Minuth W, Klischies M, Esser K
Eur J Biochem. 1978 Sep 15;90(1):73-82. doi: 10.1111/j.1432-1033.1978.tb12576.x.
In order to investigate the extent of the relationship between the three copper-containing glycoproteins, laccases I, II and III (Mr70000, 80000 and 390000 respectively) of Podospora anserina, the following experiments were carried out on laccases II and III: (a) determination of amino acid composition; (b) determination of N-terminal and C-terminal amino acid; (c) determination of sugar composition; (d) dissociation studies on native and denatured laccases and also after removal of copper from the enzymes; (e) digestion of the carbohydrate moieties with the aid of glycosylhydrolases. A comparison between the results of these experiments and data previously obtained with laccase I allows the following conclusions to be drawn. 1. Laccases II and III are not identical. 2. Neither of these low molecular weight laccases are as complete molecules subunits of the oligomeric laccase I. 3. The possibility of partial identity of amino acid sequences of laccases I and III can not be excluded. 4. Laccase II possibly consists of subunits of Mr37000 whereas laccase III does not. 5. Digestion of 50% of the carbohydrate content leads to complete loss of serological specificity (serological reaction and cross reaction). This finding is discussed with regard to the possible role of the carbohydrate moiety as antigenic determinants and thus as the reason for the immunological relationship. As a consequence, at least three independent structural genes for laccases must be assumed.
为了研究嗜热栖热放线菌中三种含铜糖蛋白漆酶I、II和III(分子量分别为70000、80000和390000)之间的关系程度,对漆酶II和III进行了以下实验:(a)氨基酸组成测定;(b)N端和C端氨基酸测定;(c)糖组成测定;(d)天然和变性漆酶以及从酶中去除铜后的解离研究;(e)借助糖基水解酶对碳水化合物部分进行消化。将这些实验结果与先前用漆酶I获得的数据进行比较,可以得出以下结论。1.漆酶II和III不相同。2.这些低分子量漆酶都不是寡聚漆酶I的完整分子亚基。3.不能排除漆酶I和III氨基酸序列部分相同的可能性。4.漆酶II可能由分子量为37000的亚基组成,而漆酶III则不是。5.50%的碳水化合物含量被消化会导致血清学特异性完全丧失(血清学反应和交叉反应)。就碳水化合物部分作为抗原决定簇的可能作用以及因此作为免疫关系的原因进行了讨论。因此,必须假定至少有三个独立的漆酶结构基因。