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首页> 外文期刊>Infection and immunity >Passive Immunization with a Multicomponent Vaccine against Conserved Domains of Apical Membrane Antigen 1 and 235-Kilodalton Rhoptry Proteins Protects Mice against Plasmodium yoelii Blood-Stage Challenge Infection
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Passive Immunization with a Multicomponent Vaccine against Conserved Domains of Apical Membrane Antigen 1 and 235-Kilodalton Rhoptry Proteins Protects Mice against Plasmodium yoelii Blood-Stage Challenge Infection

机译:被动免疫与针对顶端膜抗原1和235-Kilodalton Rhoptry蛋白的保守域的多组分疫苗保护小鼠免受约氏疟原虫血阶段挑战感染。

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During malaria parasite invasion of red blood cells, merozoite proteins bind receptors on the surface of the erythrocyte. Two candidate Plasmodium yoelii adhesion proteins are apical membrane antigen 1 (AMA1) and the 235-kDa rhoptry proteins (P235). Previously, we have demonstrated that passive immunization with monoclonal antibodies (MAbs) 45B1 and 25.77 against AMA1 and P235, respectively, protects against a lethal challenge infection with P. yoelii YM. We show that MAb 45B1 recognizes an epitope located on a conserved surface of PyAMA1, as determined by phage display and analysis of the three-dimensional structure of AMA1, in a region similar to that bound by the P. falciparum AMA1-specific inhibitory antibody 4G2. The epitope recognized by 25.77 could not be assigned. We report here that MAbs 45B1 and 25.77 also protect against challenge with the nonlethal parasite line 17X, in which PyAMA1 has a significantly different amino acid sequence from that in YM. When administered together, the two MAbs acted at least additively in providing protection against challenge with the virulent YM parasite. These results support the concept of developing a multicomponent blood-stage vaccine and the inclusion of polymorphic targets such as AMA1, which these results suggest contain conserved domains recognized by inhibitory antibodies.
机译:在疟原虫入侵红细胞的过程中,裂殖子蛋白结合了红细胞表面的受体。两种约氏疟原虫粘附蛋白是顶膜抗原1(AMA1)和235-kDa rhoptry蛋白(P235)。以前,我们已经证明分别用针对AMA1和P235的单克隆抗体(MAb)45B1和25.77进行被​​动免疫可预防 P致死性攻击感染。 yoelii YM。我们显示单克隆抗体45B1识别位于PyAMA1保守表面上的表位,通过噬菌体展示和AMA1三维结构的分析确定,位于与 P结合的区域相似。恶性疟原虫AMA1特异性抑制抗体4G2。无法分配25.77识别的表位。我们在这里报告,单克隆抗体45B1和25.77还可以防止非致命性寄生虫品系17X的攻击,其中PyAMA1具有与YM中显着不同的氨基酸序列。当一起施用时,两种MAb至少在累加作用上提供了针对强毒YM寄生虫的攻击的保护。这些结果支持了开发多组分血液阶段疫苗的概念,并包含了多态性靶标(例如AMA1),这些结果表明它们含有被抑制性抗体识别的保守域。

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