Identification of minimal human MHC-restricted CD8+ T-cell epitopes within the Plasmodium falciparum circumsporozoite protein (CSP)
Open Access
- 5 June 2013
- journal article
- research article
- Published by Springer Nature in Malaria Journal
- Vol. 12 (1) , 1-17
- https://doi.org/10.1186/1475-2875-12-185
Abstract
Plasmodium falciparum circumsporozoite protein (CSP) is a leading malaria vaccine candidate antigen, known to elicit protective antibody responses in humans (RTS,S vaccine). Recently, a DNA prime / adenovirus (Ad) vector boost vaccine encoding CSP and a second P. falciparum antigen, apical membrane antigen-1, also elicited sterile protection, but in this case associated with interferon gamma ELISpot and CD8+ T cell but not antibody responses. The finding that CSP delivered by an appropriate vaccine platform likely elicits protective cell-mediated immunity provided a rationale for identifying class I-restricted epitopes within this leading vaccine candidate antigen. Limited samples of peripheral blood mononuclear cells from clinical trials of the Ad vaccine were used to identify CD8+ T cell epitopes within pools of overlapping 15mer peptides spanning portions of CSP that stimulated recall responses. Computerized algorithms (NetMHC) predicted 17 minimal class I-restricted 9-10mer epitopes within fifteen 15mers positive in ELISpot assay using PBMC from 10 HLA-matched study subjects. Four additional epitopes were subsequently predicted using NetMHC, matched to other study subjects without initial 15mer ELISpot screening. Nine of the putative epitopes were synthesized and tested by ELISpot assay, and six of these nine were further tested for CD8+ T cell responses by ELISpot CD4+ and CD8+ T cell-depletion and flow cytometry assays for evidence of CD8+ T cell dependence. Each of the nine putative epitopes, all sequence-conserved, recalled responses from HLA-matched CSP-immunized research subjects. Four shorter sequences contained within these sequences were identified using NetMHC predictions and may have contributed to recall responses. Five (9-10mer) epitopes were confirmed to be targets of CD8+ T cell responses using ELISpot depletion and ICS assays. Two 9mers among these nine epitopes were each restricted by two HLA supertypes (A01/B07; A01A24/A24) and one 9mer was restricted by three HLA supertypes (A01A24/A24/B27) indicating that some CSP class I-restricted epitopes, like DR epitopes, may be HLA-promiscuous. This study identified nine and confirmed five novel class I epitopes restricted by six HLA supertypes, suggesting that an adenovirus-vectored CSP vaccine would be immunogenic and potentially protective in genetically diverse populations.Keywords
This publication has 64 references indexed in Scilit:
- Unexpected fold in the circumsporozoite protein target of malaria vaccinesProceedings of the National Academy of Sciences, 2012
- HLA class I allele promiscuity revisitedImmunogenetics, 2011
- The malaria circumsporozoite protein has two functional domains, each with distinct roles as sporozoites journey from mosquito to mammalian hostThe Journal of Experimental Medicine, 2011
- The Immune Epitope Database 2.0Nucleic Acids Research, 2009
- Structure of the Plasmodium falciparum Circumsporozoite Protein, a Leading Malaria Vaccine CandidateJournal of Biological Chemistry, 2009
- NetMHC-3.0: accurate web accessible predictions of human, mouse and monkey MHC class I affinities for peptides of length 8–11Nucleic Acids Research, 2008
- Extensive HLA class I allele promiscuity among viral CTL epitopesEuropean Journal of Immunology, 2007
- Reliable prediction of T‐cell epitopes using neural networks with novel sequence representationsProtein Science, 2003
- Common West African HLA antigens are associated with protection from severe malariaNature, 1991
- Universally immunogenic T cell epitopes: promiscuous binding to human MHC class II and promiscuous recognition by T cellsEuropean Journal of Immunology, 1989