Horrocks Paul, Pinches Robert A, Chakravorty Srabasti J, Papakrivos Janni, Christodoulou Zóe, Kyes Susan A, Urban Britta C, Ferguson David J P, Newbold Chris I
Weatherall Institute of Molecular Medicine, University of Oxford, Oxford, OX3 9DS, UK.
J Cell Sci. 2005 Jun 1;118(Pt 11):2507-18. doi: 10.1242/jcs.02381.
The Plasmodium falciparum erythrocyte membrane protein 1 (PfEMP1) is a key virulence factor for this species of human malarial parasite. PfEMP1 is expressed on the surface of infected erythrocytes (IEs) and directly mediates adhesion to a variety of host cells. A number of other parasite-encoded proteins are similarly exported to the IE plasma membrane and play an indirect role in this adhesion process through the modification of the erythrocyte cytoskeleton and the formation of electron dense knobs into which PfEMP1 is anchored. Analysis of the specific contribution of knob-associated proteins to adhesion is difficult due to rapid PfEMP1 switching during in vitro culture. Furthermore, these studies typically assume that the level and distribution of PfEMP1 exposed in knobby (K(+)) and knobless (K(-)) IEs is unaltered, an assumption not yet supported with data. We describe here the preparation and characterisation of a panel of isogenic K(+) and K(-) parasite clones that express one of two defined PfEMP1 variants. Analysis of the cytoadhesive properties of these clones shows that both static and flow adhesion is reduced in all the K(-) clones and, further, that this correlates with an approximately 50% reduction in PfEMP1 displayed on the IE surface. However, despite this reduction, the gross distribution of PfEMP1 in K(-) IEs appears unaltered. These data impact on our current interpretation of the role of knobs in adhesion and the mechanism of trafficking PfEMP1 to the IE surface.
恶性疟原虫红细胞膜蛋白1(PfEMP1)是这种人类疟原虫的关键致病因子。PfEMP1在受感染红细胞(IEs)表面表达,并直接介导与多种宿主细胞的黏附。许多其他寄生虫编码的蛋白质同样被转运到IE质膜上,并通过修饰红细胞细胞骨架以及形成PfEMP1锚定其中的电子致密凸起,在这个黏附过程中发挥间接作用。由于体外培养过程中PfEMP1快速转换,分析与凸起相关蛋白对黏附的具体贡献很困难。此外,这些研究通常假定在有凸起(K(+))和无凸起(K(-))的IEs中暴露的PfEMP1的水平和分布没有改变,这一假设尚未得到数据支持。我们在此描述了一组表达两种确定的PfEMP1变体之一的同基因K(+)和K(-)寄生虫克隆的制备和特性。对这些克隆的细胞黏附特性分析表明,所有K(-)克隆的静态和流动黏附都降低了,而且,这与IE表面显示的PfEMP1减少约50%相关。然而,尽管有这种减少,PfEMP1在K(-) IEs中的总体分布似乎没有改变。这些数据影响了我们目前对凸起在黏附中的作用以及PfEMP1转运到IE表面机制的解释。