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儿童疟疾性脑型疟中针对 PfEMP1 PF11_0521 结构域盒 DC13、DBLβ3_D4 结构域和这些结构域内肽的 IgG 获得。

IgG acquisition against PfEMP1 PF11_0521 domain cassette DC13, DBLβ3_D4 domain, and peptides located within these constructs in children with cerebral malaria.

机构信息

Institut de Recherche Biomédicale des Armées, National Reference Laboratory for Arboviruses, Marseille, France.

Charles E. Schmidt College of Medicine, Florida Atlantic University, Boca Raton, FL, 33428, USA.

出版信息

Sci Rep. 2021 Feb 11;11(1):3680. doi: 10.1038/s41598-021-82444-5.

Abstract

The Plasmodium falciparum erythrocyte-membrane-protein-1 (PF3D7_1150400/PF11_0521) contains both domain cassette DC13 and DBLβ3 domain binding to EPCR and ICAM-1 receptors, respectively. This type of PfEMP1 proteins with dual binding specificity mediate specific interactions with brain micro-vessels endothelium leading to the development of cerebral malaria (CM). Using plasma collected from children at time of hospital admission and after 30 days, we study an acquisition of IgG response to PF3D7_1150400/PF11_0521 DC13 and DBLβ3_D4 recombinant constructs, and five peptides located within these constructs, specifically in DBLα1.7_D2 and DBLβ3_D4 domains. We found significant IgG responses against the entire DC13, PF11_0521_DBLβ3_D4 domain, and peptides. The responses varied against different peptides and depended on the clinical status of children. The response was stronger at day 30, and mostly did not differ between CM and uncomplicated malaria (UM) groups. Specifically, the DBLβ3 B3-34 peptide that contains essential residues involved in the interaction between PF11_0521 DBLβ3_D4 domain and ICAM-1 receptor demonstrated significant increase in reactivity to IgG1 and IgG3 antibodies at convalescence. Further, IgG reactivity in CM group at time of admission against functionally active (ICAM-1-binding) PF11_0521 DBLβ3_D4 domain was associated with protection against severe anemia. These results support development of vaccine based on the PF3D7_1150400/PF11_0521 structures to prevent CM.

摘要

恶性疟原虫红细胞膜蛋白 1(PF3D7_1150400/PF11_0521)既包含结构域盒 DC13,也包含 DBLβ3 结构域,分别与 EPCR 和 ICAM-1 受体结合。这种具有双重结合特异性的 PfEMP1 蛋白介导与脑微血管内皮的特异性相互作用,导致脑型疟疾(CM)的发生。我们使用入院时和 30 天后采集的儿童血浆,研究了对 PF3D7_1150400/PF11_0521 DC13 和 DBLβ3_D4 重组构建体以及位于这些构建体中的五个肽的 IgG 反应的获得情况,这些肽位于 DBLα1.7_D2 和 DBLβ3_D4 结构域内。我们发现针对整个 DC13、PF11_0521_DBLβ3_D4 结构域和肽的 IgG 反应具有显著意义。针对不同的肽的反应各不相同,且取决于儿童的临床状况。30 天时的反应更强,且在 CM 和无并发症疟疾(UM)组之间的差异不大。具体而言,DBLβ3 B3-34 肽包含与 PF11_0521 DBLβ3_D4 结构域与 ICAM-1 受体相互作用相关的重要残基,在恢复期对 IgG1 和 IgG3 抗体的反应性显著增加。此外,CM 组在入院时针对具有功能活性(ICAM-1 结合)的 PF11_0521 DBLβ3_D4 结构域的 IgG 反应性与严重贫血的保护作用相关。这些结果支持开发基于 PF3D7_1150400/PF11_0521 结构的疫苗来预防 CM。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f2bc/7878510/441f154bf653/41598_2021_82444_Fig1_HTML.jpg

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