Transcriptome profiling of Plasmodium vivax in Saimiri monkeys identifies potential ligands for invasion

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Abstract

Unlike the case in Asia and Latin America, Plasmodium vivax infections are rare in sub-Saharan Africa due to the absence of the Duffy blood group antigen (Duffy antigen), the only known erythrocyte receptor for the P. vivax merozoite invasion ligand, Duffy binding protein 1 (DBP1). However, P. vivax infections have been documented in Duffy-negative individuals throughout Africa, suggesting that P. vivax may use ligands other than DBP1 to invade Duffy-negative erythrocytes through other receptors. To identify potential P. vivax ligands, we compared parasite gene expression in Saimiri and Aotus monkey erythrocytes infected with P. vivax Salvador I (Sal I). DBP1 binds Aotus but does not bind to Saimiri erythrocytes; thus, P. vivax Sal I must invade Saimiri erythrocytes independent of DBP1. Comparing RNA sequencing (RNAseq) data for late-stage infections in Saimiri and Aotus erythrocytes when invasion ligands are expressed, we identified genes that belong to tryptophan-rich antigen and merozoite surface protein 3 (MSP3) families that were more abundantly expressed in Saimiri infections compared with Aotus infections. These genes may encode potential ligands responsible for P. vivax infections of Duffy-negative Africans.

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Gunalan, K., Sá, J. M., Moraes Barros, R. R., Anzick, S. L., Caleon, R. L., Patrick Mershon, J., … Miller, L. H. (2019). Transcriptome profiling of Plasmodium vivax in Saimiri monkeys identifies potential ligands for invasion. Proceedings of the National Academy of Sciences of the United States of America, 116(14), 7053–7061. https://doi.org/10.1073/pnas.1818485116

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