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Methods to Investigate the Regulatory Role of Small RNAs and Ribosomal Occupancy of Plasmodium falciparum
Published on: December 4, 2015
Extracellular Onchocerca-derived small RNAs in host nodules and blood
Juan F Quintana1, Benjamin L Makepeace2, Simon A Babayan3
1Centre for Immunity, Infection and Evolution, Ashworth Laboratories, University of Edinburgh, West Mains Road, Edinburgh, UK. jquintan@staffmail.ed.ac.uk.
Background:
microRNAs (miRNAs), a class of short, non-coding RNA can be found in a highly stable, cell-free form in mammalian body fluids. Specific miRNAs are secreted by parasitic nematodes in exosomes and have been detected in the serum of murine and dog hosts infected with the filarial nematodes Litomosoides sigmodontis and Dirofilaria immitis, respectively. Here we identify extracellular, parasite-derived small RNAs associated with Onchocerca species infecting cattle and humans.
Methods:
Small RNA libraries were prepared from total RNA extracted from the nodule fluid of cattle infected with Onchocerca ochengi as well as serum and plasma from humans infected with Onchocerca volvulus in Cameroon and Ghana. Parasite-derived miRNAs were identified based on the criteria that sequences unambiguously map to hairpin structures in Onchocerca genomes, do not align to the human genome and are not present in European control serum.
Results:
A total of 62 mature miRNAs from 52 distinct pre-miRNA candidates were identified in nodule fluid from cattle infected with O. ochengi of which 59 are identical in the genome of the human parasite O. volvulus. Six of the extracellular miRNAs were also identified in sequencing analyses of serum and plasma from humans infected with O. volvulus. Based on sequencing analysis the abundance levels of the parasite miRNAs in serum or plasma range from 5 to 127 reads/per million total host miRNA reads identified, comparable to our previous analyses of Schistosoma mansoni and L. sigmodontis miRNAs in serum. All six of the O. volvulus miRNAs identified have orthologs in other filarial nematodes and four were identified in the serum of mice infected with L. sigmodontis.
Conclusions:
We have identified parasite-derived miRNAs associated with onchocerciasis in cattle and humans. Our results confirm the conserved nature of RNA secretion by diverse nematodes. Additional species-specific small RNAs from O. volvulus may be present in serum based on the novel miRNA sequences identified in the nodule fluid. In our analyses comparison to European control serum illuminates the scope for false-positives, warranting caution in criteria that should be applied to identification of biomarkers of infection.
Insights
Parasitic nematodes secrete microRNAs (miRNAs) into host body fluids. This study identified parasite-derived miRNAs in cattle and human onchocerciasis, confirming conserved RNA secretion across nematode species.
Area of Science:
- Parasitology
- Molecular Biology
- Genomics
Background:
- MicroRNAs (miRNAs) are stable, cell-free molecules found in mammalian body fluids.
- Parasitic nematodes secrete miRNAs within exosomes, detectable in host serum.
- Extracellular parasite-derived small RNAs from Onchocerca species infecting cattle and humans were investigated.
Purpose of the Study:
- To identify and characterize extracellular, parasite-derived small RNAs associated with Onchocerca species.
- To investigate the presence of these small RNAs in both bovine and human hosts.
- To confirm the conserved nature of RNA secretion by nematodes.
Main Methods:
- Small RNA libraries were prepared from total RNA extracted from infected cattle nodule fluid and human serum/plasma.
- Parasite-derived miRNAs were identified by mapping sequences to Onchocerca genomes, excluding human genome alignment and European control serum.
- Sequencing analysis was used to determine the abundance of parasite miRNAs in host serum/plasma.
Main Results:
- 62 mature miRNAs from 52 pre-miRNA candidates were identified in cattle infected with O. ochengi, with 59 identical to O. volvulus.
- Six extracellular miRNAs were detected in serum/plasma of humans infected with O. volvulus.
- Abundance levels of parasite miRNAs in serum/plasma were comparable to previously studied parasitic miRNAs, and orthologs were found in other filarial nematodes.
Conclusions:
- Parasite-derived miRNAs associated with onchocerciasis in cattle and humans were identified.
- The findings confirm conserved RNA secretion mechanisms across diverse nematode species.
- Caution is advised regarding criteria for identifying infection biomarkers due to potential false-positives.
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