Chen Xiaolong, You Qianyi, Guo Yawen, Zhang Jing, Hu Qiao, Huang Chaowang, Wu Zhili, Deng Junjiang, Xu Jing, Zhao Peng, Hu Mingdong
Department of Geriatrics and Special Services Medicine, Xinqiao Hospital, Army Military Medical University, Chongqing 400037, China.
Department of Health Management, Xinqiao Hospital, Army Military Medical University, Chongqing 400037, China.
Chem Biomed Imaging. 2024 Dec 19;3(6):369-378. doi: 10.1021/cbmi.4c00089. eCollection 2025 Jun 23.
RNA imaging in live cells can provide comprehensive information on the expression, localization, degradation, storage, and regulation of RNA in cells, which is crucial for basic biology and clinical research. Our previous research finds that slicing the facilitated crRNA in the typical CRISPR/Cas12a system at a fitted site did not affect its -cleavage activity, which was previously reported to be triggered by targeted ssDNA or dsDNA, and a mini crRNA-mediated CRISPR/Cas12a (MCM-CRISPR/Cas12a) system was proposed. Here, we further apply it to enhanced imaging of MicroRNAs in cells by designing the activator in the system as a molecular beacon (MB), which can form a hybrid double-stranded structure of DNA/RNA with the targeted MicroRNA. When targeted MicroRNA is present, the hairpin structure of the MB is opened and the system emits fluorescence. Simultaneously, the DNA-RNA formed by the targeted MicroRNA and MB activates the -cleavage activity of LbCas12a, partially cleaving the single-stranded DNA extended from the MB and further enhancing the fluorescence intensity of the system. We designed the MCM-CRISPR/Cas12a system for miRNA-21, miRNA-155, and miRNA-10b and successfully applied it for sensitive and specific imaging of these MicroRNAs both inside and outside cells. This study provides a new idea for the sensitive and specific imaging of multiple MicroRNAs within cells, which is important for studying the distribution and dynamic changes of MicroRNAs in cells.
活细胞中的RNA成像可以提供有关细胞中RNA的表达、定位、降解、储存和调控的全面信息,这对于基础生物学和临床研究至关重要。我们之前的研究发现,在典型的CRISPR/Cas12a系统中,在合适的位点切割易化的crRNA不会影响其切割活性,此前报道该活性由靶向的单链DNA或双链DNA触发,并提出了一种微型crRNA介导的CRISPR/Cas12a(MCM-CRISPR/Cas12a)系统。在此,我们通过将系统中的激活剂设计为分子信标(MB),进一步将其应用于细胞中微小RNA的增强成像,该分子信标可以与靶向的微小RNA形成DNA/RNA杂交双链结构。当存在靶向的微小RNA时,MB的发夹结构打开,系统发出荧光。同时,由靶向的微小RNA和MB形成的DNA-RNA激活LbCas12a的切割活性,部分切割从MB延伸的单链DNA并进一步增强系统的荧光强度。我们针对miRNA-21、miRNA-155和miRNA-10b设计了MCM-CRISPR/Cas12a系统,并成功将其应用于细胞内外这些微小RNA的灵敏且特异的成像。本研究为细胞内多种微小RNA的灵敏且特异成像提供了新思路,这对于研究微小RNA在细胞中的分布和动态变化具有重要意义。