化学
核酸
纳米探针
催化作用
核糖核酸
脱氧核酶
DNA
清脆的
Cas9
肽核酸
生物物理学
组合化学
生物化学
分子生物学
聚合酶
荧光
拉曼散射
连锁反应
生物素
基因
纳米技术
作者
Lin Liu,Chengxin Bao,Huimin Wang,Feiwu Li,Xiangguo Liu,Yuxuan He,Jingjing Chang,Yuejia Yin,Shuping Xu
标识
DOI:10.1021/acsmeasuresciau.6c00142
摘要
Abstract This study established a surface-enhanced Raman scattering (SERS) detection method based on the catalytic hairpin assembly (CHA) reaction combined with clustered regularly interspaced short palindromic repeats and its associated proteins (CRISPR/Cas), integrated with the guanine-quadruplexes/Hemin (G4/Hemin) catalytic amplification effect, which is available for identifying a typical indicator for genetically modified crops, the 35S promoter from the cauliflower mosaic virus (CaMV35S). Target CaMV35S-derived RNA (CaMV35S RNA) triggers the CHA reaction, yielding a double-stranded DNA product (C1/C2) that is recognized by CRISPR RNA (crRNA), thereby activating the trans-cleavage activity of Cas12a. A magnetic bead-based nanoprobe was fabricated by linking the hybridization chain reaction (HCR) product to the magnetic bead. This probe can fold into repeated G4 units under a specific potassium ion concentration to enable a high loading of Hemin, thereby providing strong peroxidase-like catalytic activity for 3,3′,5,5′-tetramethylbenzidine (TMB). In a positive trial, the 35S RNA initiates CHA, and the CHA product activates Cas12a, disrupting the HCR products on the magnetic bead probe, preventing the G4 structure formation, accordingly yielding a weak SERS signal from TMB. In contrast, a negative trial fails to activate Cas12a, and the probe retains its nanoenzyme activity, resulting in a strong SERS signal from the produced oxTMB. Owing to the collateral trans-cleavage activity of Cas12a and the high peroxidase-like nanozyme activity of G4/Hemin, this method achieves the highly sensitive SERS detection of genetically modified samples without target gene preamplification.
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