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在发夹DNA-分子信标纳米界面上调控CRISPR/Cas12a反式切割以增强多重传感应用

Regulating CRISPR/Cas12a trans-cleavage on the hairpin DNA-MB nanointerface for enhanced multiplexed sensing application.

作者信息

Zhao Chenxi, Du Lijie, Jiang Dike, Hu Jing, Hou Xiandeng

机构信息

Analytical & Testing Centre, Sichuan University Chengdu Sichuan 610064 China

Key Laboratory of Animal Diseases and Human Health of Sichuan Province, College of Veterinary Medicine, Sichuan Agricultural University Chengdu 611130 China.

出版信息

Chem Sci. 2025 May 19. doi: 10.1039/d5sc01759a.

Abstract

RNA-programmed clustered regularly interspaced short palindromic repeats (CRISPR) and CRISPR-associated systems (Cas) have garnered considerable attention in gene editing and molecular diagnostics. However, the precise control over the catalytic activity and cleavage site of Cas12a, a typical subtype of the Cas family, as well as its combination with downstream dynamic DNA technology remains challenging. Here, it was demonstrated that the cleavage activity and site can be modulated by adjusting the root, loop and stem of hairpin DNA reporters attached onto magnetic beads (MBs). The accelerated and controlled Cas12a trans-cleavage on the MB-hairpin DNA nanointerfaces is leveraged to trigger downstream hybridization chain reaction (HCR). Capitalizing on fluorescence (FL) labeling or double-stranded DNA (dsDNA) intercalators (SYBR green I or Ru-dppz), multiplexed detection (label or label-free, single-mode FL or dual-mode FL/ICP-MS) can be realized. Taking porcine pseudorabies virus (PRV) DNA as a model target, the potential application of this approach was demonstrated in clinical diagnosis, which achieves 100% accuracy that rivals the gold standard PCR. This methodology holds promise in a wide array of biological applications.

摘要

RNA编程的成簇规律间隔短回文重复序列(CRISPR)和CRISPR相关系统(Cas)在基因编辑和分子诊断领域备受关注。然而,对Cas家族典型亚型Cas12a的催化活性和切割位点进行精确控制,以及使其与下游动态DNA技术相结合,仍然具有挑战性。在此,研究表明,通过调整附着在磁珠(MB)上的发夹DNA报告分子的根部、环部和茎部,可以调节切割活性和切割位点。利用MB-发夹DNA纳米界面上加速且可控的Cas12a反式切割来触发下游杂交链式反应(HCR)。借助荧光(FL)标记或双链DNA(dsDNA)嵌入剂(SYBR绿I或钌-联吡啶),可以实现多重检测(标记或无标记、单模FL或双模FL/电感耦合等离子体质谱)。以猪伪狂犬病病毒(PRV)DNA作为模型靶点,证明了该方法在临床诊断中的潜在应用,其准确率达100%,可与金标准PCR相媲美。该方法在广泛的生物学应用中具有前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ddd/12190247/e129545d2b29/d5sc01759a-f1.jpg

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