Wang Tongmin, Fujioka Hisashi, Drazba Judith A, Sam-Yellowe Tobili Y
Department of Biological, Geological and Environmental Sciences, Cleveland State University, Cleveland, OH, USA.
Parasitol Res. 2006 Aug;99(3):238-52. doi: 10.1007/s00436-006-0136-9. Epub 2006 Mar 16.
In the present study, Rhop-3 polymorphism among Plasmodium falciparum field and laboratory isolates and among rodent Plasmodium species was investigated and identified. The Rhop-3 gene was found in all Plasmodium species so far tested. The overall structure of the Rhop-3 protein was found conserved among P. falciparum, Plasmodium yoelii, and Plasmodium berghei. However, it was more conserved among rodent Plasmodium species than between P. falciparum and Plasmodium vivax. The most conserved regions of Rhop-3 are the second half of exon 6 (amino acid #548 to #665) and the beginning of exon 3 (amino acid #59 to #210). Recombinant C-terminal partial and full-length Rhop-3 proteins of P. yoelii and P. berghei were expressed in Escherichia coli and purified. Immunization-challenge experiments in mice using recombinant Rhop-3 proteins led to a delay in parasite development and protected mice from a homologous lethal challenge infection. In a group of eight outbred Carworth Farm White (CFW) mice immunized with P. yoelii C-terminal recombinant His-Y1412 protein, three mice (37.5%) were protected from a lethal P. yoelii challenge. In BALB/cJ mice one mouse (20%) survived the infection. Immunization of mice with P. berghei recombinant full-length Rhop-3 protein in BALB/cJ mice led to a 40% survival from lethal P. berghei challenge. CFW mice immunized with P. berghei recombinant full-length Rhop-3 protein showed a significant delay in parasite development with a heterologous P. yoelii challenge. The Rhop-3 protein is a promising candidate for an asexual stage malaria vaccine.
在本研究中,对恶性疟原虫野外和实验室分离株以及啮齿类疟原虫物种中的Rhop-3多态性进行了调查和鉴定。到目前为止,在所有已测试的疟原虫物种中均发现了Rhop-3基因。Rhop-3蛋白的整体结构在恶性疟原虫、约氏疟原虫和伯氏疟原虫中保守。然而,它在啮齿类疟原虫物种之间比在恶性疟原虫和间日疟原虫之间更保守。Rhop-3最保守的区域是外显子6的后半部分(氨基酸#548至#665)和外显子3的起始部分(氨基酸#59至#210)。约氏疟原虫和伯氏疟原虫的重组C端部分和全长Rhop-3蛋白在大肠杆菌中表达并纯化。使用重组Rhop-3蛋白对小鼠进行免疫攻击实验导致寄生虫发育延迟,并保护小鼠免受同源致死性攻击感染。在用约氏疟原虫C端重组His-Y1412蛋白免疫的一组八只远交系Carworth Farm White(CFW)小鼠中,三只小鼠(37.5%)免受致死性约氏疟原虫攻击。在BALB/cJ小鼠中,一只小鼠(占20%)在感染中存活。用伯氏疟原虫重组全长Rhop-3蛋白免疫BALB/cJ小鼠,导致40%的小鼠在致死性伯氏疟原虫攻击中存活。用伯氏疟原虫重组全长Rhop-3蛋白免疫的CFW小鼠在异源约氏疟原虫攻击下寄生虫发育显著延迟。Rhop-3蛋白是无性期疟疾疫苗的一个有前景的候选物。