Pradel Gabriele, Hayton Karen, Aravind L, Iyer Lakshminarayan M, Abrahamsen Mitchell S, Bonawitz Annemarie, Mejia Cesar, Templeton Thomas J
Department of Microbiology and Immunology, Weill Medical College of Cornell University, 1300 York Avenue, New York, NY 10021, USA.
J Exp Med. 2004 Jun 7;199(11):1533-44. doi: 10.1084/jem.20031274.
The recent sequencing of several apicomplexan genomes has provided the opportunity to characterize novel antigens essential for the parasite life cycle that might lead to the development of new diagnostic and therapeutic markers. Here we have screened the Plasmodium falciparum genome sequence for genes encoding extracellular multidomain putative adhesive proteins. Three of these identified genes, named PfCCp1, PfCCp2, and PfCCp3, have multiple adhesive modules including a common Limulus coagulation factor C domain also found in two additional Plasmodium genes. Orthologues were identified in the Cryptosporidium parvum genome sequence, indicating an evolutionary conserved function. Transcript and protein expression analysis shows sexual stage-specific expression of PfCCp1, PfCCp2, and PfCCp3, and cellular localization studies revealed plasma membrane-associated expression in mature gametocytes. During gametogenesis, PfCCps are released and localize surrounding complexes of newly emerged microgametes and macrogametes. PfCCp expression markedly decreased after formation of zygotes. To begin to address PfCCp function, the PfCCp2 and PfCCp3 gene loci were disrupted by homologous recombination, resulting in parasites capable of forming oocyst sporozoites but blocked in the salivary gland transition. Our results describe members of a conserved apicomplexan protein family expressed in sexual stage Plasmodium parasites that may represent candidates for subunits of a transmission-blocking vaccine.
近期对几种顶复门寄生虫基因组进行的测序,为鉴定寄生虫生命周期中必需的新型抗原提供了契机,这些抗原可能会促成新的诊断和治疗标志物的开发。在此,我们在恶性疟原虫基因组序列中筛选了编码细胞外多结构域假定粘附蛋白的基因。其中三个已鉴定的基因,命名为PfCCp1、PfCCp2和PfCCp3,具有多个粘附模块,包括在另外两个疟原虫基因中也发现的一个共同的鲎凝血因子C结构域。在微小隐孢子虫基因组序列中鉴定出了直系同源物,表明其具有进化保守功能。转录本和蛋白质表达分析显示PfCCp1、PfCCp2和PfCCp3在有性阶段特异性表达,细胞定位研究揭示其在成熟配子体中与质膜相关表达。在配子发生过程中,PfCCps被释放并定位于新出现的小配子和大配子周围的复合体。合子形成后,PfCCp的表达显著降低。为了初步探究PfCCp的功能,通过同源重组破坏了PfCCp2和PfCCp3基因座,导致寄生虫能够形成卵囊子孢子,但在唾液腺转变过程中受阻。我们的研究结果描述了在疟原虫有性阶段表达的一个保守的顶复门蛋白家族成员,这些成员可能是传播阻断疫苗亚基的候选物。