International Centre for Genetic Engineering and Biotechnology, New Delhi, India.
Int J Parasitol. 2009 Jun;39(7):763-73. doi: 10.1016/j.ijpara.2008.12.004.
Proteins on the surface of the merozoite, the invasive form of the malaria parasite Plasmodium falciparum,and those secreted from its apical secretory organelles are promising vaccine candidates against blood stage malaria. In the present study, we have identified a novel parasite protein (PfDBLMSP; Gene IDPF10_0348), that harbors a predicted signal sequence, a central Duffy binding-like (DBL) domain and a secreted polymorphic antigen associated with merozoites (SPAM) domain in its C-terminal half. Transcription and translation of pfdblmsp is up-regulated specifically in schizont stage parasites, similar to other well-chararacterized merozoite proteins involved in invasion of red blood cells (RBCs). PfDBLMSPwas localized on the merozoite surface with a GFP targeting approach using schizont-stage specific expression systems, and by immunofluorescence assays of the endogenous protein. PfDBLMSP expressed on the surface of mammalian cells (COS-7) showed binding with human RBCs and this binding was sensitive to trypsin and neuraminidase treatments. The recombinant proteins corresponding to the DBL and SPAM domains showed reactivity with immune sera from individuals residing in P. falciparum endemic areas. Polymorphism in PfDBLMSP sequences from different P. falciparum strains and field isolates suggested that its DBL domain is under natural immune pressure. Our data on localization and functional assays suggest a possible role of PfDBLMSP in binding of merozoites with erythrocytes during invasion.
裂殖子表面蛋白和顶质体分泌蛋白是恶性疟原虫(Plasmodium falciparum)血期疫苗的候选抗原。本研究鉴定了一种新型疟原虫蛋白(PfDBLMSP;Gene IDPF10_0348),其 C 端具有信号肽、中央 Duffy 结合样(DBL)结构域和与裂殖子相关的分泌型多态抗原(SPAM)结构域。pfdblmsp 的转录和翻译在裂殖体期寄生虫中特异性上调,与其他参与入侵红细胞(RBC)的成熟裂殖子蛋白相似。采用裂殖体特异性表达系统和内源性蛋白免疫荧光检测,PfDBLMSP 定位于裂殖子表面。在哺乳动物细胞(COS-7)表面表达的 PfDBLMSP 与人 RBC 结合,且该结合对胰蛋白酶和神经氨酸酶处理敏感。DBL 和 SPAM 结构域的重组蛋白与恶性疟原虫流行地区个体的免疫血清反应。来自不同恶性疟原虫株和现场分离株的 PfDBLMSP 序列的多态性表明其 DBL 结构域受到自然免疫压力的影响。我们的定位和功能分析数据表明 PfDBLMSP 可能在裂殖子与红细胞结合入侵过程中发挥作用。