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首页> 外文期刊>Infection and immunity >A recombinant 15-kilodalton carboxyl-terminal fragment of Plasmodium yoelii yoelii 17XL merozoite surface protein 1 induces a protective immune response in mice.
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A recombinant 15-kilodalton carboxyl-terminal fragment of Plasmodium yoelii yoelii 17XL merozoite surface protein 1 induces a protective immune response in mice.

机译:约氏疟原虫约氏疟原虫17XL裂殖子表面蛋白1的重组15-千达尔顿羧基末端片段在小鼠中诱导保护性免疫应答。

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Since the developmental stages of malarial parasites which replicate within erythrocytes are responsible for the morbidity and mortality associated with this disease, antigens produced by these stages have been proposed as candidates for a vaccine. One surface protein of merozoites (MSP-1) has been shown to immunize both rodents and primates against virulent challenge infection in experimental systems. However, little is known of relevant epitopes on the molecule, and attempts to obtain recombinant MSP-1 polypeptides in a native configuration have proven difficult. We have found that the cysteine-rich, carboxyl-terminal region of the MSP-1 protein from the rodent malarial parasite Plasmodium yoelii yoelii can be expressed in a native configuration as a fusion protein in Escherichia coli. This recombinant polypeptide containing 15 kDa of the predicted 197-kDa protein elicits antibodies in mice which recognize the native parasite MSP-1. Most significantly, both inbred and outbred mice immunized with the fusion protein in Ribi adjuvant are partially and in some cases completely protected against challenge infection with an otherwise lethal parasite strain. This is the first observation of such significant protection obtained with a small portion of the MSP-1 produced in recombinant systems.
机译:由于在红细胞内复制的疟疾寄生虫的发育阶段是与这种疾病相关的发病率和死亡率的原因,因此已经提出了由这些阶段产生的抗原作为疫苗的候选物。裂殖子的一种表面蛋白(MSP-1)已显示可在实验系统中免疫啮齿动物和灵长类动物免受强毒攻击。然而,对该分子上相关表位的了解甚少,并且证明获得天然构型的重组MSP-1多肽的尝试已被证明是困难的。我们已经发现,来自啮齿动物疟原虫的疟原虫约氏疟原虫的MSP-1蛋白的富含半胱氨酸的羧基末端区域可以以天然构型表达为大肠杆菌中的融合蛋白。包含15 kDa的预期197 kDa蛋白的重组多肽在小鼠中引起识别天然寄生虫MSP-1的抗体。最重要的是,在Ribi佐剂中用融合蛋白免疫的近交和近交小鼠均受到部分保护,在某些情况下可以完全保护自己免受致命性寄生虫菌株的攻击感染。这是用重组系统中产生的一小部分MSP-1获得如此显着保护的首次观察。

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