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March 19, 2026Scientific Reports0 citationsOpen Access

The MIME-seq technique allows to monitor the interaction of small non-coding RNAs with Argonaute proteins and their transfer to other cells

JPJérôme PerrardCGClaudiane GuayNZNadège Zanou

Key Points

  • To evaluate the MIME-seq2.0 technique's ability to monitor interactions between small non-coding RNAs and Argonaute proteins.
  • Utilized chimeric methyltransferase to protect sncRNAs from oxidation.
  • Compared sncRNA profiles between wild type and MIME-expressing cells.
  • Conducted immunoprecipitation using Ago2 antibodies to confirm protein interactions.
  • Tracked miRNA transfer using extracellular vesicles from Jurkat T cells and C2C12 myotubes to MIN6B1 cells.
  • MIME-seq2.0 distinguished oxidized and non-oxidized sncRNAs effectively.
  • MIME-expressing cells showed protection of various RNA types, including miRNAs and tRNA-derived fragments.
  • MiRNAs transferred via extracellular vesicles were protected from oxidation, allowing for sensitive detection in recipient cells.

Abstract

The MIME-seq2.0 technique utilizes a chimeric methyltransferase engineered to bind Argonaute proteins (hereafter referred to MIME enzyme) to protect the terminal sugar of small non-coding RNAs (sncRNAs) from oxidation, a reaction that inhibits unmodified RNA ligation, polyadenylation and cloning. In this study, we confirm that the MIME-seq2.0 technique efficiently distinguishes oxidized and non-oxidized sncRNAs. Expression of the MIME enzyme in the insulin-secreting cell line MIN6B1 protected miRNAs from oxidation and permitted their detection by RNA sequencing and quantitative PCR. Comparison of the sncRNA profile between wild type and MIME-expressing cells demonstrated protection from oxidation not only of miRNAs, but also of some Y-RNA and tRNA-derived fragments. Immunoprecipitation with Ago2 antibodies confirmed that the protected Y-RNA and tRNA fragments bind to Argonaute proteins. We also used this system to track miRNA transfer between cells via extracellular vesicles (EVs). miRNAs released inside EVs of MIME-expressing Jurkat T cells or C2C12 myotubes and delivered to MIN6B1 cells were protected from oxidation, enabling sensitive detection of the transferred miRNAs in the receiving cells. Overall, the MIME-seq2.0 technique provides a powerful tool for analyzing small RNA binding to Argonaute proteins in living cells and offers new possibilities for tracking RNA transfer across different cells.

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Cite This Study

Perrard et al. (2026) studied this question.

synapsesocial.com/papers/69bb928c496e729e6297ff7dhttps://doi.org/10.1038/s41598-026-44270-5
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