also showed that polyamines promote the synthesis of other XNAs, including 2′-amino-RNA/2′-fluoro-RNA mixture and 2′-<em>O</em>-methyl-RNA. In addition, we found that polyamine promotes DNA synthesis from the 2′-<em>O</em>-methyl-RNA template. Polyamines, with the use of thermophilic polymerase mutants, may allow further development of XNA aptamers and XNAzymes by promoting the transcription and reverse transcription of XNAs.</p>","PeriodicalId":40691,"journal":{"name":"RSC Chemical Biology","volume":" 5","pages":" 467-472"},"PeriodicalIF":4.2000,"publicationDate":"2024-04-04","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://pubs.rsc.org/en/content/articlepdf/2024/cb/d4cb00017j?page=search","citationCount":"0","resultStr":"{\"title\":\"Polyamines promote xenobiotic nucleic acid synthesis by modified thermophilic polymerase mutants†\",\"authors\":\"Hidekazu Hoshino, Yuuya Kasahara and Satoshi Obika\",\"doi\":\"10.1039/D4CB00017J\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p >The enzymatic synthesis of xenobiotic nucleic acids (XNA), which are artificially sugar-modified nucleic acids, is essential for the preparation of XNA libraries. XNA libraries are used in the <em>in vitro</em> selection of XNA aptamers and enzymes (XNAzymes). Efficient enzymatic synthesis of various XNAs can enable the screening of high-quality XNA aptamers and XNAzymes by expanding the diversity of XNA libraries and adding a variety of properties to XNA aptamers and XNAzymes. However, XNAs that form unstable duplexes with DNA, such as arabino nucleic acid (ANA), may dissociate during enzyme synthesis at temperatures suitable for thermophilic polymerases. Thus, such XNAs are not efficiently synthesised by the thermophilic polymerase mutants at the end of the sequence. This undesirable bias reduces the possibility of generating high-quality XNA aptamers and XNAzymes. Here, we demonstrate that polyamine-induced DNA/ANA duplex stabilisation promotes ANA synthesis that is catalysed by thermophilic polymerase mutants. Several polyamines, including spermine, spermidine, cadaverine, and putrescine promote ANA synthesis. The negative effect of polyamines on the fidelity of ANA synthesis was negligible. We also showed that polyamines promote the synthesis of other XNAs, including 2′-amino-RNA/2′-fluoro-RNA mixture and 2′-<em>O</em>-methyl-RNA. In addition, we found that polyamine promotes DNA synthesis from the 2′-<em>O</em>-methyl-RNA template. 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引用次数: 0
摘要
异生物核酸(XNA)是人工糖修饰的核酸,其酶法合成对于制备 XNA 文库至关重要。XNA 文库可用于体外筛选 XNA 合体和酶(XNA 酶)。通过酶法高效合成各种 XNA,可以扩大 XNA 文库的多样性,增加 XNA 合体和 XNA 酶的各种特性,从而筛选出高质量的 XNA 合体和 XNA 酶。然而,与 DNA 形成不稳定双链的 XNA(如阿拉伯核酸 (ANA))可能会在适合嗜热聚合酶的温度下在酶合成过程中解离。因此,序列末端的嗜热聚合酶突变体不能有效合成这类 XNA。这种不理想的偏差降低了生成高质量 XNA 嵌合体和 XNA 酶的可能性。在这里,我们证明了多胺诱导的 DNA/ANA 双链体稳定促进了嗜热聚合酶突变体催化的 ANA 合成。包括精胺、亚精胺、尸胺和腐胺在内的几种多胺促进了 ANA 的合成。多胺对 ANA 合成保真度的负面影响可以忽略不计。我们还发现多胺能促进其他 XNA 的合成,包括 2′-氨基-RNA/2′-氟-RNA 混合物和 2′-O-甲基-RNA。此外,我们还发现多胺能促进 2′-O-甲基-RNA 模板的 DNA 合成。通过使用嗜热聚合酶突变体,多胺可以促进 XNA 的转录和反转录,从而进一步开发 XNA 合酶和 XNA 酶。
The enzymatic synthesis of xenobiotic nucleic acids (XNA), which are artificially sugar-modified nucleic acids, is essential for the preparation of XNA libraries. XNA libraries are used in the in vitro selection of XNA aptamers and enzymes (XNAzymes). Efficient enzymatic synthesis of various XNAs can enable the screening of high-quality XNA aptamers and XNAzymes by expanding the diversity of XNA libraries and adding a variety of properties to XNA aptamers and XNAzymes. However, XNAs that form unstable duplexes with DNA, such as arabino nucleic acid (ANA), may dissociate during enzyme synthesis at temperatures suitable for thermophilic polymerases. Thus, such XNAs are not efficiently synthesised by the thermophilic polymerase mutants at the end of the sequence. This undesirable bias reduces the possibility of generating high-quality XNA aptamers and XNAzymes. Here, we demonstrate that polyamine-induced DNA/ANA duplex stabilisation promotes ANA synthesis that is catalysed by thermophilic polymerase mutants. Several polyamines, including spermine, spermidine, cadaverine, and putrescine promote ANA synthesis. The negative effect of polyamines on the fidelity of ANA synthesis was negligible. We also showed that polyamines promote the synthesis of other XNAs, including 2′-amino-RNA/2′-fluoro-RNA mixture and 2′-O-methyl-RNA. In addition, we found that polyamine promotes DNA synthesis from the 2′-O-methyl-RNA template. Polyamines, with the use of thermophilic polymerase mutants, may allow further development of XNA aptamers and XNAzymes by promoting the transcription and reverse transcription of XNAs.