De Stefano J A, Myers J D, Du Pont D, Foy J M, Theus S A, Walzer P D
Complex Carbohydrate Research Center, University of Georgia, Athens 30602, USA.
J Eukaryot Microbiol. 1998 May-Jun;45(3):334-43. doi: 10.1111/j.1550-7408.1998.tb04545.x.
We have purified and biochemically analyzed individual cell wall glycoproteins of Pneumocystis carinii. Our results show that corresponding core glycoproteins constitute the cell wall antigens in both trophozoites and cysts, and glycosylation of these glycoproteins does not appear to be significantly altered during development. Cysts and trophozoites in rat-derived organism preparations were separated from each other by counterflow centrifugal elutriation, then treated with Zymolyase to obtain the cell wall fractions. Gel electrophoresis patterns of these fractions from both life-cycle stages were qualitatively similar. Ten major antigenic glycoproteins in these fractions were purified by preparative continuous elution gel electrophoresis. All ten glycoproteins from cysts and trophozoites contained mannose, glucose, galactose, and N-acetylglucosamine, and some contained traces of fucose. The glycoproteins of cysts had more mannose than their trophozoite counterparts. The trophozoite glycoproteins differed from those of the cyst by the presence of xylose. To examine the species-specificity of glycoprotein glycosylation, preparations of human-derived P. carinii (comprised of mixed life-cycle stages) were also examined and found to contain the same sugars as those found in rat-derived organisms. Most of the purified rat-derived glycoproteins bound Concanvalin A, which was abolished by treatment with N-glycanase. This suggested that the majority of the oligosaccharides were N-linked to the proteins, but attempts to identify carbohydrate linkage sites by amino acid sequencing were hampered by apparent modifications of residues. The peptides derived by cyanogen bromide cleavage revealed distinct size patterns for each glycoprotein, suggesting that they were distinct proteins. Most of the glycoproteins reacted with monoclonal antibodies which recognize a highly conserved epitope on rat P. carinii. Four of the individually purified glycoprotein preparations elicited in vitro cellular immune responses, implicating their involvement in the recognition of P. carinii by host T cells. The identification and characterization of P. carinii cell wall proteins will be helpful in analyzing the relationship of the organism to its mammalian host.
我们已经对卡氏肺孢子虫的单个细胞壁糖蛋白进行了纯化和生化分析。我们的结果表明,相应的核心糖蛋白构成滋养体和包囊中的细胞壁抗原,并且这些糖蛋白的糖基化在发育过程中似乎没有明显改变。通过逆流离心淘析将大鼠来源生物体制剂中的包囊和滋养体彼此分离,然后用溶菌酶处理以获得细胞壁部分。来自这两个生命周期阶段的这些部分的凝胶电泳图谱在质量上相似。通过制备性连续洗脱凝胶电泳纯化了这些部分中的十种主要抗原性糖蛋白。来自包囊和滋养体的所有十种糖蛋白都含有甘露糖、葡萄糖、半乳糖和N-乙酰葡糖胺,有些还含有微量岩藻糖。包囊的糖蛋白比其滋养体对应物含有更多的甘露糖。滋养体糖蛋白与包囊糖蛋白的不同之处在于含有木糖。为了检查糖蛋白糖基化的种属特异性,还检查了人源卡氏肺孢子虫制剂(由混合生命周期阶段组成),发现其含有与大鼠来源生物体中相同的糖类。大多数纯化的大鼠来源糖蛋白与伴刀豆球蛋白A结合,用N-聚糖酶处理后这种结合被消除。这表明大多数寡糖与蛋白质N-连接,但通过氨基酸测序鉴定碳水化合物连接位点的尝试因残基的明显修饰而受阻。溴化氰裂解产生的肽显示每种糖蛋白有不同的大小模式,表明它们是不同的蛋白质。大多数糖蛋白与识别大鼠卡氏肺孢子虫上高度保守表位的单克隆抗体反应。四种单独纯化的糖蛋白制剂在体外引发细胞免疫反应,表明它们参与宿主T细胞对卡氏肺孢子虫的识别。卡氏肺孢子虫细胞壁蛋白的鉴定和表征将有助于分析该生物体与其哺乳动物宿主之间的关系。