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.

Parasites & Vectors
|January 28, 2015
PubMed
Abstract

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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