State Key Laboratory of Chemo/Bio-Sensing and Chemometrics, College of Chemistry and Chemical Engineering, Hunan University, Changsha, Hunan 410082, China.
Anal Chem. 2022 Feb 15;94(6):2693-2698. doi: 10.1021/acs.analchem.1c05509. Epub 2022 Feb 4.
There has been a significant interest in developing proximity-induced bioorthogonal reactions for nucleic acid detection and imaging, owing to their high specificity and tunable reaction kinetics. Herein, we reported the first design of a fluorogenic sensor by coupling a bioorthogonal reaction with a DNA cascade circuit for precise RNA imaging in live cells. Two DNA hairpin probes bearing tetrazines or vinyl ether caged fluorophores were designed and synthesized. Upon target mRNA triggering catalytic hairpin assembly, the chemical reaction partners were brought in a spatial proximity to yield high effective concentrations, which dramatically facilitated the bioorthogonal reaction efficiency to unmask the vinyl ether group to activate fluorescence. The proposed fluorogenic sensor was demonstrated to have a high signal-to-noise ratio up to ∼30 fold and enabled the sensitive detection of target mRNA with a detection limit of 4.6 pM. Importantly, the fluorogenic sensor presented low background signals in biological environments due to the unique "click to release" feature, avoiding false positive results caused by unspecific degradation. We also showed that the fluorogenic sensor could accurately image mRNA in live cells and distinguish the relative mRNA expression levels in both tumor and normal cells. Benefiting from these significant advantages, our method provides a useful tool for basic studies of bioorthogonal chemistry and early clinical diagnosis.
人们对开发用于核酸检测和成像的近场诱导生物正交反应产生了浓厚的兴趣,因为它们具有高度的特异性和可调的反应动力学。在此,我们报道了第一个通过将生物正交反应与 DNA 级联电路偶联来设计用于在活细胞中进行精确 RNA 成像的荧光传感器。设计并合成了两个带有四嗪或乙烯基醚笼状荧光团的 DNA 发夹探针。在靶 mRNA 触发催化发夹组装后,化学反应伴侣被带入空间邻近位置,以产生高有效浓度,这极大地促进了生物正交反应效率,从而揭开乙烯基醚基团以激活荧光。所提出的荧光传感器具有高达约 30 倍的高信噪比,并能够以 4.6 pM 的检测限灵敏地检测靶 mRNA。重要的是,由于独特的“点击释放”特性,荧光传感器在生物环境中呈现出低背景信号,避免了由非特异性降解引起的假阳性结果。我们还表明,荧光传感器可以在活细胞中准确地对 mRNA 进行成像,并区分肿瘤和正常细胞中相对的 mRNA 表达水平。由于这些显著的优势,我们的方法为生物正交化学的基础研究和早期临床诊断提供了一种有用的工具。