Howard R J, Uni S, Aikawa M, Aley S B, Leech J H, Lew A M, Wellems T E, Rener J, Taylor D W
J Cell Biol. 1986 Oct;103(4):1269-77. doi: 10.1083/jcb.103.4.1269.
Plasmodium falciparum-infected erythrocytes (IRBCs) synthesize several histidine-rich proteins (HRPs) that accumulate high levels of [3H]histidine but very low levels of amino acids such as [3H]isoleucine or [35S]methionine. We prepared a monoclonal antibody which reacts specifically with one of these HRPs (Pf HRP II) and studied the location and synthesis of this protein during the parasite's intracellular growth. With the knob-positive Malayan Camp strain of P. falciparum, the monoclonal antibody identified a multiplet of protein bands with major species at Mr 72,000 and 69,000. Pf HRP II synthesis began with immature parasites (rings) and continued through the trophozoite stage. The Mr 72,000 band of Pf HRP II, but not the faster moving bands of the multiplet, was recovered as a water-soluble protein from the culture supernatant of intact IRBCs. Approximately 50% of the total [3H]histidine radioactivity incorporated into the Mr 72,000 band was extracellular between 2 and 24 h of culture. Immunofluorescence and cryothin-section immunoelectron microscopy localized Pf HRP II to several cell compartments including the parasite cytoplasm, as concentrated "packets" in the host erythrocyte cytoplasm and at the IRBC membrane. Our results provide evidence for an intracellular route of transport for a secreted malarial protein from the parasite through several membranes and the host cell cytoplasm.
恶性疟原虫感染的红细胞(IRBCs)合成几种富含组氨酸的蛋白质(HRPs),这些蛋白质积累了高水平的[3H]组氨酸,但诸如[3H]异亮氨酸或[35S]甲硫氨酸等氨基酸的水平却非常低。我们制备了一种单克隆抗体,它能与其中一种HRPs(Pf HRP II)特异性反应,并研究了这种蛋白质在寄生虫细胞内生长过程中的定位和合成。对于恶性疟原虫的马来亚营地株(knob阳性),该单克隆抗体鉴定出多条蛋白带,主要条带的分子量分别为72,000和69,000。Pf HRP II的合成始于未成熟的寄生虫(环状体),并持续到滋养体阶段。Pf HRP II的72,000分子量条带,而非该多重条带中迁移速度更快的条带,可作为一种水溶性蛋白从完整IRBCs的培养上清中回收。在培养2至24小时之间,掺入72,000分子量条带中的总[3H]组氨酸放射性约50%位于细胞外。免疫荧光和冷冻超薄切片免疫电子显微镜将Pf HRP II定位到几个细胞区室,包括寄生虫细胞质、宿主红细胞细胞质中浓缩的“包块”以及IRBC膜。我们的结果为一种分泌性疟疾蛋白从寄生虫通过几层膜和宿主细胞质的细胞内运输途径提供了证据。