» Articles » PMID: 20962255

Evidence That the Erythrocyte Invasion Ligand PfRh2 is a Target of Protective Immunity Against Plasmodium Falciparum Malaria

Overview
Journal J Immunol
Date 2010 Oct 22
PMID 20962255
Citations 62
Authors
Affiliations
Soon will be listed here.
Abstract

Abs targeting blood-stage Ags of Plasmodium falciparum are important in acquired immunity to malaria, but major targets remain unclear. The P. falciparum reticulocyte-binding homologs (PfRh) are key ligands used by merozoites during invasion of erythrocytes. PfRh2a and PfRh2b are functionally important members of this family and may be targets of protective immunity, but their potential role in human immunity has not been examined. We expressed eight recombinant proteins covering the entire PfRh2 common region, as well as PfRh2a- and PfRh2b-specific regions. Abs were measured among a cohort of 206 Papua New Guinean children who were followed prospectively for 6 mo for reinfection and malaria. At baseline, Abs were associated with increasing age and active infection. High levels of IgG to all PfRh2 protein constructs were strongly associated with protection from symptomatic malaria and high-density parasitemia. The predominant IgG subclasses were IgG1 and IgG3, with little IgG2 and IgG4 detected. To further understand the significance of PfRh2 as an immune target, we analyzed PfRh2 sequences and found that polymorphisms are concentrated in an N-terminal region of the protein and seem to be under diversifying selection, suggesting immune pressure. Cluster analysis arranged the sequences into two main groups, suggesting that many of the haplotypes identified may be antigenically similar. These findings provide evidence suggesting that PfRh2 is an important target of protective immunity in humans and that Abs act by controlling blood-stage parasitemia and support its potential for vaccine development.

Citing Articles

Antibody correlates of risk of clinical malaria in an area of low and unstable malaria transmission in western Kenya.

Odhiambo E, Mellencamp K, Ondigo B, Hamre K, Beeson J, Opi D Malar J. 2025; 24(1):73.

PMID: 40033373 PMC: 11877692. DOI: 10.1186/s12936-025-05300-1.


Naturally Acquired Antibodies against : Friend or Foe?.

Tijani M, Lugaajju A, Persson K Pathogens. 2021; 10(7).

PMID: 34357982 PMC: 8308493. DOI: 10.3390/pathogens10070832.


Progress towards the development of a vaccine.

De S, Ntumngia F, Nicholas J, Adams J Expert Rev Vaccines. 2021; 20(2):97-112.

PMID: 33481638 PMC: 7994195. DOI: 10.1080/14760584.2021.1880898.


Population genetic and biophysical evidences reveal that purifying selection shapes the genetic landscape of Plasmodium falciparum RH ligands in Chhattisgarh and West Bengal, India.

Ghoshal S, Chowdhury P, Ray S, Mitra M, Datta Kanjilal S, Sen S Malar J. 2020; 19(1):367.

PMID: 33054833 PMC: 7557104. DOI: 10.1186/s12936-020-03433-z.


Selection of Antibody Responses Associated With Infections in the Context of Malaria Elimination.

van den Hoogen L, Stresman G, Presume J, Romilus I, Mondelus G, Elisme T Front Immunol. 2020; 11:928.

PMID: 32499783 PMC: 7243477. DOI: 10.3389/fimmu.2020.00928.