State Key Laboratory of Environmental Chemistry and Ecotoxicology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China.
University of Chinese Academy of Sciences, Beijing 100049, China.
J Am Chem Soc. 2024 Oct 2;146(39):26657-26666. doi: 10.1021/jacs.4c02354. Epub 2024 Aug 25.
Active clustered regularly interspaced short palindromic repeats (CRISPR/Cas12a) systems possess both -cleavage (targeted) and -cleavage (collateral) activities, which are useful for genome engineering and diagnostic applications. Both single- and double-stranded DNA can activate crRNA-Cas12a ribonucleoprotein (RNP) to achieve - and -cleavage enzymatic activities. However, it is not clear whether RNA can activate the CRISPR/Cas12a system and what is critical to the -cleavage activity. We report here that RNA can activate the CRISPR/Cas12a system and trigger its -cleavage activity. We reveal that the activated crRNA-Cas12a RNP favors the -cleavage of longer sequences than commonly used. These new findings of the RNA-activated -cleavage capability of Cas12a provided the foundation for the design and construction of CRISPR nanorobots that operate in living cells. We assembled the crRNA-Cas12a RNP and nucleic acid substrates on gold nanoparticles to form CRISPR nanorobots, which dramatically increased the local effective concentration of the substrate in relation to the RNP and the -cleavage kinetics. Binding of the target microRNA to the crRNA-Cas12a RNP activated the nanorobots and their -cleavage function. The repeated (multiple-turnover) -cleavage of the fluorophore-labeled substrates generated amplified fluorescence signals. Sensitive and real-time imaging of specific microRNA in live cells demonstrated the promising potential of the CRISPR nanorobot system for future applications in monitoring and modulating biological functions within living cells.
活性簇状规则间隔短回文重复 (CRISPR/Cas12a) 系统具有靶向和非靶向切割 (旁切) 活性,可用于基因组工程和诊断应用。单链和双链 DNA 均可激活 crRNA-Cas12a 核糖核蛋白 (RNP),以实现靶向和非靶向切割酶活性。然而,目前尚不清楚 RNA 是否可以激活 CRISPR/Cas12a 系统,以及对靶向切割活性至关重要的是什么。我们在此报告 RNA 可以激活 CRISPR/Cas12a 系统并触发其靶向切割活性。我们揭示了激活的 crRNA-Cas12a RNP 有利于切割比常用的更长的序列。这些 Cas12a 的 RNA 激活靶向切割能力的新发现为设计和构建在活细胞中运行的 CRISPR 纳米机器人奠定了基础。我们将 crRNA-Cas12a RNP 和核酸底物组装在金纳米颗粒上,形成 CRISPR 纳米机器人,这大大增加了相对于 RNP 的底物的局部有效浓度和靶向切割动力学。靶 microRNA 与 crRNA-Cas12a RNP 的结合激活了纳米机器人及其靶向切割功能。荧光标记底物的重复 (多次循环) 切割产生了放大的荧光信号。活细胞中特定 microRNA 的敏感和实时成像表明,CRISPR 纳米机器人系统具有在活细胞内监测和调节生物功能方面的应用前景。