Freeze H H
Mol Cell Biochem. 1986 Nov-Dec;72(1-2):47-65. doi: 10.1007/BF00230635.
This paper has two purposes. The first is to review the past studies on the structure, biosynthesis, and immunological properties of a class of glycoproteins, the lysosomal enzymes, in Dictyostelium discoideum. The second purpose is to present new data on the analysis of mutant strains altered in the biosynthesis of the lipid-linked precursor of N-linked oligosaccharides, and on the characterization of new carbohydrate antigenic determinants found on multiple proteins in Dictyostelium. We will also show how a combination of genetic, biochemical and immunochemical approaches have been used to unravel a portion of the glycosylation pathway in Dictyostelium. The long-term goal of these studies is to use Dictyostelium discoideum as a model system to understand the functions of a variety of glycoconjugates in a multicellular organism. The existence of a large number of mutant strains which are altered in a variety of cellular functions, development and the posttranslational modification of multiple proteins, offers a great opportunity to explore this area.
本文有两个目的。第一个目的是回顾过去关于盘基网柄菌中一类糖蛋白(溶酶体酶)的结构、生物合成和免疫特性的研究。第二个目的是展示关于分析在N-连接寡糖的脂质连接前体生物合成中发生改变的突变菌株的新数据,以及关于盘基网柄菌中多种蛋白质上发现的新碳水化合物抗原决定簇的表征。我们还将展示如何结合遗传、生化和免疫化学方法来揭示盘基网柄菌中糖基化途径的一部分。这些研究的长期目标是使用盘基网柄菌作为模型系统来理解多细胞生物中各种糖缀合物的功能。存在大量在多种细胞功能、发育以及多种蛋白质的翻译后修饰方面发生改变的突变菌株,这为探索该领域提供了绝佳机会。