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Published on: June 15, 2018
Pre-microRNA and mature microRNA in human mitochondria
Eric Barrey1, Gaelle Saint-Auret, Blandine Bonnamy
1Unité de Biologie Intégrative des Adaptations à l'Exercice-INSERM U902, Genopole Evry, France. eric.barrey@inserm.fr
Background:
Because of the central functions of the mitochondria in providing metabolic energy and initiating apoptosis on one hand and the role that microRNA (miRNA) play in gene expression, we hypothesized that some miRNA could be present in the mitochondria for post-transcriptomic regulation by RNA interference. We intend to identify miRNA localized in the mitochondria isolated from human skeletal primary muscular cells.
Methodology/Principal Findings:
To investigate the potential origin of mitochondrial miRNA, we in-silico searched for microRNA candidates in the mtDNA. Twenty five human pre-miRNA and 33 miRNA aligments (E-value<0.1) were found in the reference mitochondrial sequence and some of the best candidates were chosen for a co-localization test. In situ hybridization of pre-mir-302a, pre-let-7b and mir-365, using specific labelled locked nucleic acids and confocal microscopy, demonstrated that these miRNA were localized in mitochondria of human myoblasts. Total RNA was extracted from enriched mitochondria isolated by an immunomagnetic method from a culture of human myotubes. The detection of 742 human miRNA (miRBase) were monitored by RT-qPCR at three increasing mtRNA inputs. Forty six miRNA were significantly expressed (2(nd) derivative method Cp>35) for the smallest RNA input concentration and 204 miRNA for the maximum RNA input concentration. In silico analysis predicted 80 putative miRNA target sites in the mitochondrial genome (E-value<0.05).
Conclusions/Significance:
The present study experimentally demonstrated for the first time the presence of pre-miRNA and miRNA in the human mitochondria isolated from skeletal muscular cells. A set of miRNA were significantly detected in mitochondria fraction. The origin of these pre-miRNA and miRNA should be further investigate to determine if they are imported from the cytosol and/or if they are partially processed in the mitochondria.
Insights
This study found microRNAs (miRNAs) within human skeletal muscle mitochondria, suggesting a role in gene regulation. Further research is needed to understand their origin and function in these organelles.
Area of Science:
- Mitochondrial biology
- Molecular genetics
- Cellular regulation
Background:
- Mitochondria are crucial for cellular energy and apoptosis.
- MicroRNAs (miRNAs) regulate gene expression post-transcriptionally.
- The presence and function of miRNAs within mitochondria are largely unexplored.
Purpose of the Study:
- To investigate the hypothesis that miRNAs are present in mitochondria for post-transcriptomic regulation.
- To identify miRNAs localized within human skeletal muscle mitochondria.
Main Methods:
- In silico analysis of mitochondrial DNA (mtDNA) for miRNA candidates.
- In situ hybridization and confocal microscopy to confirm miRNA localization in myoblasts.
- RNA extraction from immunomagnetically isolated mitochondria.
- RT-qPCR to detect and quantify miRNA expression in mitochondrial fractions.
- In silico prediction of miRNA target sites in the mitochondrial genome.
Main Results:
- In silico analysis identified potential pre-miRNA and miRNA alignments within human mtDNA.
- Specific pre-miRNAs (pre-mir-302a, pre-let-7b) and miRNA (mir-365) were localized to mitochondria in human myoblasts.
- A significant number of human miRNAs were detected in isolated mitochondrial RNA, with expression levels varying by input concentration.
- In silico analysis predicted numerous miRNA target sites within the mitochondrial genome.
Conclusions:
- This study provides the first experimental evidence for the presence of pre-miRNAs and miRNAs in human skeletal muscle mitochondria.
- A subset of miRNAs is demonstrably present and expressed within the mitochondrial fraction.
- The precise origin (cytosolic import vs. mitochondrial processing) of these mitochondrial miRNAs requires further investigation.
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