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Mutations in ribosomal RNA (rRNA) have traditionally been detected by the primer extension assay, which is a tedious and multistage procedure. Here, we describe a simple and straightforward fluorescence assay based on binary deoxyribozyme (BiDz) sensors. The assay uses two short DNA oligonucleotides that hybridize specifically to adjacent fragments of rRNA, one of which contains a mutation site. This hybridization results in the formation of a deoxyribozyme catalytic core that produces the fluorescent signal and amplifies it due to multiple rounds of catalytic action. This assay enables us to expedite semi- quantification of mutant rRNA content in cell cultures starting from whole cells, which provides information useful for optimization of culture preparation prior to ribosome isolation. The method requires less than a microliter of a standard Escherichia coli cell culture and decreases analysis time from several days (for primer extension assay) to 1.5 h with hands-on time of ∼10 min. It is sensitive to single-nucleotide mutations. The new assay simplifies the preliminary analysis of RNA samples and cells in molecular biology and cloning experiments and is promising in other applications where fast detection/ quantification of specific RNA is required.
- Gerasimova, Yulia V. (Author)
- Yakovchuk, Petro (Author)
- Dedkova, Larisa (Author)
- Hecht, Sidney (Author)
- Kolpashchikov, Dmitry M. (Author)
- Biodesign Institute (Contributor)
Gerasimova, Y. V., Yakovchuk, P., Dedkova, L. M., Hecht, S. M., & Kolpashchikov, D. M. (2015). Expedited quantification of mutant ribosomal RNA by binary deoxyribozyme (BiDz) sensors. Rna, 21(10), 1834-1843. doi:10.1261/rna.052613.115
- 2017-06-19 03:20:49
- 2021-11-01 01:31:45
- 3 years ago