Hoffmann Eva S, De Pascali Mareike C, Neu Lukas, Domnick Christof, Soldà Alice, Kath-Schorr Stephanie
Institute of Organic Chemistry, Department of Chemistry, University of Cologne Greinstrasse 4 50939 Cologne Germany
Technical University of Munich, TUM School of Natural Sciences, Department of Bioscience Garching 85748 Germany.
RSC Chem Biol. 2024 Apr 23;5(6):556-566. doi: 10.1039/d4cb00084f. eCollection 2024 Jun 5.
Unnatural base pairs (UBPs) augment the chemical diversity of artificial nucleic acids and can thus enable the generation of new aptamers and catalytic nucleic acids by selection. However, owing to a lack of methodologies, the reverse transcription of UBPs, a key step in RNA aptamer selection, has not been sufficiently characterized. Here, we present a series of versatile assays to investigate the reverse transcription of the TPT3:NaM base pair as a representative for hydrophobic unnatural base pairs. We determine the fidelity and retention of the UBP for four different reverse transcriptases (RT) in the context of RNA evolution. The retention of the TPT3:NaM pair during the RNA selection process was investigated using a novel click-chemistry based electromobility shift assay. Real-time monitoring of reverse transcription kinetics revealed considerable differences in polymerase activity processing the TPT3:NaM base pair. Our findings identified SuperScript IV RT as the most efficient RT for processing the TPT3:NaM pair. Our approach can be applied universally to study newly developed UBPs, not only at the reverse transcription level, but also during PCR and transcription.
非天然碱基对(UBP)增加了人工核酸的化学多样性,因此能够通过筛选产生新的适体和催化核酸。然而,由于缺乏方法,RNA适体筛选中的关键步骤——UBP的逆转录,尚未得到充分表征。在此,我们提出了一系列通用测定法,以研究作为疏水性非天然碱基对代表的TPT3:NaM碱基对的逆转录。我们在RNA进化的背景下确定了四种不同逆转录酶(RT)对UBP的保真度和保留率。使用基于新型点击化学的电泳迁移率变动分析研究了RNA筛选过程中TPT3:NaM对的保留情况。逆转录动力学的实时监测揭示了处理TPT3:NaM碱基对时聚合酶活性的显著差异。我们的研究结果确定SuperScript IV RT是处理TPT3:NaM对最有效的RT。我们的方法不仅可以普遍应用于在逆转录水平研究新开发的UBP,还可以应用于PCR和转录过程中。