Antibodies to repeat-containing antigens in Plasmodium falciparum are exposure-dependent and short-lived in children in natural malaria infections

Author:

Raghavan Madhura1ORCID,Kalantar Katrina L2,Duarte Elias3ORCID,Teyssier Noam1,Takahashi Saki1,Kung Andrew F1,Rajan Jayant V1,Rek John4,Tetteh Kevin KA5,Drakeley Chris5ORCID,Ssewanyana Isaac45,Rodriguez-Barraquer Isabel16ORCID,Greenhouse Bryan16ORCID,DeRisi Joseph L16ORCID

Affiliation:

1. University of California, San Francisco

2. Chan Zuckerberg Initiative

3. University of California, Berkeley

4. Infectious Diseases Research Collaboration

5. London School of Hygiene and Tropical Medicine

6. Chan Zuckerberg Biohub

Abstract

Protection against Plasmodium falciparum, which is primarily antibody-mediated, requires recurrent exposure to develop. The study of both naturally acquired limited immunity and vaccine induced protection against malaria remains critical for ongoing eradication efforts. Towards this goal, we deployed a customized P. falciparum PhIP-seq T7 phage display library containing 238,068 tiled 62-amino acid peptides, covering all known coding regions, including antigenic variants, to systematically profile antibody targets in 198 Ugandan children and adults from high and moderate transmission settings. Repeat elements – short amino acid sequences repeated within a protein – were significantly enriched in antibody targets. While breadth of responses to repeat-containing peptides was twofold higher in children living in the high versus moderate exposure setting, no such differences were observed for peptides without repeats, suggesting that antibody responses to repeat-containing regions may be more exposure dependent and/or less durable in children than responses to regions without repeats. Additionally, short motifs associated with seroreactivity were extensively shared among hundreds of antigens, potentially representing cross-reactive epitopes. PfEMP1 shared motifs with the greatest number of other antigens, partly driven by the diversity of PfEMP1 sequences. These data suggest that the large number of repeat elements and potential cross-reactive epitopes found within antigenic regions of P. falciparum could contribute to the inefficient nature of malaria immunity.

Funder

Chan Zuckerberg Biohub

National Institutes of Health

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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