Kimura Y, Matsuo S
Department of Bioresources Chemistry, Faculty of Agriculture, Okayama University, Japan.
Biosci Biotechnol Biochem. 2000 Mar;64(3):562-8. doi: 10.1271/bbb.64.562.
Structural changes in N-linked oligosaccharides of glycoproteins during seed development of Ginkgo biloba have been explored to discover possible endogenous substrate(s) for the Ginko endo-beta-N-acetylglucosaminidase (endo-GB; Kimura, Y., et al. (1998) Biosci. Biotechnol. Biochem., 62, 253-261), which should be involved in the production of high-mannose type free N-glycans. The structural analysis of the pyridylaminated oligosaccharides with a 2D sugar chain map, by ESI-MS/MS spectroscopy, showed that all N-glycans expressed on glycoproteins through the developmental stage of the Ginkgo seeds have the xylose-containing type (GlcNAc2 approximately 0Man3Xyl1Fuc1 approximately 0GlcNAc2) but no high-mannose type structure. Man3Xyl1Fuc1GlcNAc2, a typical plant complex type structure especially found in vacuolar glycoproteins, was a dominant structure through the seed development, while the amount of expression of GlcNAc2Man3Xyl1Fuc1GlcNAc2 and GlcNAc1Man3Xyl1Fuc1GlcNAc2 decreased as the seeds developed. The dominantly occurrence of xylose-containing type structures and the absence of the high-mannose type structures on Ginkgo glycoproteins were also shown by lectin-blotting and immunoblotting of SDS-soluble glycoproteins extracted from the developing seeds at various developmental stages. Concerning the endogenous substrates for plant endo-beta-N-acetylglucosaminidase, these results suggested that the endogenous substrates might be the dolicol-oligosaccharide intermediates or some glycopeptides with the high-mannose type N-glycan(s) derived from misfolded glycoproteins in the quality control system for newly synthesized glycoproteins.
为了发现银杏内切β-N-乙酰氨基葡萄糖苷酶(内切GB;Kimura,Y.等人(1998年)《生物科学、生物技术与生物化学》,62卷,253 - 261页)可能的内源性底物,人们对银杏种子发育过程中糖蛋白N-连接寡糖的结构变化进行了探索,该酶应参与高甘露糖型游离N-聚糖的产生。通过二维糖链图谱和电喷雾串联质谱(ESI-MS/MS)光谱对吡啶氨基化寡糖进行结构分析,结果表明,在银杏种子发育阶段糖蛋白上表达的所有N-聚糖均为含木糖型(GlcNAc2≈Man3Xyl1Fuc1≈0GlcNAc2),但没有高甘露糖型结构。Man3Xyl1Fuc1GlcNAc2是一种典型的植物复合型结构,尤其在液泡糖蛋白中发现,它是种子发育过程中的主要结构,而GlcNAc2Man3Xyl1Fuc1GlcNAc2和GlcNAc1Man3Xyl1Fuc1GlcNAc2的表达量随着种子的发育而减少。从不同发育阶段的发育种子中提取的SDS可溶性糖蛋白的凝集素印迹和免疫印迹也表明,银杏糖蛋白上主要存在含木糖型结构,而不存在高甘露糖型结构。关于植物内切β-N-乙酰氨基葡萄糖苷酶的内源性底物,这些结果表明,内源性底物可能是多萜醇寡糖中间体或一些在新合成糖蛋白质量控制系统中由错误折叠的糖蛋白衍生而来的具有高甘露糖型N-聚糖的糖肽。