首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Erythrocyte-binding antigen 175 mediates invasion in Plasmodium falciparum utilizing sialic acid-dependent and -independent pathways.
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Erythrocyte-binding antigen 175 mediates invasion in Plasmodium falciparum utilizing sialic acid-dependent and -independent pathways.

机译:利用唾液酸依赖性和非依赖性途径,红细胞结合抗原175介导恶性疟原虫的侵袭。

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摘要

The Plasmodium falciparum erythrocyte-binding antigen 175 (EBA-175) is a ligand for merozoite invasion into human erythrocytes that binds to glycophorin A in a sialic acid-dependent manner. P. falciparum strain W2mef depends on sialic acid for invasion of erythrocytes, whereas 3D7 is sialic acid-independent. We generated parasites that lack expression or express truncated forms of EBA-175 in W2mef and 3D7. Lack of EBA-175 expression in W2mef parasites was associated with a switch to sialic acid-independent invasion. 3D7 parasites lacking expression of EBA-175 showed no alteration in their ability to utilize sialic acid-independent pathways. Strikingly, both W2mef and 3D7 parasites lacking EBA-175 expression invaded chymotrypsin-treated erythrocytes inefficiently compared with the parental lines. This loss of function suggests that the EBA-175/glycophorin A ligand-receptor interaction is the major chymotrypsin-resistant invasion pathway. Parasite lines with truncated EBA-175 had invasion phenotypes equivalent to parasites lacking expression of EBA-175. The EBA-175 ligand is functional in erythrocyte invasion by merozoites that utilize either sialic acid-dependent or -independent invasion pathways. This finding suggests a model where a minimal affinity supplied by multiple ligand-receptor interactions is required for successful invasion and has implications for EBA-175 as a malaria vaccine candidate.
机译:恶性疟原虫红细胞结合抗原175(EBA-175)是裂殖子入侵人红细胞的配体,它以唾液酸依赖性方式与糖蛋白A结合。恶性疟原虫菌株W2mef依赖于唾液酸侵袭红细胞,而3D7是不依赖唾液酸的。我们在W2mef和3D7中生成了缺乏表达或表达截短形式的EBA-175的寄生虫。 W2mef寄生虫中EBA-175表达的缺乏与向唾液酸非依赖性入侵的转换有关。缺乏EBA-175表达的3D7寄生虫利用唾液酸非依赖性途径的能力未见改变。令人惊讶的是,与亲本系相比,缺乏EBA-175表达的W2mef和3D7寄生虫均无法有效地入侵经胰凝乳蛋白酶处理的红细胞。这种功能丧失表明,EBA-175 /糖蛋白A配体-受体相互作用是主要的胰凝乳蛋白酶抗性入侵途径。具有截短的EBA-175的寄生虫品系具有与缺乏EBA-175表达的寄生虫等效的侵袭表型。 EBA-175配体在裂殖子入侵红细胞中起作用,裂殖子利用唾液酸依赖性或非依赖性的侵入途径。该发现提示了一种模型,其中成功进行入侵需要由多个配体-受体相互作用提供的最小亲和力,并且对作为疟疾疫苗候选者的EBA-175具有影响。

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