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Insight into Antigenic Diversity of VAR2CSA-DBL5 epsilon Domain from Multiple Plasmodium falciparum Placental Isolates

机译:从多种恶性疟原虫胎盘分离物中观察VaR2Csa-DBL5ε域的抗原多样性

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摘要

Background: Protection against pregnancy associated malaria (PAM) is associated with high levels of anti-VAR2CSA antibodies. This protection is obtained by the parity dependent acquisition of anti-VAR2CSA antibodies. Distinct parity-associated molecular signatures have been identified in VAR2CSA domains. These two observations combined point to the importance of identifying VAR2CSA sequence variation, which facilitate parasitic evasion or subversion of host immune response. Highly conserved domains of VAR2CSA such as DBL5e are likely to contain conserved epitopes, and therefore do constitute attractive targets for vaccine development. Methodology/Principal Findings: VAR2CSA DBL5e-domain sequences obtained from cDNA of 40 placental isolates were analysed by a combination of experimental and in silico methods. Competition ELISA assays on two DBL5e variants, using plasma samples from women from two different areas and specific mice hyperimmune plasma, indicated that DBL5e possess conserved and cross-reactive B cell epitopes. Peptide ELISA identified conserved areas that are recognised by naturally acquired antibodies. Specific antibodies against these peptides labelled the native proteins on the surface of placental parasites. Despite high DBL5e sequence homology among parasite isolates, sequence analyses identified motifs in DBL5e that discriminate parasites according to donor's parity. Moreover, recombinant proteins of two VAR2CSA DBL5e variants displayed diverse recognition patterns by plasma from malaria-exposed women, and diverse proteoglycan binding abilities. Conclusions/Significance: This study provides insights into conserved and exposed B cell epitopes in DBL5e that might be a focus for cross reactivity. The importance of sequence variation in VAR2CSA as a critical challenge for vaccine development is highlighted. VAR2CSA conformation seems to be essential to its functionality. Therefore, identification of sequence variation sites in distinct locations within VAR2CSA, affecting antigenicity and/or binding properties, is critical to the effort of developing an efficient VAR2CSA-based vaccine. Motifs associated with parasite segregation according to parity constitute one such site.
机译:背景:预防妊娠相关的疟疾(PAM)与高水平的抗VAR2CSA抗体相关。这种保护是通过抗VAR2CSA抗体的奇偶校验获得的。在VAR2CSA域中已鉴定出与奇偶校验相关的独特分子标记。这两个观察结果相结合,指出了鉴定VAR2CSA序列变异的重要性,这有助于寄生虫逃避或破坏宿主免疫反应。高度保守的VAR2CSA域(例如DBL5e)可能包含保守的表位,因此确实构成了疫苗开发的诱人靶标。方法/主要发现:通过实验和计算机方法相结合,分析了从40个胎盘分离株的cDNA中获得的VAR2CSA DBL5e结构域序列。使用来自两个不同地区的妇女的血浆样品和特异小鼠超免疫血浆对两种DBL5e变体进行竞争ELISA分析,表明DBL5e具有保守的和交叉反应的B细胞表位。肽ELISA鉴定了天然获得的抗体可识别的保守区。针对这些肽的特异性抗体标记了胎盘寄生虫表面的天然蛋白质。尽管寄生虫分离物之间具有很高的DBL5e序列同源性,但序列分析仍能鉴定出DBL5e中根据供体的同等性来区分寄生虫的基序。此外,两个VAR2CSA DBL5e变体的重组蛋白通过暴露于疟疾的妇女的血浆显示出多种识别模式,以及多种蛋白聚糖结合能力。结论/意义:这项研究提供了对DBL5e中保守和暴露的B细胞表位的见解,这些表位可能是交叉反应的重点。突出了VAR2CSA中序列变异作为疫苗开发的关键挑战的重要性。 VAR2CSA构象似乎对其功能至关重要。因此,鉴定影响抗原性和/或结合特性的VAR2CSA内不同位置的序列变异位点对于开发有效的基于VAR2CSA的疫苗的努力至关重要。与根据奇偶校验的寄生虫隔离相关的母题构成了一个这样的地点。

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