Surani M A
Cell. 1979 Sep;18(1):217-27. doi: 10.1016/0092-8674(79)90370-2.
The synthesis of glycoproteins and inhibition of protein glycosylation by tunicamycin were examined during development of preimplantation mouse embryos and trophoblast adhesion. Tunicamycin specifically inhibits glycosylation of asparaginyl residues of glycoproteins. Tunicamycin, 0.25-5.0 microgram/ml, had no effect on early cleavage or aggregation between embryos, but the embryos remained irreversibly uncompacted when control embryos developed to the blastocyst stage. Trophoblast adhesion and giant cell outgrowth were reversibly inhibited and the binding of Con A was also reduced. Incorporation of 3H-mannose into blastocysts was inhibited by 80%, but that of 3H-glucosamine and 3H-leucine by only 28 and 18%, respectively, in the presence of 1.0 microgram/ml tunicamycin. Qualitative analysis showed that the incorporation of the sugars was markedly reduced in the majority of the fractions, but the synthesis of these carbohydrate-deficient glycopeptides was essentially normal. However, protein-polysaccharide fractions with nearly 40% of the incorporated glucosamine and only 5% mannose and 1% leucine were insensitive to inhibition by tunicamycin. Membrane-bound N-glycosidically linked glycoproteins therefore evidently play an important role during compaction and in trophoblast adhesion of mouse embryos.
在小鼠植入前胚胎发育和滋养层黏附过程中,研究了衣霉素对糖蛋白合成及蛋白质糖基化的抑制作用。衣霉素特异性抑制糖蛋白中天冬酰胺残基的糖基化。0.25 - 5.0微克/毫升的衣霉素对胚胎早期分裂或胚胎间聚集无影响,但当对照胚胎发育至囊胚阶段时,处理后的胚胎仍不可逆地未致密化。滋养层黏附和巨细胞生长受到可逆性抑制,伴刀豆球蛋白A的结合也减少。在1.0微克/毫升衣霉素存在的情况下,3H-甘露糖掺入囊胚受到80%的抑制,但3H-葡糖胺和3H-亮氨酸的掺入分别仅受到28%和18%的抑制。定性分析表明,大多数组分中糖的掺入显著减少,但这些碳水化合物缺乏的糖肽的合成基本正常。然而,含有近40%掺入葡糖胺、仅5%甘露糖和1%亮氨酸的蛋白质-多糖组分对衣霉素的抑制不敏感。因此,膜结合的N-糖苷键连接的糖蛋白在小鼠胚胎致密化和滋养层黏附过程中显然起着重要作用。