Hodder Anthony N, Maier Alexander G, Rug Melanie, Brown Monica, Hommel Mirja, Pantic Ivan, Puig-de-Morales-Marinkovic Marina, Smith Brian, Triglia Tony, Beeson James, Cowman Alan F
The Walter and Eliza Hall Institute of Medical Research, Melbourne, Australia.
Mol Microbiol. 2009 Jan;71(1):48-65. doi: 10.1111/j.1365-2958.2008.06508.x. Epub 2008 Nov 5.
Virulence of Plasmodium falciparum, the most lethal parasitic disease in humans, results in part from adhesiveness and increased rigidity of infected erythrocytes. Pf332 is trafficked to the parasite-infected erythrocyte via Maurer's clefts, structures for protein sorting and export in the host erythrocyte. This protein has a domain similar to the Duffy-binding-like (DBL) domain, which functions by binding to receptors for adherence and invasion. To address structure of the Pf332 DBL domain, we expressed this region, and validated its fold on the basis of the disulphide bond pattern, which conformed to the generic pattern for DBL domains. The modelled structure for Pf332 DBL had differences compared with the erythrocyte-binding region of the alphaDBL domain of Plasmodium knowlesi Duffy-binding protein (Pk alpha-DBL). We addressed the function of Pf332 by constructing parasites that either lack expression of the protein or express an altered form. We found no evidence that Pf332 is involved in cytoadhesion or merozoite invasion. Truncation of Pf332 had a significant effect on deformability of the P. falciparum-infected erythrocyte, while loss of the full protein deletion did not. Our data suggest that Pf332 may contribute to the overall deformability of the P. falciparum-infected erythrocyte by anchoring and scaffolding.
恶性疟原虫是人类最致命的寄生虫病,其毒力部分源于受感染红细胞的黏附性和刚性增加。Pf332通过毛雷尔氏小体转运至受寄生虫感染的红细胞,毛雷尔氏小体是宿主红细胞中用于蛋白质分选和输出的结构。该蛋白具有一个类似于达菲结合样(DBL)结构域的结构域,其功能是通过与黏附及入侵受体结合来实现的。为了研究Pf332 DBL结构域的结构,我们表达了该区域,并根据二硫键模式验证了其折叠情况,该模式符合DBL结构域的一般模式。Pf332 DBL的建模结构与诺氏疟原虫达菲结合蛋白(Pkα-DBL)的αDBL结构域的红细胞结合区域相比存在差异。我们通过构建缺失该蛋白表达或表达改变形式的寄生虫来研究Pf332的功能。我们没有发现证据表明Pf332参与细胞黏附或裂殖子入侵。Pf332的截短对恶性疟原虫感染红细胞的变形性有显著影响,而完全缺失该蛋白则没有。我们的数据表明,Pf332可能通过锚定和支架作用对恶性疟原虫感染红细胞的整体变形性有贡献。