Totani Kiichiro, Yamaya Kenta, Hirano Makoto, Ito Yukishige
Department of Materials and Life Science, Seikei University, 3-3-1 Kichijoji-kitamachi, Musashino, Tokyo, 180-8633, Japan.
Department of Materials and Life Science, Seikei University, 3-3-1 Kichijoji-kitamachi, Musashino, Tokyo, 180-8633, Japan.
Carbohydr Res. 2017 Feb 1;439:16-22. doi: 10.1016/j.carres.2016.12.008. Epub 2016 Dec 29.
Glycoprotein N-linked oligosaccharides in the endoplasmic reticulum function as tags to regulate glycoprotein folding, sorting, secretion and degradation. Since the N-glycan structure of a glycoprotein should reflect the folding state, N-glycan processing may be affected by the aglycone state. In this study, we examined the influence of aglycone structures on N-glycan processing using synthetic substrates. We prepared (Glc)ManGlcNAc linked to hydrophobic BODIPY-dye with a systematic series of different linker lengths. With these compounds, glucose transfer, glucose trimming and mannose trimming reactions of an endoplasmic reticulum fraction were examined. The results showed that substrates with shorter linkers between the N-glycan and hydrophobic patch had higher activities for both the glucose transfer and the mannose trimming reactions. In contrast, the glucose trimming reaction showed lower activity when substrates had shorter linkers. Thus, the reactivity for N-linked oligosaccharide processing of glycoproteins in the endoplasmic reticulum might be tunable by the aglycone structure, e.g., protein portion of glycoproteins.
内质网中的糖蛋白N-连接寡糖作为标签,发挥调节糖蛋白折叠、分选、分泌和降解的作用。由于糖蛋白的N-聚糖结构应反映其折叠状态,因此N-聚糖加工可能会受到糖苷配基状态的影响。在本研究中,我们使用合成底物研究了糖苷配基结构对N-聚糖加工的影响。我们制备了与疏水性硼二吡咯染料相连的(Glc)ManGlcNAc,并系统地改变连接子的长度。利用这些化合物,我们对内质网部分的葡萄糖转移、葡萄糖修剪和甘露糖修剪反应进行了研究。结果表明,N-聚糖与疏水区域之间连接子较短的底物在葡萄糖转移和甘露糖修剪反应中均具有较高活性。相反,当底物连接子较短时,葡萄糖修剪反应活性较低。因此,内质网中糖蛋白N-连接寡糖加工的反应性可能受糖苷配基结构(如糖蛋白的蛋白质部分)的调控。