Shi Runyu, Wang Yanxi, Yang Qianfan, Li Feng
Key Laboratory of Green Chemistry and Technology of Ministry of Education, College of Chemistry Sichuan University, Chengdu 610064, Sichuan Province, P. R. China.
Anal Chem. 2025 Jul 15;97(27):14693-14699. doi: 10.1021/acs.analchem.5c02200. Epub 2025 Jun 29.
-Motif (iM) is a noncanonical nucleic acid secondary structure that is implicated in gene regulation and disease progression. However, the development of selective ligands and fluorescent probes for iM recognition and detection remains limited, hindering the detailed study of iM structural dynamics and their potential biomedical relevance. In this study, we introduce BT-Cy-1, a novel fluorescent probe that enables in vitro selective recognition and ultrasensitive detection of iM structures. Although BT-Cy-1 interacts with a variety of DNA conformations, its multichannel fluorescence response, when analyzed via principal component analysis, allows for reliable discrimination among iMs, G-quadruplexes, double-stranded, and single-stranded DNA, including unfolded or non-iM-forming cytosine-rich sequences. The probe further enables accurate and linear quantification of iM DNA, with a detection limit as low as 3.77 nM. To assess its performance under biologically relevant conditions, BT-Cy-1 was tested in diluted fetal bovine serum, where it retained both structural discrimination and detection sensitivity. This work provides a robust in vitro platform for the quantitative analysis of noncanonical DNA structures, serving as a foundation for future applications in nucleic acid-based diagnostics and molecular recognition technologies.
基序(iM)是一种非经典核酸二级结构,与基因调控和疾病进展有关。然而,用于iM识别和检测的选择性配体和荧光探针的开发仍然有限,这阻碍了对iM结构动力学及其潜在生物医学相关性的详细研究。在本研究中,我们引入了BT-Cy-1,一种新型荧光探针,能够在体外选择性识别和超灵敏检测iM结构。尽管BT-Cy-1与多种DNA构象相互作用,但通过主成分分析对其多通道荧光响应进行分析时,可在iM、G-四链体、双链和单链DNA(包括未折叠或非iM形成的富含胞嘧啶序列)之间进行可靠区分。该探针还能够对iM DNA进行准确的线性定量,检测限低至3.77 nM。为了评估其在生物学相关条件下的性能,在稀释的胎牛血清中对BT-Cy-1进行了测试,结果表明它在该环境中仍能保持结构区分能力和检测灵敏度。这项工作为非经典DNA结构的定量分析提供了一个强大的体外平台,为未来基于核酸的诊断和分子识别技术的应用奠定了基础。