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Evaluation of Three Pichia pastoris-Expressed Plasmodium falciparum Merozoite Proteins as a Combination Vaccine against Infection with Blood-Stage Parasites

机译:三种巴斯德毕赤酵母表达的恶性疟原虫裂殖子蛋白作为联合疫苗对抗血期寄生虫感染的评价

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摘要

Because invasion of erythrocytes by Plasmodium falciparum merozoites involves multiple receptor-ligand interactions, it may be necessary to develop a multivalent malaria vaccine that is comprised of distinct parasite ligands. PfAMA-1, PfMSP1, and PfEBA-175 are merozoite proteins that play important roles in invasion. We have constructed a PfCP-2.9 chimeric protein consisting of PfAMA-1 and PfMSP1 and tested it for immunogenicity in animal models and humans. The F2 subdomain of PfEBA-175 (PfEBA-175II F2) was identified as the binding domain for glycophorin A on erythrocytes. In this study, we used the codon frequencies of the yeast Pichia pastoris to redesign and synthesize a gene encoding the F2 domain. We found that the codon-optimized gene was expressed at a high level in P. pastoris as a soluble protein with a yield of about 300 mg/liter. The expressed protein was able to bind normal erythrocytes but not those treated with neuraminidase or trypsin. Moreover, the protein was recognized by the sera of malaria patients and was highly immunogenic in mice, rabbits, and rhesus monkeys. Immunoglobulin G isolated from both immunized rabbits and monkeys inhibited in vitro parasite growth. Immunization of animals with a combination of PfEBA-175II F2 and PfCP-2.9 did not result in antigen (Ag) competition in animals. Moreover, antibodies to both PfEBA-175II F2 and PfCP-2.9, isolated from rabbits immunized with both constructs, inhibited parasite growth in vitro. The combination of high yield, functional folding, antibody inhibition, and lack of Ag competition provides support for inclusion of these merozoite proteins in a combination vaccine against infection with blood-stage parasites.
机译:由于恶性疟原虫裂殖子入侵红细胞涉及多种受体-配体相互作用,因此可能有必要开发一种由不同的寄生虫配体组成的多价疟疾疫苗。 PfAMA-1,PfMSP1和PfEBA-175是裂殖子蛋白,在入侵中起重要作用。我们已经构建了由PfAMA-1和PfMSP1组成的PfCP-2.9嵌合蛋白,并在动物模型和人类中测试了其免疫原性。 PfEBA-175的F2亚结构域(PfEBA-175II F2)被确定为血红蛋白A在红细胞上的结合结构域。在这项研究中,我们使用巴斯德毕赤酵母的密码子频率重新设计并合成了编码F2结构域的基因。我们发现密码子优化的基因在毕赤酵母中以可溶蛋白的高水平表达,产量约为300 mg / L。表达的蛋白质能够结合正常的红细胞,但不能结合神经氨酸酶或胰蛋白酶处理的那些。此外,该蛋白质已被疟疾患者的血清所识别,并且在小鼠,兔子和恒河猴中具有高度免疫原性。从免疫兔子和猴子中分离得到的免疫球蛋白G抑制了体外寄生虫的生长。用PfEBA-175II F2和PfCP-2.9组合免疫动物不会导致动物的抗原(Ag)竞争。此外,从用两种构建体免疫的兔中分离得到的针对PfEBA-175II F2和PfCP-2.9的抗体在体外均抑制了寄生虫的生长。高产量,功能折叠,抗体抑制和缺乏Ag竞争的组合为将这些裂殖子蛋白包含在抗血阶段寄生虫感染的组合疫苗中提供了支持。

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