Maru Bruktawit, Edinboro Ayodele, Katolik Adam, El-Khoury Roberto, Basran Kaleena, Wahba Alexander S, Damha Masad J, Luedtke Nathan W, McKeague Maureen
Department of Pharmacology and Therapeutics, McGill University, Montreal H3G 1Y6, Canada.
Department of Chemistry, McGill University, Montreal H3A 0B8, Canada.
Nucleic Acids Res. 2025 Feb 27;53(5). doi: 10.1093/nar/gkaf141.
Fluorescent probe-based quantitative polymerase chain reaction (qPCR) is essential for DNA/RNA quantification widely used in research and clinical diagnostics. The performance of fluorogenic probes depends heavily on their design, particularly the identities of the fluorophore and quencher moieties, and the linkers used to attach them to oligonucleotides. Here we report a highly modular, three-way branched glycerol 'X' linker in fluorogenic TaqMan® type oligonucleotide probes for multiplexed, reverse transcription qPCR (RT-qPCR). The flexible 'X' linker served as an internal attachment point for various quenchers (BHQ1, BHQ2) in probes containing a variable fluorophore at the 5' end (Flu, Hex, Cy5, Cy5.5). A four-color RT-qPCR 'tetraplex' assay was thereby developed for distinguishing between RNA genomes from SARS-CoV-2, influenza A, and influenza B viruses in a single reaction. The 'X' linker exhibited superior performance with single-molecule detection limits approaching four copies, compared to an internal arabinoside-based (ara) linker strategy, demonstrating the presence of competing processes during primer extension, one where Taq exonuclease activity cleaves the fluorogenic X probe leading to productive fluorescence, and the second where the ara probe is displaced from the PCR template without cleavage. Together these results demonstrate the importance of linker structure selection in oligonucleotides for developing highly effective fluorogenic probes for qPCR.
基于荧光探针的定量聚合酶链反应(qPCR)对于DNA/RNA定量至关重要,广泛应用于研究和临床诊断。荧光探针的性能在很大程度上取决于其设计,特别是荧光团和猝灭基团的特性,以及用于将它们连接到寡核苷酸上的连接子。在此,我们报道了一种用于多重逆转录qPCR(RT-qPCR)的TaqMan®型荧光寡核苷酸探针中的高度模块化、三路分支甘油“X”连接子。这种灵活的“X”连接子作为各种猝灭剂(BHQ1、BHQ2)在5'端含有可变荧光团(Flu、Hex、Cy5、Cy5.5)的探针中的内部连接点。由此开发了一种四色RT-qPCR“四重”检测方法,用于在单个反应中区分严重急性呼吸综合征冠状病毒2(SARS-CoV-2)、甲型流感病毒和乙型流感病毒的RNA基因组。与基于内部阿拉伯糖苷(ara)连接子策略相比,“X”连接子在单分子检测限接近四个拷贝时表现出卓越性能,这表明在引物延伸过程中存在竞争过程,一种是Taq核酸外切酶活性切割荧光X探针导致产生荧光,另一种是ara探针从PCR模板上被取代而未被切割。这些结果共同证明了在开发用于qPCR的高效荧光探针时,寡核苷酸中连接子结构选择的重要性。