Split probe-induced protein translational amplification for nucleic acid detection

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Title
Split probe-induced protein translational amplification for nucleic acid detection
Author(s)
Yoo-Hong Min; Yoonseo Hong; C H Kim; K H Lee; Yong Beom ShinJu Young Byun
Bibliographic Citation
ACS Applied Bio Materials, vol. 7, no. 12, pp. 8389-8397
Publication Year
2024
Abstract
Nucleic acid detection is important in a wide range of applications, including disease diagnosis, genetic testing, biotechnological research, environmental monitoring, and forensic science. However, the application of nucleic acid detection in various fields is hindered by the lack of sensitive, accurate, and inexpensive methods. This study introduces a simple approach to enhance the sensitivity for the accurate detection of nucleic acids. Our approach combined a split-probe strategy with in vitro translational amplification of reporter protein for signal generation to detect nucleic acids with high sensitivity and selectivity. This approach enables target-mediated translational amplification of reporter proteins by linking split probes in the presence of a target microRNA (miRNA). In particular, the fluorescence split-probe sensor adopts a reporter protein with various fluorescence wavelength regions, enabling the simultaneous detection of multiple target miRNAs. Moreover, luminescence detection by merely altering the reporter protein sequence can substantially enhance the sensitivity of detection of target miRNAs. Using this system, we analyzed and quantified target miRNAs in the total RNA extracted from cell lines and cell-derived extracellular vesicles with high specificity and accuracy. This split-probe sensor has potential as a powerful tool for the simple, sensitive, and specific detection of various target nucleic acids.
Keyword
Nucleic acid detectionmiRNASplit probecell-free protein synthesissfGFPNanolucExosome
ISSN
2576-6422
Publisher
Amer Chem Soc
Full Text Link
http://dx.doi.org/10.1021/acsabm.4c01187
Type
Article
Appears in Collections:
Division of Research on National Challenges > Bionanotechnology Research Center > 1. Journal Articles
Critical Diseases Diagnostics Convergence Research Center > 1. Journal Articles
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