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Functional DNA Regulated CRISPR-Cas12a Sensors for Point-of-Care Diagnostics of Non-Nucleic-Acid Targets

机译:功能性DNA调控的CRISPR-Cas12a传感器用于非核酸目标的即时诊断

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摘要

Beyond its extraordinary genome editing ability, the CRISPR-Cas systems have opened a new era of biosensing applications due to its high base resolution and isothermal signal amplification. However, the reported CRISPR-Cas sensors are largely only used for the detection of nucleic acids with limited application for non-nucleic-acid targets. To realize the full potential of the CRISPR-Cas sensors and broaden their applications for detection and quantitation of non-nucleic-acid targets, we herein report CRISPR-Cas 12a sensors that are regulated by functional DNA (fDNA) molecules such as aptamers and DNAzymes that are selective for small organic molecule and metal ion detection. The sensors are based on the Cas12a-dependent reporter system consisting of Casl2a, CRISPR RNA (crRNA), and its single-stranded DNA substrate labeled with a fluorophore and quencher at each end (ssDNA-FQ), and fDNA molecules that can lock a DNA activator for Casl2a-crRNA, preventing the ssDNA cleavage function of Casl2a in the absence of the fDNA targets. The presence of fDNA targets can trigger the unlocking of the DNA activator, which can then activate the cleavage of ssDNA-FQ by Cas12a, resulting in an increase of the fluorescent signal detectable by commercially available portable fluorimeters. Using this method, ATP and Na~+ have been detected quantitatively under ambient temperature (25 ℃) using a simple and fast detection workflow (two steps and <15 min), making the fDNA-regulated CRISPR system suitable for field tests or point-of-care diagnostics. Since fDNAs can be obtained to recognize a wide range of targets, the methods demonstrated here can expand this powerful CRISPR-Cas sensor system significantly to many other targets and thus provide a new toolbox to significantly expand the CRISPR-Cas system into many areas of bioanalytical and biomedical applications.
机译:CRISPR-Cas系统不仅具有出色的基因组编辑能力,还因为其高碱基分辨率和等温信号放大而开启了生物传感应用的新纪元。然而,报道的CRISPR-Cas传感器主要仅用于检测核酸,对非核酸靶标的应用有限。为了实现CRISPR-Cas传感器的全部潜力并扩大其在检测和定量非核酸目标中的应用,我们在此报告了CRISPR-Cas 12a传感器,该传感器受功能性DNA(fDNA)分子(如适体和DNA酶)调节对有机小分子和金属离子检测具有选择性。传感器基于Cas12a依赖的报告系统,包括Casl2a,CRISPR RNA(crRNA)及其单链DNA底物,两端均标记有荧光团和淬灭剂(ssDNA-FQ),而fDNA分子可锁定Casl2a-crRNA的DNA激活剂,在不存在fDNA靶标的情况下阻止Casl2a的ssDNA裂解功能。 fDNA靶标的存在可以触发DNA激活剂的解锁,然后可以激活Cas12a对ssDNA-FQ的裂解,从而导致可商购的便携式荧光计检测到的荧光信号增加。使用这种方法,已通过简单快速的检测流程(两步且在15分钟之内)在环境温度(25℃)下定量检测了ATP和Na〜+,这使得fDNA调控的CRISPR系统适合于现场测试或即时诊断。由于可以获得fDNAs来识别广泛的靶标,因此本文展示的方法可以将这个强大的CRISPR-Cas传感器系统显着扩展到许多其他靶标,从而提供了一个新的工具箱,可以将CRISPR-Cas系统显着扩展到生物分析的许多领域和生物医学应用。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2020年第1期|207-213|共7页
  • 作者单位

    Department of Chemistry Department of Biochemistry University of Ilhnois at Urbana—Champaign Urbana Illinois 61801 United States;

    Department of Chemistry State Key Laboratory of Analytical Chemistry for Life Science School of Chemistry and Chemical Engineering Nanjing University Nanjing 210023 China;

    Department of Biochemistry University of Ilhnois at Urbana—Champaign Urbana Illinois 61801 United States;

    Department of Chemistry;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 05:17:04

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