Cas9
化学
原位
基因组编辑
清脆的
基因
计算生物学
亚基因组mRNA
引导RNA
荧光团
遗传学
荧光
生物
物理
生物化学
光学
有机化学
作者
Yanan Li,Di Huang,Yiran Pei,Yonghua Wu,Rongbin Xu,Fenglei Quan,Hua Gao,Junli Zhang,Hongwei Hou,Kaixiang Zhang,Jinghong Li
标识
DOI:10.1021/acs.analchem.2c04867
摘要
Site-specific imaging of target genes using CRISPR probes is essential for understanding the molecular mechanisms of gene function and engineering tools to modulate its downstream pathways. Herein, we develop CRISPR/Cas9-mediated signal amplification by exchange reaction (CasSABER) for programmable in situ imaging of low and nonrepetitive regions of the target gene in the cell nucleus. The presynthesized primer-exchange reaction (PER) probe is able to hybridize multiple fluorophore-bearing imager strands to specifically light up dCas9/sgRNA target-bound gene loci, enabling in situ imaging of fixed cellular gene loci with high specificity and signal-to-noise ratio. In combination with a multiround branching strategy, we successfully detected nonrepetitive gene regions using a single sgRNA. As an intensity-codable and orthogonal probe system, CasSABER enables the adjustable amplification of local signals in fixed cells, resulting in the simultaneous visualization of multicopy and single-copy gene loci with similar fluorescence intensity. Owing to avoiding the complexity of controlling in situ mutistep enzymatic reactions, CasSABER shows good reliability, sensitivity, and ease of implementation, providing a rapid and cost-effective molecular toolkit for studying multigene interaction in fundamental research and gene diagnosis.
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