首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Binding of Plasmodium falciparum Merozoite Surface Proteins DBLMSP and DBLMSP2 to Human Immunoglobulin M Is Conserved among Broadly Diverged Sequence Variants
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Binding of Plasmodium falciparum Merozoite Surface Proteins DBLMSP and DBLMSP2 to Human Immunoglobulin M Is Conserved among Broadly Diverged Sequence Variants

机译:恶性疟原虫裂殖子表面蛋白DBLMSP和DBLMSP2与人免疫球蛋白M的结合是广泛分布的序列变体之间的保守。

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摘要

Diversity at pathogen genetic loci can be driven by host adaptive immune selection pressure and may reveal proteins important for parasite biology. Population-based genome sequencing of Plasmodium falciparum, the parasite responsible for the most severe form of malaria, has highlighted two related polymorphic genes called dblmsp and dblmsp2, which encode Duffy binding-like (DBL) domain-containing proteins located on the merozoite surface but whose function remains unknown. Using recombinant proteins and transgenic parasites, we show that DBLMSP and DBLMSP2 directly and avidly bind human IgM via their DBL domains. We used whole genome sequence data from over 400 African and Asian P. falciparum isolates to show that dblmsp and dblmsp2 exhibit extreme protein polymorphism in their DBL domain, with multiple variants of two major allelic classes present in every population tested. Despite this variability, the IgM binding function was retained across diverse sequence representatives. Although this interaction did not seem to have an effect on the ability of the parasite to invade red blood cells, binding of DBLMSP and DBLMSP2 to IgM inhibited the overall immunoreactivity of these proteins to IgG from patients who had been exposed to the parasite. This suggests that IgM binding might mask these proteins from the host humoral immune system.
机译:病原体基因位点的多样性可以由宿主适应性免疫选择压力驱动,并可能揭示对寄生虫生物学重要的蛋白质。恶性疟原虫(负责疟疾最严重形式的寄生虫)基于人群的基因组测序突出显示了两个相关的多态性基因,称为dblmsp和dblmsp2,它们编码位于裂殖子表面的含达菲结合样(DBL)域的蛋白质,但其功能仍然未知。使用重组蛋白和转基因寄生虫,我们显示出DBLMSP和DBLMSP2通过其DBL域直接和狂热地结合人IgM。我们使用了来自400多个非洲和亚洲恶性疟原虫分离株的全基因组序列数据,显示dblmsp和dblmsp2在其DBL域中表现出极端的蛋白质多态性,每个测试人群中都存在两种主要等位基因类别的多种变体。尽管存在这种可变性,但IgM结合功能在各种序列代表中均得以保留。尽管这种相互作用似乎对寄生虫侵袭红细胞的能力没有影响,但DBLMSP和DBLMSP2与IgM的结合抑制了这些蛋白质对已暴露于该寄生虫的患者的IgG的总体免疫反应性。这表明IgM结合可能掩盖了来自宿主体液免疫系统的这些蛋白质。

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