A general approach to high-yield biosynthesis of chimeric RNAs bearing various types of functional small RNAs for broad applications
Nucleic Acids Research, ISSN: 1362-4962, Vol: 43, Issue: 7, Page: 3857-3869
2015
- 69Citations
- 57Captures
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Metrics Details
- Citations69
- Citation Indexes69
- 69
- CrossRef25
- Captures57
- Readers57
- 57
Article Description
RNA research and therapy relies primarily on synthetic RNAs. We employed recombinant RNA technology toward large-scale production of pre-miRNA agents in bacteria, but found the majority of target RNAs were not or negligibly expressed. We thus developed a novel strategy to achieve consistent high-yield biosynthesis of chimeric RNAs carrying various small RNAs (e.g. miRNAs, siRNAs and RNA aptamers), which was based upon an optimal noncoding RNA scaffold (OnRS) derived from tRNA fusion pre-miR-34a (tRNA/mir-34a). Multi-milligrams of chimeric RNAs (e.g. OnRS/miR-124, OnRS/GFP-siRNA, OnRS/Neg (scrambled RNA) and OnRS/MGA (malachite green aptamer)) were readily obtained from 1 l bacterial culture. Deep sequencing analyses revealed that mature miR-124 and target GFP-siRNA were selectively released from chimeric RNAs in human cells. Consequently, OnRS/miR-124 was active in suppressing miR-124 target gene expression and controlling cellular processes, and OnRS/GFP-siRNA was effective in knocking down GFP mRNA levels and fluorescent intensity in ES-2/GFP cells and GFP-transgenic mice. Furthermore, the OnRS/MGA sensor offered a specific strong fluorescence upon binding MG, which was utilized as label-free substrate to accurately determine serum RNase activities in pancreatic cancer patients. These results demonstrate that OnRS-based bioengineering is a common, robust and versatile strategy to assemble various types of small RNAs for broad applications.
Bibliographic Details
http://www.scopus.com/inward/record.url?partnerID=HzOxMe3b&scp=84930505521&origin=inward; http://dx.doi.org/10.1093/nar/gkv228; http://www.ncbi.nlm.nih.gov/pubmed/25800741; http://academic.oup.com/nar/article/43/7/3857/2414681/A-general-approach-to-highyield-biosynthesis-of; https://dx.doi.org/10.1093/nar/gkv228; https://academic.oup.com/nar/article/43/7/3857/2414681
Oxford University Press (OUP)
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