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一种新型微型 CRISPR-Cas13 系统,用于 SARS-CoV-2 诊断。

A Novel Miniature CRISPR-Cas13 System for SARS-CoV-2 Diagnostics.

机构信息

Laboratory for Genome Engineering and Synthetic Biology, Division of Biological Sciences, 4700 King Abdullah University of Science and Technology, Thuwal 23955-6900, Saudi Arabia.

出版信息

ACS Synth Biol. 2021 Oct 15;10(10):2541-2551. doi: 10.1021/acssynbio.1c00181. Epub 2021 Sep 21.

Abstract

Rapid, point-of-care (POC) diagnostics are essential to mitigate the impacts of current (and future) epidemics; however, current methods for detecting severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) require complicated laboratory tests that are generally conducted off-site and require substantial time. CRISPR-Cas systems have been harnessed to develop sensitive and specific platforms for nucleic acid detection. These detection platforms take advantage of CRISPR enzymes' RNA-guided specificity for RNA and DNA targets and collateral trans activities on single-stranded RNA and DNA reporters. Microbial genomes possess an extensive range of CRISPR enzymes with different specificities and levels of collateral activity; identifying new enzymes may improve CRISPR-based diagnostics. Here, we identified a new Cas13 variant, which we named as miniature Cas13 (mCas13), and characterized its catalytic activity. We then employed this system to design, build, and test a SARS-CoV-2 detection module coupling reverse transcription loop-mediated isothermal amplification (RT-LAMP) with the mCas13 system to detect SARS-CoV-2 in synthetic and clinical samples. Our system exhibits sensitivity and specificity comparable to other CRISPR systems. This work expands the repertoire and application of Cas13 enzymes in diagnostics and for potential applications, including RNA knockdown and editing. Importantly, our system can be potentially adapted and used in large-scale testing for diverse pathogens, including RNA and DNA viruses, and bacteria.

摘要

快速、即时检测(POC)诊断对于减轻当前(和未来)疫情的影响至关重要;然而,目前用于检测严重急性呼吸综合征冠状病毒 2(SARS-CoV-2)的方法需要复杂的实验室测试,这些测试通常在现场外进行,需要大量时间。CRISPR-Cas 系统已被用于开发用于核酸检测的敏感和特异平台。这些检测平台利用了 CRISPR 酶对 RNA 和 DNA 靶标的 RNA 导向特异性以及对单链 RNA 和 DNA 报告分子的旁切活性。微生物基因组具有广泛的具有不同特异性和旁切活性水平的 CRISPR 酶;鉴定新的酶可能会改进基于 CRISPR 的诊断。在这里,我们鉴定了一种新的 Cas13 变体,我们将其命名为微型 Cas13(mCas13),并对其催化活性进行了表征。然后,我们利用该系统设计、构建和测试了一种 SARS-CoV-2 检测模块,该模块将逆转录环介导等温扩增(RT-LAMP)与 mCas13 系统相结合,用于检测合成和临床样本中的 SARS-CoV-2。我们的系统表现出与其他 CRISPR 系统相当的灵敏度和特异性。这项工作扩展了 Cas13 酶在诊断和潜在应用中的应用范围,包括 RNA 敲低和编辑。重要的是,我们的系统可以潜在地适应和用于包括 RNA 和 DNA 病毒以及细菌在内的多种病原体的大规模测试。

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