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Genetic diversity in two Plasmodium vivax protein ligands for reticulocyte invasion

机译:两个间质疟原虫间质蛋白配体的遗传多样性。

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摘要

The interaction between Plasmodium vivax Duffy binding protein (PvDBP) and Duffy antigen receptor for chemokines (DARC) has been described as critical for the invasion of human reticulocytes, although increasing reports of P. vivax infections in Duffy-negative individuals questions its unique role. To investigate the genetic diversity of the two main protein ligands for reticulocyte invasion, PvDBP and P. vivax Erythrocyte Binding Protein (PvEBP), we analyzed 458 isolates collected in Cambodia and Madagascar from individuals genotyped as Duffy-positive. First, we observed a high proportion of isolates with multiple copies PvEBP from Madagascar (56%) where Duffy negative and positive individuals coexist compared to Cambodia (19%) where Duffy-negative population is virtually absent. Whether the gene amplification observed is responsible for alternate invasion pathways remains to be tested. Second, we found that the PvEBP gene was less diverse than PvDBP gene (12 vs. 33 alleles) but provided evidence for an excess of nonsynonymous mutations with the complete absence of synonymous mutations. This finding reveals that PvEBP is under strong diversifying selection, and confirms the importance of this protein ligand in the invasion process of the human reticulocytes and as a target of acquired immunity. These observations highlight how genomic changes in parasite ligands improve the fitness of P. vivax isolates in the face of immune pressure and receptor polymorphisms.
机译:间日疟原虫达菲结合蛋白(PvDBP)和达菲趋化因子抗原受体(DARC)之间的相互作用已被描述对人类网织红细胞的入侵至关重要,尽管越来越多的达菲阴性个体感染间日疟原虫感染的报道质疑其独特作用。为了调查网织细胞入侵的两个主要蛋白质配体PvDBP和间日疟原虫红细胞结合蛋白(PvEBP)的遗传多样性,我们分析了从柬埔寨和马达加斯加收集的458个分离物,这些分离物的基因型均为达菲阳性。首先,我们观察到来自马达加斯加的多份带有多拷贝PvEBP的分离株(56%),其中达菲阴性和阳性个体共存,而柬埔寨(19%)则几乎没有达菲阴性人群。观察到的基因扩增是否负责替代入侵途径仍有待测试。其次,我们发现PvEBP基因的变异性不及PvDBP基因(12对33个等位基因),但为非同义突变过多而完全没有同义突变提供了证据。该发现表明PvEBP处于强大的多样化选择之下,并证实了该蛋白配体在人类网状细胞的侵袭过程中以及作为获得性免疫的靶标中的重要性。这些观察结果突显了面对免疫压力和受体多态性的寄生虫配体的基因组变化如何提高间日疟原虫分离株的适应性。

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