International Centre for Genetic Engineering and Biotechnology, New Delhi, India.
J Proteome Res. 2011 Feb 4;10(2):680-91. doi: 10.1021/pr100875y. Epub 2010 Dec 22.
Plasmodium merozoite surface protein-1 (MSP-1) is an essential antigen for the merozoite invasion of erythrocytes. A key challenge to the development of an effective malaria vaccine that can block the erythrocyte invasion is to establish the molecular interaction(s) among the parasite surface proteins as well as with the host cell encoded receptors. In the present study, we applied molecular interactions and proteome approaches to identify PfMSP-1 associated complex on the merozoite surface. Proteomic analysis identified a major malaria surface protein, PfRhopH3 interacting with PfMSP-1(42). Pull-down experiments with merozoite lysate using anti-PfMSP-1 or anti-PfRhopH3 antibodies showed 16 bands that when identified by tandem mass spectrometry corresponded to11 parasite proteins: PfMSP-3, PfMSP-6, PfMSP-7, PfMSP-9, PfRhopH3, PfRhopH1, PfRAP-1, PfRAP-2, and two RAP domain containing proteins. This MSP-1 associated complex was specifically seen at schizont/merozoite stages but not the next ring stage. We could also identify many of these proteins in culture supernatant, suggesting the shedding of the complex. Interestingly, the PfRhopH3 protein also showed binding to the human erythrocyte and anti-PfRhopH3 antibodies blocked the erythrocyte invasion of the merozoites. These results have potential implications in the development of PfMSP-1 based blood stage malaria vaccine.
疟原虫裂殖子表面蛋白-1(MSP-1)是裂殖子入侵红细胞所必需的抗原。开发一种能阻止红细胞入侵的有效疟疾疫苗的主要挑战是确定寄生虫表面蛋白以及与宿主细胞编码受体之间的分子相互作用。在本研究中,我们应用分子相互作用和蛋白质组学方法来鉴定裂殖子表面上与 PfMSP-1 相关的复合物。蛋白质组学分析鉴定了一种主要的疟原虫表面蛋白 PfRhopH3 与 PfMSP-1(42)相互作用。用抗 PfMSP-1 或抗 PfRhopH3 抗体从裂殖体裂解物中进行下拉实验显示了 16 条带,通过串联质谱鉴定这些带对应于 11 种寄生虫蛋白:PfMSP-3、PfMSP-6、PfMSP-7、PfMSP-9、PfRhopH3、PfRhopH1、PfRAP-1、PfRAP-2 和两种含有 RAP 结构域的蛋白。这种 MSP-1 相关复合物仅在裂殖体/裂殖子阶段可见,而在下一个环阶段不可见。我们还可以在培养上清液中鉴定出许多这些蛋白,表明该复合物会脱落。有趣的是,PfRhopH3 蛋白也显示与人类红细胞结合,抗 PfRhopH3 抗体阻断了裂殖子对红细胞的入侵。这些结果对基于 PfMSP-1 的红内期疟疾疫苗的开发具有潜在意义。