College of Horticulture, Henan Agricultural University, Zhengzhou, China.
Henan Key Laboratory of Fruit and Cucurbit Biology, Zhengzhou, China.
Plant Biotechnol J. 2023 Jul;21(7):1465-1478. doi: 10.1111/pbi.14051. Epub 2023 Apr 17.
Existing CRISPR/Cas12a-based diagnostic platforms offer accurate and vigorous monitoring of nucleic acid targets, but have the potential to be further optimized for more efficient detection. Here, we profiled 16 Cas12a orthologs, focusing on their trans-cleavage activity and their potential as diagnostic enzymes. We observed the Mb2Cas12a has more robust trans-cleavage activity than other orthologs, especially at lower temperatures. An engineered Mb2Cas12a-RRVRR variant presented robust trans-cleavage activity and looser PAM constraints. Moreover, we found the existing one-pot assay, which simultaneously performed Recombinase Polymerase Amplification (RPA) and Cas12a reaction in one system, resulted in the loss of single-base discrimination during diagnosis. Therefore, we designed a reaction vessel that physically separated the RPA and Cas12a steps while maintaining a closed system. This isolated but closed system made diagnostics more sensitive and specific and effectively prevented contamination. This shelved Mb2Cas12a-RRVRR variant-mediated assay detected various targets in less than 15 min and exhibited equal or greater sensitivity than qPCR when detecting bacterial pathogens, plant RNA viruses and genetically modified crops. Overall, our findings further improved the efficiency of the current CRISPR-based diagnostic system and undoubtedly have great potential for highly sensitive and specific detection of multiple sample types.
现有的基于 CRISPR/Cas12a 的诊断平台可提供对核酸靶标的准确和有力监测,但有可能进一步优化以实现更高效的检测。在这里,我们对 16 种 Cas12a 同源物进行了分析,重点研究了它们的转录切割活性及其作为诊断酶的潜力。我们观察到 Mb2Cas12a 比其他同源物具有更强的转录切割活性,尤其是在较低的温度下。一种工程化的 Mb2Cas12a-RRVRR 变体表现出更强的转录切割活性和更宽松的 PAM 限制。此外,我们发现现有的一锅法检测,即在一个系统中同时进行重组酶聚合酶扩增(RPA)和 Cas12a 反应,导致在诊断过程中丧失了单碱基识别能力。因此,我们设计了一种反应容器,将 RPA 和 Cas12a 步骤物理分离,同时保持封闭系统。这种隔离但封闭的系统使诊断更灵敏、更特异,并有效防止了污染。这种改良的 Mb2Cas12a-RRVRR 变体介导的检测方法可在不到 15 分钟内检测到各种靶标,在检测细菌病原体、植物 RNA 病毒和转基因作物时,其灵敏度与 qPCR 相当或更高。总之,我们的研究结果进一步提高了现有的基于 CRISPR 的诊断系统的效率,无疑为多种样本类型的高灵敏度和特异性检测提供了巨大潜力。