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The structure of Plasmodium yoelii merozoite surface protein 119, antibody specificity and implications for malaria vaccine design

机译:约氏疟原虫裂殖子表面蛋白119的结构,抗体特异性及其对疟疾疫苗设计的影响

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摘要

Merozoite surface protein 1 (MSP1) has been identified as a target antigen for protective immune responses against asexual blood stage malaria, but effective vaccines based on MSP1 have not been developed so far. We have modified the sequence of Plasmodium yoelii MSP119 (the C-terminal region of the molecule) and examined the ability of the variant proteins to bind protective monoclonal antibodies and to induce protection by immunization. In parallel, we examined the structure of the protein and the consequences of the amino acid changes. Naturally occurring sequence polymorphisms reduced the binding of individual protective antibodies, indicating that they contribute to immune evasion, but immunization with these variant proteins still provided protective immunity. One variant that resulted in the localized distortion of a loop close to the N-terminus of MSP119 almost completely ablated protection by immunization, indicating the importance of this region of MSP119 as a target for protective immunity and in vaccine development.
机译:裂殖子表面蛋白1(MSP1)已被确定为针对无性血液阶段疟疾的保护性免疫应答的靶标抗原,但是到目前为止,尚未开发出基于MSP1的有效疫苗。我们已经修改了约氏疟原虫MSP1 19 (分子的C端区域)的序列,并检查了变异蛋白结合保护性单克隆抗体并通过免疫诱导保护的能力。同时,我们检查了蛋白质的结构和氨基酸变化的后果。天然存在的序列多态性减少了单个保护性抗体的结合,表明它们有助于逃避免疫,但是用这些变异蛋白进行免疫仍可提供保护性免疫。一种变体导致靠近MSP1 19 的N末端的环的局部扭曲,几乎完全被免疫消融了,这表明MSP1 19 的这一区域的重要性作为保护性免疫和疫苗开发的目标。

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