适体
DNA折纸
荧光
DNA
生物物理学
折叠(DSP实现)
纳米技术
DNA纳米技术
A-DNA
化学
G-四倍体
材料科学
生物
分子生物学
生物化学
物理
光学
电气工程
工程类
作者
Luyao Shen,Donglei Yang,Daniel Fu,Pengfei Wang,Yonggang Ke
标识
DOI:10.1021/acsbiomaterials.5c00228
摘要
RNA-based fluorescent light-up aptamers (FLAPs) have been progressively developed as imaging probes because of their high signal-to-noise ratio. However, it remains a challenge to use these light-up aptamers due to their poor folding and stability. Leveraging DNA nanotechnology, we investigated whether a DNA origami template could improve folding and further enhance the functionality of FLAPs, namely, the corresponding fluorescence intensities. We utilized aptamer Broccoli and its cognate fluorogen DFHBI-1T as a model. When singular aptamer Broccoli was scaffolded on DNA origami, DNA brick-based nanostructures, DNA double helices, and even on structures as simple as a DNA hairpin stem, our results showed that the fluorescence intensities could be significantly enhanced. These findings show a positive correlation between the fluorogen activity of light-up aptamers and the DNA stem length, potentially mediated by the improved structural stability of the DNA stem, as determined by their simulated thermodynamic properties. Our studies provide a new method to design and enhance the fluorescence behavior of FLAPs, especially structures with a G-quadruplex-based fluorogen recognition region.
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