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自供给向导 RNA 介导的 CRISPR/Cas12a 荧光系统用于 T4 PNKP 的灵敏检测。

Self-Supplying Guide RNA-Mediated CRISPR/Cas12a Fluorescence System for Sensitive Detection of T4 PNKP.

机构信息

School of Mechanical and Automotive Engineering, Liaocheng University, Liaocheng 252059, China.

Department of Chemistry, Liaocheng University, Liaocheng 252059, China.

出版信息

Molecules. 2022 Dec 17;27(24):9019. doi: 10.3390/molecules27249019.

Abstract

Sensitive detection methods for T4 polynucleotide kinase/phosphatase (T4 PNKPP) are urgently required to obtain information on malignancy and thereby to provide better guidance in PNKP-related diagnostics and drug screening. Although the CRISPR/Cas12a system shows great promise in DNA-based signal amplification protocols, its guide RNAs with small molecular weight often suffer nuclease degradation during storage and utilization, resulting in reduced activation efficiency. Herein, we proposed a self-supplying guide RNA-mediated CRISPR/Cas12a system for the sensitive detection of T4 PNKP in cancer cells, in which multiple copies of guide RNA were generated by in situ transcription. In this assay, T4 PNKP was chosen as a model, and a dsDNA probe with T7 promoter region and the transcription region of guide RNA were involved. Under the action of T4 PNKP, the 5'-hydroxyl group of the dsDNA probe was converted to a phosphate group, which can be recognized and digested by Lambda Exo, resulting in dsDNA hydrolysis. The transcription template was destroyed, which resulted in the failure to generate guide RNA by the transcription pathway. Therefore, the CRISPR/Cas12a system could not be activated to effectively cleavage the F-Q-reporter, and the fluorescence signal was turned off. In the absence of T4 PNKP, the 5'-hydroxyl group of the substrate DNA cannot be digested by Lambda Exo. The intact dsDNA acts as the transcription template to generate a large amount of guide RNA. Finally, the formed Cas12a/gRNA complex triggered the reverse cleavage of Cas12a on the F-Q-reporter, resulting in a "turn-on" fluorescence signal. This strategy displayed sharp sensitivity of T4 PNKP with the limit of detection (LOD) down to 0.0017 mU/mL, which was mainly due to the multiple regulation effect of transcription amplification. In our system, the dsDNA simultaneously serves as the T4 PNKP substrate, transcription template, and Lambda Exo substrate, avoiding the need for multiple probe designs and saving costs. By integrating the target recognition, Lambda Exo activity, and trans-cleavage activity of Cas12a, CRISPR/Cas12a catalyzed the cleavage of fluorescent-labeled short-stranded DNA probes and enabled synergetic signal amplification for sensitive T4 PNKP detection. Furthermore, the T4 PNKP in cancer cells has been evaluated as a powerful tool for biomedical research and clinical diagnosis, proving a good practical application capacity.

摘要

T4 多核苷酸激酶/磷酸酶(T4 PNKPP)的灵敏检测方法是获得有关恶性肿瘤信息的迫切需要,从而为 PNKP 相关诊断和药物筛选提供更好的指导。尽管 CRISPR/Cas12a 系统在基于 DNA 的信号放大方案中显示出巨大的潜力,但由于其小分子质量的向导 RNA 在储存和使用过程中经常受到核酸酶的降解,从而导致激活效率降低。在此,我们提出了一种自供应向导 RNA 介导的 CRISPR/Cas12a 系统,用于灵敏检测癌细胞中的 T4 PNKP,其中通过原位转录生成多个向导 RNA 拷贝。在该测定中,选择 T4 PNKP 作为模型,并涉及具有 T7 启动子区域和向导 RNA 转录区域的 dsDNA 探针。在 T4 PNKP 的作用下,dsDNA 探针的 5'-羟基转化为磷酸基团,该磷酸基团可被 Lambda Exo 识别并消化,导致 dsDNA 水解。转录模板被破坏,导致转录途径无法生成向导 RNA。因此,CRISPR/Cas12a 系统无法被激活以有效切割 F-Q-报告子,荧光信号被关闭。在没有 T4 PNKP 的情况下,底物 DNA 的 5'-羟基不能被 Lambda Exo 消化。完整的 dsDNA 充当转录模板,生成大量的向导 RNA。最后,形成的 Cas12a/gRNA 复合物触发 Cas12a 在 F-Q-报告子上的反向切割,从而产生“开启”荧光信号。该策略对 T4 PNKP 具有敏锐的灵敏度,检测限(LOD)低至 0.0017 mU/mL,这主要归因于转录放大的多重调节作用。在我们的系统中,dsDNA 同时充当 T4 PNKP 底物、转录模板和 Lambda Exo 底物,避免了需要设计多个探针并节省成本。通过整合 Cas12a 的目标识别、Lambda Exo 活性和反式切割活性,CRISPR/Cas12a 催化了荧光标记的短链 DNA 探针的切割,并为灵敏的 T4 PNKP 检测实现了协同信号放大。此外,癌细胞中的 T4 PNKP 已被评估为生物医学研究和临床诊断的有力工具,证明了其良好的实际应用能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3da8/9782049/c2d9264c13b2/molecules-27-09019-g001.jpg

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