Free S J, Schimke R T, Freeze H, Loomis W F
J Biol Chem. 1978 Jun 25;253(12):4102-6.
We have isolated a mutant of Dictyostelium discoideum, M31, which produces a reduced number of alpha-mannosidase-1 molecules per cell during the developmental program of the organism. We find that several of the glycosidases, a group of lysosomal proteins produced by D. discoideum, are altered in strain M31 and that this strain produces a reduced level of at least three of these activities. These enzymes do not share a common protein subunit but are known to share a common antigenic determinant which is, in part, carbohydrate in nature. In the wild type parent of M31, alpha-mannosidase-1 is modified by the addition of mannose and glucosamine (probably as N-acetylglucosamine) in the molar ratio of 5:2. alpha-Mannosidase-1 was also found to contain phosphoserine/phosphothreonine residues. alpha-Mannosidase-1 and other glycosidases are electrophoretically less negative when isolated from strain M31 than when isolated from wild type cells. The mutation present in M31, modA, appears to affect posttranslational modification, modA is a recessive mutation which we map onto linkage group I.
我们分离出了一种盘基网柄菌突变体M31,在该生物体的发育过程中,它每个细胞产生的α-甘露糖苷酶-1分子数量减少。我们发现,盘基网柄菌产生的一组溶酶体蛋白——几种糖苷酶在M31菌株中发生了改变,并且该菌株产生的这些活性中至少有三种水平降低。这些酶并不共享一个共同的蛋白质亚基,但已知它们共享一个共同的抗原决定簇,该抗原决定簇部分本质上是碳水化合物。在M31的野生型亲本中,α-甘露糖苷酶-1通过添加摩尔比为5:2的甘露糖和葡糖胺(可能是N-乙酰葡糖胺)进行修饰。还发现α-甘露糖苷酶-1含有磷酸丝氨酸/磷酸苏氨酸残基。与从野生型细胞中分离时相比,从M31菌株中分离的α-甘露糖苷酶-1和其他糖苷酶在电泳时带负电较少。M31中存在的突变modA似乎影响翻译后修饰,modA是一种隐性突变,我们将其定位到连锁群I上。