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坦桑尼亚儿童对恶性疟原虫红细胞膜蛋白 1 进行层次化、基于结构域的特异性抗体获得。

Hierarchical, domain type-specific acquisition of antibodies to Plasmodium falciparum erythrocyte membrane protein 1 in Tanzanian children.

机构信息

Centre for Medical Parasitology, University of Copenhagen, Copenhagen K, Denmark.

出版信息

Infect Immun. 2010 Nov;78(11):4653-9. doi: 10.1128/IAI.00593-10. Epub 2010 Sep 7.

Abstract

Plasmodium falciparum erythrocyte membrane protein 1 (PfEMP1) is a variant antigen expressed on the surface of malaria-infected erythrocytes. PfEMP1 attaches to the vascular lining and allows infected erythrocytes to avoid filtration through the spleen. Each parasite genome encodes about 60 different PfEMP1 variants, each PfEMP1 comprises several domains in its extracellular region, and the PfEMP1 repertoire in different parasites contains domain types that are serologically cross-reactive. In this longitudinal study, we followed 672 children living in an area of high malaria transmission during the first years of life and compared the acquisitions of antibodies to 32 Duffy-binding ligand-like (DBL) domains representing different types. For each child, we determined whether an antibody response to each domain was acquired before, after, or at the same time as responses to each of the other domains. We next used this information to calculate population-level odds ratios to measure the odds that antibodies to a given domain were acquired before antibodies to other domains. Odds ratios for 269 of the 496 possible domain combinations were statistically significant. Thus, the sequence in which individuals acquire antibodies to different PfEMP1 domains is ordered, and children in areas of endemicity first acquire antibodies to particular PfEMP1 domains encoded by the so-called group A and B/A var genes. The results imply that anti-PfEMP1 antibodies effectively structure PfEMP1 expression and play a major role in limiting parasite multiplication in the blood.

摘要

恶性疟原虫红细胞膜蛋白 1(PfEMP1)是一种变异抗原,表达在疟原虫感染的红细胞表面。PfEMP1 附着在血管内皮上,使感染的红细胞能够避免脾脏过滤。每个疟原虫基因组编码约 60 种不同的 PfEMP1 变体,每个 PfEMP1 在其细胞外区域包含几个结构域,不同寄生虫中的 PfEMP1 组合包含具有血清学交叉反应性的结构域类型。在这项纵向研究中,我们对生活在高疟疾传播地区的 672 名儿童进行了随访,并比较了对 32 种不同类型的 Duffy 结合配体样(DBL)结构域的抗体获得情况。对于每个儿童,我们确定对每个结构域的抗体反应是在对其他每个结构域的反应之前、之后还是同时获得的。接下来,我们使用此信息计算人群水平的优势比,以衡量针对特定结构域的抗体获得的可能性是否高于针对其他结构域的抗体获得的可能性。在 496 种可能的结构域组合中的 269 种组合中,优势比具有统计学意义。因此,个体获得不同 PfEMP1 结构域抗体的顺序是有序的,在流行地区的儿童首先获得所谓的 A 组和 B/A 组 var 基因编码的特定 PfEMP1 结构域的抗体。结果表明,抗 PfEMP1 抗体有效地构建了 PfEMP1 的表达,并在限制血液中寄生虫增殖方面发挥了重要作用。

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