Howard R F, Stanley H A, Campbell G H, Langreth S G, Reese R T
Mol Biochem Parasitol. 1985 Oct;17(1):61-77. doi: 10.1016/0166-6851(85)90128-8.
The malarial parasite Plasmodium falciparum synthesizes a major glycoprotein (gp) of Mr 185 000 during its asexual blood cycle. Immunoprecipitation of [35S]methionine- or [3H]glucosamine-labeled schizont antigens indicated that two groups of polypeptides were distinguished with anti-gp 185 mouse monoclonal antibodies: group A was composed of glycosylated molecules of Mr 185 000, 120 000, 90 000, 88 000, 46 000, and 40 000 while group B contained, in addition to gp 185, polypeptides of Mr 152 000, 106 000 and 83 000. The latter polypeptides lacked detectable amounts of radiolabeled saccharide. The smaller Mr polypeptides were specifically immunoprecipitated and not merely coprecipitated with gp 185. Our results suggest that gp 185 contains at least two structurally distinct domains which may be processed independently into either the group A or group B polypeptides. Although gp 185 may not be a merozoite surface protein, representative group A and group B-specific monoclonal antibodies bound to surface antigens of the merozoite as demonstrated by immunolabeling followed by electron microscopy. Therefore, at least one group A antigen and one group B antigen appeared to be on the extracellular surface of the merozoite. The proteins found in immunoprecipitates after both (1) sonication in aqueous medium and ultracentrifugation and (2) solubilization and phase separation of parasite molecules with Triton X-114 suggested that the group A and group B polypeptides and glycoproteins are either soluble or peripheral membrane proteins. Some of these, therefore, may be components of the surface coat of the merozoite.
疟原虫恶性疟原虫在其无性血液周期中合成一种主要糖蛋白(gp),其分子量为185 000。对[35S]甲硫氨酸或[3H]葡糖胺标记的裂殖体抗原进行免疫沉淀表明,用抗gp 185小鼠单克隆抗体可区分出两组多肽:A组由分子量为185 000、120 000、90 000、88 000、46 000和40 000的糖基化分子组成,而B组除gp 185外,还含有分子量为152 000、106 000和83 000的多肽。后一组多肽缺乏可检测到的放射性标记糖类。较小分子量的多肽被特异性免疫沉淀,而不仅仅是与gp 185共沉淀。我们的结果表明,gp 185至少包含两个结构不同的结构域,它们可能被独立加工成A组或B组多肽。尽管gp 185可能不是裂殖子表面蛋白,但如免疫标记后电子显微镜所示,代表性的A组和B组特异性单克隆抗体与裂殖子表面抗原结合。因此,至少一种A组抗原和一种B组抗原似乎位于裂殖子的细胞外表面。在(1)水性介质中超声处理并超速离心以及(2)用Triton X-114溶解并分离寄生虫分子后,免疫沉淀中发现的蛋白质表明,A组和B组多肽及糖蛋白要么是可溶性的,要么是外周膜蛋白。因此,其中一些可能是裂殖子表面包被的成分。