Scholz Sabrina Maria, Simon Nina, Lavazec Catherine, Dude Marie-Adrienne, Templeton Thomas J, Pradel Gabriele
University of Würzburg, Research Center for Infectious Diseases, Röntgenring 11, 97070 Würzburg, Germany.
Int J Parasitol. 2008 Mar;38(3-4):327-40. doi: 10.1016/j.ijpara.2007.08.009. Epub 2007 Sep 20.
The sexual phase of the malaria parasite Plasmodium falciparum is essential for transmission of the disease and is accompanied by the co-ordinated expression of sexual stage proteins. Six of these proteins belong to a highly conserved apicomplexan family of multi-domain adhesion proteins, termed PfCCps. PfCCp1, PfCCp2 and PfCCp3 are co-dependently expressed in the parasitophorous vacuole associated with the gametocyte plasma membrane. PfCCp2 and PfCCp3 also play an essential role for parasite development in the mosquito. We show that the six PfCCp proteins are expressed in stages II-V of gametocytogenesis as well as during early gamete formation. The proteins are expressed in association with the surface of both male and female gametocytes and macrogametes, but are not present in exflagellating microgametes. Further, the newly described protein PfCCp4 co-localizes with the transmission blocking candidate Pfs230, with which it forms a protein complex. In contrast to the phenotypes that are observed following targeted gene disruption of PfCCp2, PfCCp3 or Pfs230, the lack of PfCCp4 expression does not inhibit parasite development in the mosquito vector. This indicates a non-essential role for this protein during parasite transmission. Exflagellation assays revealed that antibodies directed against distinct domains of PfCCp1 through PfCCp4 and PfFNPA support a complement-mediated decrease in gametocyte emergence. We conclude that the six PfCCp proteins are specifically expressed during gametocytogenesis and gamete formation, and that select members may represent prospective candidates for transmission blocking vaccines.
恶性疟原虫的有性阶段对于该疾病的传播至关重要,并且伴随着性阶段蛋白的协调表达。其中六种蛋白属于一个高度保守的多结构域黏附蛋白顶复门家族,称为PfCCps。PfCCp1、PfCCp2和PfCCp3在与配子体细胞质膜相关的寄生泡中共依赖表达。PfCCp2和PfCCp3在蚊子体内的寄生虫发育中也起着至关重要的作用。我们发现六种PfCCp蛋白在配子体发生的II-V阶段以及早期配子形成过程中表达。这些蛋白在雄性和雌性配子体以及大配子的表面表达,但不存在于出丝的小配子中。此外,新描述的蛋白PfCCp4与传播阻断候选蛋白Pfs230共定位,并与之形成蛋白复合物。与PfCCp2、PfCCp3或Pfs230靶向基因破坏后观察到的表型相反,PfCCp4表达的缺失并不抑制寄生虫在蚊媒中的发育。这表明该蛋白在寄生虫传播过程中起非必需作用。出丝试验表明,针对PfCCp1至PfCCp4和PfFNPA不同结构域的抗体支持补体介导的配子体出现减少。我们得出结论,六种PfCCp蛋白在配子体发生和配子形成过程中特异性表达,并且特定成员可能代表传播阻断疫苗的潜在候选物。