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The origin of exosomal miR-1246 in human cancer cells
Yi-Fan Xu1, Bethany N Hannafon1, Ujjwol Khatri1
1a Department of Pathology , University of Oklahoma Health Sciences Center , Oklahoma City , OK , USA.
Abstract:
miR-1246 is considered an oncomiR in various cancer types. However, the origin and biogenesis of miR-1246 remain controversial which often leads to misinterpretation of its detection and biological function, and inevitably masking its mechanisms of action. Using next generation small RNA sequencing, CRISPR-Cas9 knockout, siRNA knockdown and the poly-A tailing SYBR qRT-PCR, we examined the biogenesis of exosomal miR-1246 in human cancer cell model systems. We found that miR-1246 is highly enriched in exosomes derived from human cancer cells and that it originates from RNU2-1, a small nuclear RNA and essential component of the U2 complex of the spliceosome. Knockdown of Drosha and Dicer did not reduce exosomal miR-1246 levels, indicating that exosomal miR-1246 is generated in a Drosha- and Dicer-independent manner. Direct digestion of cellular lysate by RNase A and knockdown of the RNU2-1 binding protein SmB/B' demonstrated that exosomal miR-1246 is a RNU2-1 degradation product. Furthermore, the GCAG motif present in the RUN2-1 transcript was shown to mediate miR-1246 enrichment in cancer exosomes. We conclude that exosome miR-1246 is derived from RNU2-1 degradation through a non-canonical microRNA biogenesis process. These findings reveal the origin of an oncomiR in human cancer cells, providing guidance in understanding miR-1246 detection and biological function. Abbreviations: CRISPR, Clustered Regularly Interspaced Short Palindromic Repeats; miRNA, microRNA; PDAC, pancreatic ductal adenocarcinoma; RNU2-1, U2 small nuclear RNA; RT-PCR, Reverse transcription polymerase chain reaction; sgRNA, single-guide RNA.
Insights
Exosomal microRNA-1246 (miR-1246), an oncomiR, originates from RNU2-1 degradation via a non-canonical pathway, independent of Drosha and Dicer. This discovery clarifies miR-1246 biogenesis in cancer cells.
Area of Science:
- Molecular Biology
- Cancer Biology
- RNA Biology
Background:
- MicroRNA-1246 (miR-1246) is implicated as an oncomiR in various cancers.
- Its precise origin and biogenesis pathway remain unclear, hindering understanding of its function and detection.
Purpose of the Study:
- To elucidate the biogenesis and origin of exosomal miR-1246 in human cancer cells.
- To investigate the non-canonical mechanisms underlying miR-1246 production.
Main Methods:
- Small RNA sequencing
- CRISPR-Cas9 gene editing
- siRNA knockdown
- Quantitative Reverse Transcription Polymerase Chain Reaction (qRT-PCR)
Main Results:
- Exosomal miR-1246 is highly enriched in cancer cells and originates from U2 small nuclear RNA (RNU2-1).
- miR-1246 biogenesis is independent of Drosha and Dicer, indicating a non-canonical pathway.
- RNU2-1 degradation products form exosomal miR-1246, with a GCAG motif mediating enrichment.
Conclusions:
- Exosomal miR-1246 is a degradation product of RNU2-1, generated through a non-canonical microRNA biogenesis process.
- These findings clarify the origin of an oncomiR and provide insights into miR-1246 detection and biological roles in cancer.
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