Global Health Infectious Disease Research Program, University of South Florida, Tampa, Florida, USA.
Infect Immun. 2010 Mar;78(3):1089-95. doi: 10.1128/IAI.01036-09. Epub 2009 Dec 14.
Plasmodium vivax Duffy binding protein (DBP) is a merozoite microneme ligand vital for blood-stage infection, which makes it an important candidate vaccine for antibody-mediated immunity against vivax malaria. A differential screen with a linear peptide array compared the reactivities of noninhibitory and inhibitory high-titer human immune sera to identify target epitopes associated with protective immunity. Naturally acquired anti-DBP-specific serologic responses observed in the residents of a region of Papua New Guinea where P. vivax is highly endemic exhibited significant changes in DBP-specific titers over time. The anti-DBP functional inhibition for each serum ranged from complete inhibition to no inhibition even for high-titer responders to the DBP, indicating that epitope specificity is important. Inhibitory immune human antibodies identified specific B-cell linear epitopes on the DBP (SalI) ligand domain that showed significant correlations with inhibitory responses. Affinity-purified naturally acquired antibodies on these epitopes inhibited the DBP erythrocyte binding function greatly, confirming the protective value of specific epitopes. These results represent an important advance in our understanding of part of blood-stage immunity to P. vivax and some of the specific targets for vaccine-elicited antibody protection.
疟原虫 vivax Duffy 结合蛋白 (DBP) 是一种裂殖子微线体配体,对血期感染至关重要,使其成为针对 vivax 疟疾的抗体介导免疫的重要候选疫苗。与非抑制性和抑制性高滴度人免疫血清的差异筛选比较,以鉴定与保护性免疫相关的靶表位。在巴布亚新几内亚一个疟原虫 vivax 高度流行的地区,居民中观察到的自然获得的抗 DBP 特异性血清学反应,其 DBP 特异性滴度随时间发生了显著变化。每个血清的抗 DBP 功能抑制作用从完全抑制到不抑制,即使是对 DBP 的高滴度应答者也是如此,表明表位特异性很重要。鉴定出 DBP(SalI)配体结构域上的抗 DBP 特异性 B 细胞线性表位,这些表位与抑制性反应有显著相关性。这些表位上的亲和纯化的自然获得抗体可显著抑制 DBP 对红细胞的结合功能,证实了特定表位的保护价值。这些结果代表了我们对疟原虫 vivax 部分血期免疫和疫苗诱导的抗体保护的一些特定靶位的理解的重要进展。