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Expression and Purification of Virus-like Particles for Vaccination
Published on: June 2, 2016
First Data on Ornithodoros moubata Aquaporins: Structural, Phylogenetic and Immunogenic Characterisation as Vaccine
Ricardo Pérez-Sánchez1, Ana Laura Cano-Argüelles1, María González-Sánchez1
1Parasitology Laboratory, Institute of Natural Resources and Agrobiology (IRNASA, CSIC), Cordel de Merinas, 40-52, 37008 Salamanca, Spain.
Abstract:
Ornithodoros moubata transmits African swine fever and human relapsing fever in Africa. The elimination of O. moubata populations from anthropic environments is expected to improve the prevention and control of these diseases. Tick vaccines have emerged as a sustainable method for tick control, and tick aquaporins (AQPs) are promising targets for tick vaccines due to their vital functions, immunogenicity and ease of access by neutralising host antibodies. This study aimed at the systematic identification of the AQPs expressed by O. moubata (OmAQPs) and their characterisation as vaccine targets. Therefore, AQP coding sequences were recovered from available transcriptomic datasets, followed by PCR amplification, cloning, sequence verification and the analysis of the AQP protein structure and epitope exposure. Seven OmAQPs were identified and characterised: six were aquaglyceroporins, and one was a water-specific aquaporin. All of these were expressed in the salivary glands and midgut and only three in the coxal glands. Epitope exposure analysis identified three extracellular domains in each AQP, which concentrate overlapping B and T cell epitopes, making them interesting vaccine targets. Based on these domain sequences, a set of ten antigenic peptides was designed, which showed adequate properties to be produced and tested in pilot vaccine trials.
Insights
This study identified seven Ornithodoros moubata aquaporins (OmAQPs) as potential vaccine targets. These OmAQPs, particularly their exposed epitopes, offer a promising strategy for controlling tick populations and preventing disease transmission.
Area of Science:
- Zoology
- Parasitology
- Molecular Biology
Background:
- Ornithodoros moubata ticks transmit critical diseases like African swine fever and human relapsing fever.
- Controlling O. moubata is vital for disease prevention in endemic regions.
- Tick vaccines targeting aquaporins (AQPs) present a sustainable control method.
Purpose of the Study:
- To systematically identify and characterize Ornithodoros moubata aquaporins (OmAQPs).
- To evaluate OmAQPs as potential targets for novel tick vaccines.
- To analyze AQP structure and epitope exposure for vaccine design.
Main Methods:
- Bioinformatic analysis of transcriptomic data to identify AQP sequences.
- PCR amplification, cloning, and sequence verification of OmAQPs.
- Analysis of AQP protein structure, expression patterns, and extracellular epitope exposure.
Main Results:
- Seven OmAQPs were identified: six aquaglyceroporins and one water-specific aquaporin.
- OmAQPs were expressed in salivary glands and midgut, with some in coxal glands.
- Extracellular domains with overlapping B and T cell epitopes were identified, suitable for vaccine development.
Conclusions:
- OmAQPs are viable targets for developing effective tick vaccines.
- The identified antigenic peptides derived from OmAQP epitopes show promise for pilot vaccine trials.
- Targeting OmAQPs could lead to novel strategies for controlling O. moubata and associated diseases.
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