Quantification of purified endogenous miRNAs with high sensitivity and specificity

MicroRNAs (miRNAs) are short (19–24 nt) non-coding RNAs that suppress the expression of protein coding genes at the post-transcriptional level. Differential expression profiles of miRNAs across a range of diseases have emerged as powerful biomarkers, making a reliable yet rapid profiling technique f...

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Veröffentlicht in:Nature communications 2020-11, Vol.11 (1), p.6033-6033, Article 6033
Hauptverfasser: Shin, Soochul, Jung, Yoonseok, Uhm, Heesoo, Song, Minseok, Son, Soomin, Goo, Jiyoung, Jeong, Cherlhyun, Song, Ji-Joon, Kim, V. Narry, Hohng, Sungchul
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Sprache:eng
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Zusammenfassung:MicroRNAs (miRNAs) are short (19–24 nt) non-coding RNAs that suppress the expression of protein coding genes at the post-transcriptional level. Differential expression profiles of miRNAs across a range of diseases have emerged as powerful biomarkers, making a reliable yet rapid profiling technique for miRNAs potentially essential in clinics. Here, we report an amplification-free multi-color single-molecule imaging technique that can profile purified endogenous miRNAs with high sensitivity, specificity, and reliability. Compared to previously reported techniques, our technique can discriminate single base mismatches and single-nucleotide 3′-tailing with low false positive rates regardless of their positions on miRNA. By preloading probes in Thermus thermophilus Argonaute ( Tt Ago), miRNAs detection speed is accelerated by more than 20 times. Finally, by utilizing the well-conserved linearity between single-molecule spot numbers and the target miRNA concentrations, the absolute average copy numbers of endogenous miRNA species in a single cell can be estimated. Thus our technique, Ago-FISH (Argonaute-based Fluorescence In Situ Hybridization), provides a reliable way to accurately profile various endogenous miRNAs on a single miRNA sensing chip. MicroRNAs are potentially powerful biomarkers, though clinical use requires rapid and reliable profiling. Here the authors report amplification-free multicolour single-molecule imaging with single base mismatch sensitivity.
ISSN:2041-1723
2041-1723
DOI:10.1038/s41467-020-19865-9