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Circular mitochondrial-encoded mRNAs are a distinct subpopulation of mitochondrial mRNA in Trypanosoma brucei
Clara M Smoniewski1, Poorya Mirzavand Borujeni2, Austin Petersen3
1Department of Biomedical Sciences, University of Minnesota Medical School Duluth Campus, Duluth, MN, USA.
Abstract:
Since the first identification of circular RNA (circRNA) in viral-like systems, reports of circRNAs and their functions in various organisms, cell types, and organelles have greatly expanded. Here, we report the first evidence of circular mRNA in the mitochondrion of the eukaryotic parasite, Trypanosoma brucei . While using a circular RT-PCR technique developed to sequence mRNA tails of mitochondrial transcripts, we found that some mRNAs are circularized without an in vitro circularization step normally required to produce PCR products. Starting from total in vitro circularized RNA and in vivo circRNA, we high-throughput sequenced three transcripts from the 3' end of the coding region, through the 3' tail, to the 5' start of the coding region. We found that fewer reads in the circRNA libraries contained tails than in the total RNA libraries. When tails were present on circRNAs, they were shorter and less adenine-rich than the total population of RNA tails of the same transcript. Additionally, using hidden Markov modelling we determined that enzymatic activity during tail addition is different for circRNAs than for total RNA. Lastly, circRNA UTRs tended to be shorter and more variable than those of the same transcript sequenced from total RNA. We propose a revised model of Trypanosome mitochondrial tail addition, in which a fraction of mRNAs is circularized prior to the addition of adenine-rich tails and may act as a new regulatory molecule or in a degradation pathway.
Insights
Researchers discovered circular messenger RNA (mRNA) in the mitochondria of the parasite Trypanosoma brucei. This finding suggests a new regulatory role for these circular RNAs in parasite biology.
Area of Science:
- Mitochondrial biology
- Parasitology
- RNA biology
Background:
- Circular RNAs (circRNAs) have been identified across various organisms and organelles, but their presence in the mitochondria of eukaryotic parasites remained unexplored.
- The parasite Trypanosoma brucei possesses a unique mitochondrion with distinct RNA processing mechanisms.
Approach:
- Developed and utilized a circular RT-PCR technique to sequence mitochondrial transcripts.
- Performed high-throughput sequencing of both *in vitro* circularized RNA and *in vivo* circRNA from Trypanosoma brucei mitochondria.
- Employed hidden Markov modeling to analyze RNA tail characteristics and enzymatic activity.
Key Points:
- Identified the first evidence of circular mRNA within the mitochondrion of Trypanosoma brucei.
- Observed that mitochondrial circRNAs exhibit shorter and less adenine-rich 3' tails compared to linear counterparts.
- Found distinct enzymatic activity patterns in tail addition for circRNAs versus total RNA.
- Noted that circRNA untranslated regions (UTRs) are generally shorter and more variable.
Conclusions:
- Proposed a revised model for tail addition in Trypanosome mitochondria, suggesting circRNA formation precedes tailing.
- Hypothesized that mitochondrial circRNAs may function as novel regulatory molecules or participate in RNA degradation pathways.
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