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Updated: Mar 28, 2026

Identification of Circular RNAs using RNA Sequencing
Published on: November 14, 2019
Circular RNA enrichment in platelets is a signature of transcriptome degradation
Abd A Alhasan1, Osagie G Izuogu1, Haya H Al-Balool2
1Institute of Genetic Medicine, Newcastle University, Newcastle upon Tyne, United Kingdom;
Abstract:
In platelets, splicing and translation occur in the absence of a nucleus. However, the integrity and stability of mRNAs derived from megakaryocyte progenitor cells remain poorly quantified on a transcriptome-wide level. As circular RNAs (circRNAs) are resistant to degradation by exonucleases, their abundance relative to linear RNAs can be used as a surrogate marker for mRNA stability in the absence of transcription. Here we show that circRNAs are enriched in human platelets 17- to 188-fold relative to nucleated tissues and 14- to 26-fold relative to samples digested with RNAse R to selectively remove linear RNA. We compare RNAseq read depths inside and outside circRNAs to provide in silico evidence of transcript circularity, show that exons within circRNAs are enriched on average 12.7 times in platelets relative to nucleated tissues and identify 3162 genes significantly enriched for circRNAs, including some where all RNAseq reads appear to be derived from circular molecules. We also confirm that this is a feature of other anucleate cells through transcriptome sequencing of mature erythrocytes, demonstrate that circRNAs are not enriched in cultured megakaryocytes, and demonstrate that linear RNAs decay more rapidly than circRNAs in platelet preparations. Collectively, these results suggest that circulating platelets have lost >90% of their progenitor mRNAs and that translation in platelets occurs against the backdrop of a highly degraded transcriptome. Finally, we find that transcripts previously classified as products of reverse transcriptase template switching are both enriched in platelets and resistant to decay, countering the recent suggestion that up to 50% of rearranged RNAs are artifacts.
Insights
Platelets contain highly stable circular RNAs (circRNAs) that serve as markers for degraded linear messenger RNAs (mRNAs). This indicates platelets possess a vastly diminished transcriptome from their progenitor cells.
Area of Science:
- Molecular Biology
- Hematology
- Genomics
Background:
- Platelets, anucleate cells, perform splicing and translation.
- mRNA integrity in platelets is poorly understood.
- Circular RNAs (circRNAs) are stable and can indicate mRNA decay.
Purpose of the Study:
- Quantify mRNA stability in anucleate platelets.
- Investigate the role of circRNAs in platelet transcriptomes.
- Assess the overall integrity of the platelet transcriptome.
Main Methods:
- RNA sequencing (RNAseq) of human platelets and erythrocytes.
- RNAse R digestion to remove linear RNA.
- In silico analysis of RNAseq read depths to confirm transcript circularity.
Main Results:
- circRNAs are highly enriched in human platelets (17-188 fold).
- Exons within circRNAs are 12.7 times more abundant in platelets.
- Platelets have lost >90% of progenitor mRNAs, indicating a degraded transcriptome.
- Transcripts from reverse transcriptase template switching are enriched and stable in platelets.
Conclusions:
- circRNAs serve as reliable markers for mRNA stability in anucleate cells.
- Platelets possess a highly degraded transcriptome, with translation occurring against this backdrop.
- Certain rearranged RNA transcripts are stable and not artifacts.
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