Proteome-wide characterization of Plasmodium vivax antigens using a high-density peptide array

Plasmodium vivax is the second most prevalent Plasmodium species, with 2.5 billion people at risk of infection worldwide and around 10 million cases of clinical vivax malaria every year. Despite the clinical importance of this pathogen, little is known about the P. vivax proteins recognized by the host immune system, which hinders our ability to select vaccine candidates or to develop efficient serological markers. To characterize immunogenic P. vivax proteins, we designed a high-density peptide array containing 4.2 million peptides covering the entire protein sequences of all P. vivax genes and analyzed antibody responses of infected and malaria-naïve individuals. We identified a total of 283 proteins that are commonly immunogenic in symptomatic individuals. These proteins included many proteins known to be involved in erythrocyte invasion, several nucleoporins, and many uncharacterized proteins that should be further investigated for their roles during blood-stage infections. These analyses also revealed a unique pattern of antibody response against PIR proteins in asymptomatic individuals that could be associated with protection against clinical vivax malaria. Overall, these data provide an agnostic and proteome-wide perspective on immunogenic P. vivax proteins and constitute an important resource for the malaria community to develop new tools for better detecting and eliminating this important human pathogen.

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Publication Details

Journal
PLoS Pathogens
Published
2026-09-28
DOI
https://doi.org/10.1371/journal.ppat.1014621
Primary Topic
Malaria Research and Control
Type
article
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article

Proteome-wide characterization of Plasmodium vivax antigens using a high-density peptide array

Katie Ko, David Serre, Tineke Cantaert, Jean Popovici et al.
PLoS Pathogens
Malaria Research and Control
article

Proteome-wide characterization of Plasmodium vivax antigens using a high-density peptide array

Katie Ko, David Serre, Tineke Cantaert, Jean Popovici, Kieran Tebben, Rosita R. Asawa, John Tan, Niraj Tolia, Andrea Berry, Brittany Hazzard
article en

Abstract

Plasmodium vivax is the second most prevalent Plasmodium species, with 2.5 billion people at risk of infection worldwide and around 10 million cases of clinical vivax malaria every year. Despite the clinical importance of this pathogen, little is known about the P. vivax proteins recognized by the host immune system, which hinders our ability to select vaccine candidates or to develop efficient serological markers. To characterize immunogenic P. vivax proteins, we designed a high-density peptide array containing 4.2 million peptides covering the entire protein sequences of all P. vivax genes and analyzed antibody responses of infected and malaria-naïve individuals. We identified a total of 283 proteins that are commonly immunogenic in symptomatic individuals. These proteins included many proteins known to be involved in erythrocyte invasion, several nucleoporins, and many uncharacterized proteins that should be further investigated for their roles during blood-stage infections. These analyses also revealed a unique pattern of antibody response against PIR proteins in asymptomatic individuals that could be associated with protection against clinical vivax malaria. Overall, these data provide an agnostic and proteome-wide perspective on immunogenic P. vivax proteins and constitute an important resource for the malaria community to develop new tools for better detecting and eliminating this important human pathogen.

PLoS PathogensVol. 22(9)
University of Maryland, Baltimore (US), Institut Pasteur (FR), National Institute of Allergy and Infectious Diseases (US), Institut Pasteur du Cambodge (KH), Ensemble Therapeutics (United States) (US), University of Maryland School of Medicine (US)
Good health and well-being
Openalex Percentile: Top 9%
Malaria Research and Control
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