Environmental Toxicology Graduate Program, University of California, Riverside, CA, USA.
Department of Chemistry, University of California, Riverside, CA, USA.
Nat Chem. 2021 May;13(5):488-495. doi: 10.1038/s41557-021-00647-9. Epub 2021 Apr 1.
The secondary structures of nucleic acids have an important influence on their cellular functions but can be difficult to identify and classify quickly. Here, we show that an arrayed suite of synthetic hosts and dyes is capable of fluorescence detection of oligonucleotide secondary structures. Multivariate analysis of different fluorescence enhancements-generated using cationic dyes that show affinity for both DNA G-quadruplexes and the synthetic hosts-enables discrimination between G-quadruplex structures of identical length and highly similar topological types. Different G-quadruplexes that display the same folding topology can also be easily differentiated by the number of G-quartets and sequence differences at the 3' or 5' ends. The array is capable of both differentiation and classification of the G-quadruplex structures at the same time. This simple non-invasive sensing method does not require the discovery and synthesis of specific G-quadruplex binding ligands, but employs a simple multicomponent approach to ensure wide applicability.
核酸的二级结构对其细胞功能有重要影响,但快速识别和分类可能具有挑战性。在这里,我们展示了一系列合成的宿主和染料阵列能够荧光检测寡核苷酸的二级结构。使用对 DNA G-四链体和合成宿主都具有亲和力的阳离子染料进行的多元分析可以区分具有相同长度和高度相似拓扑类型的 G-四链体结构。通过 G-四联体的数量和 3' 或 5' 末端的序列差异,也可以轻松区分显示相同折叠拓扑的不同 G-四链体。该阵列能够同时区分和分类 G-四链体结构。这种简单的非侵入式传感方法不需要发现和合成特定的 G-四链体结合配体,而是采用简单的多组分方法确保广泛的适用性。