Harmonizing amplification and cleavage kinetics through crRNA scaffold mutation enables robust one-pot CRISPR–Cas12 diagnostics

反式激活crRNA 核酸 化学 劈理(地质) 放大器 适体 突变体 点突变 环介导等温扩增 脱氧核酶 动力学 清脆的 计算生物学 生物物理学 纳米技术 微流控 重组酶聚合酶扩增 生物传感器 检出限 组合化学 稳健性(进化) 复式(建筑) 合成生物学 分子诊断学 过程性 三甲胺 脚手架
作者
Qingyang Jiang,Ruiquan Xu,Zhixin Lin,Chenyu Sun,Feidi Ye,Yanyan Ye,Duoming Lin,Zhen Li,Jingwen Mai,Zhihong Lin,Jiuxin Qu,Xiaoyan Deng,Chenchen Ge,Dou Wang
出处
期刊:Proceedings of the National Academy of Sciences of the United States of America [National Academy of Sciences]
卷期号:123 (37)
标识
DOI:10.1073/pnas.2613134123
摘要

CRISPR-based diagnostics (CRISPR-Dx) integrated with isothermal nucleic acid amplification have emerged as a promising strategy for point-of-care molecular testing. Their practical deployment, however, remains constrained by workflow-related limitations. Conventional two-step formats are laborious and highly susceptible to aerosol contamination during amplicon transfer, whereas simplified one-pot formats often suffer from reduced sensitivity because amplification and CRISPR-mediated cleavage compete kinetically within the same reaction vessel. In this work, we present a broadly applicable one-pot detection strategy termed mutant scaffold-mediated RPA-CRISPR/Cas12a (MS-CRISPR). This approach introduces rationally designed point mutations into the crRNA scaffold to moderately attenuate Cas12a activation and cleavage kinetics. Such kinetic tuning prevents the enzyme from prematurely depleting nascent RPA amplicons, a common source of signal loss in wild-type systems. By delaying cleavage until sufficient amplification products have accumulated, MS-CRISPR markedly enhances endpoint signal output. Using this kinetically balanced system, we achieved a limit of detection of 1 copy/μL for both SARS-CoV-2 and influenza A virus within 15 min, while preserving a fully closed-tube workflow that minimizes aerosol contamination and simplifies operation. We coupled the assay with an instrument-free lateral-flow readout and an ultraportable, multiplex, low-cost microfluidic platform (portable wireless isothermal nucleic acid detection). Clinical validation with patient samples showed 100% sensitivity and specificity for both viral targets. Collectively, MS-CRISPR establishes a sensitive, versatile, and field-deployable platform for rapid pathogen screening.

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