Bertholdt G, Stadler J, Bozzaro S, Fichtner B, Gerisch G
Cell Differ. 1985 May;16(3):187-202. doi: 10.1016/0045-6039(85)90516-0.
A series of monoclonal antibodies against a developmentally regulated protein of Dictyostelium discoideum, the contact site A glycoprotein, were used in immunoblots to label proteins of cells harvested at three stages of development: during the growth phase, at the aggregation competent stage, and at the slug stage. The antibodies fell into two groups according to their reactivity with partially or fully deglycosylated forms of the 80 kDa glycoprotein. Group A antibodies reacted not only with a 66 kDa, but also with a 53 kDa product of tunicamycin-treated wild-type cells, and they reacted with a 68 kDa component produced by HL220, a mutant that carries a specific defect in glycosylation. The 68 kDa product of the mutant was not completely unglycosylated. Like the 80 kDa glycoprotein of the wild type, which carried sulfate at carbohydrate residues, the mutant product was sulfated. In the presence of tunicamycin, the mutant produced a 53 kDa component indistinguishable from that of the wild type, which represents, most likely, the non-N-glycosylated protein portion of the contact site A glycoprotein. The group A antibodies showed almost no cross-reactivity with other proteins of the developmental stages tested, in accord with their postulated specificity for the protein moiety of the contact site A molecule. Group B antibodies did not react with the 53 kDa product of tunicamycin-treated cells, nor with the 68 kDa component of mutant HL220. These antibodies were of varying specificity. Some of them were almost as specific as group A antibodies, others cross-reacted with many proteins, particularly of the slug stage. Competition or non-competition between various group B antibodies for binding to the contact site A glycoprotein allowed sub-classification of these antibodies. According to two criteria, group B antibodies were characterized as anti-carbohydrate antibodies: (1) some of these antibodies were blocked by N-acetylglucosamine; (2) none of them reacted with the 68 kDa product or any other protein of mutant HL220. These results indicate that the 80 kDa glycoprotein carries two types of carbohydrate: type 1 carbohydrate that is sulfated and present on the 68 kDa product of mutant HL220, and type 2 carbohydrate that reacts with group B antibodies and is present on the 66 kDa product of tunicamycin-treated wild-type cells. Type 2 carbohydrate moieties are also present on many glycoproteins that are enriched in the prespore area of the slugs.(ABSTRACT TRUNCATED AT 400 WORDS)
一系列针对盘基网柄菌发育调控蛋白——接触位点A糖蛋白的单克隆抗体,被用于免疫印迹实验,以标记在发育三个阶段收获的细胞蛋白:生长阶段、聚集能力形成阶段和蛞蝓体阶段。根据抗体与80 kDa糖蛋白部分或完全去糖基化形式的反应性,这些抗体分为两组。A组抗体不仅与66 kDa的蛋白反应,还与衣霉素处理的野生型细胞的53 kDa产物反应,并且它们与HL220(一种在糖基化方面存在特定缺陷的突变体)产生的68 kDa成分反应。突变体的68 kDa产物并非完全未糖基化。与在碳水化合物残基上带有硫酸盐的野生型80 kDa糖蛋白一样,突变体产物也被硫酸化。在衣霉素存在的情况下,突变体产生了一个与野生型无法区分的53 kDa成分,这很可能代表接触位点A糖蛋白的非N - 糖基化蛋白部分。A组抗体与所测试发育阶段的其他蛋白几乎没有交叉反应,这与其对接触位点A分子蛋白部分的假定特异性一致。B组抗体不与衣霉素处理细胞的53 kDa产物反应,也不与突变体HL220的68 kDa成分反应。这些抗体具有不同的特异性。其中一些几乎与A组抗体一样特异,另一些则与许多蛋白交叉反应,尤其是蛞蝓体阶段的蛋白。不同B组抗体之间与接触位点A糖蛋白结合的竞争或非竞争情况,使得这些抗体能够进一步细分。根据两个标准,B组抗体被鉴定为抗碳水化合物抗体:(1)其中一些抗体被N - 乙酰葡糖胺阻断;(2)它们都不与突变体HL220的68 kDa产物或任何其他蛋白反应。这些结果表明,80 kDa糖蛋白带有两种类型的碳水化合物:1型碳水化合物,它被硫酸化且存在于突变体HL220的68 kDa产物上;2型碳水化合物,它与B组抗体反应且存在于衣霉素处理的野生型细胞的66 kDa产物上。2型碳水化合物部分也存在于许多在蛞蝓体前孢子区域富集的糖蛋白上。(摘要截于400字)