Herscovics A, Bugge B, Jeanloz R W
J Biol Chem. 1977 Apr 10;252(7):2271-7.
Calf pancreas microsomes incorporated radioactively labeled D-glucose from UDP-D-glucose into products extracted with chloroform/methanol (2:1, v/v), chloroform/methanol/water (10:102.5, v/v), and into the residual precipitate, with a pH optimum in Tris/maleate buffer of about 5.3. The chloroform/methanol extract contained a single 14C-labeled acidic product, which was identified as dolichyl beta-D-glucosyl phosphate. It was stable to mild alkali, yielded D-[14C]glucose upon mild acid hydrolysis, and a 14C-labeled compound with the chromatographic mobility of 1,6-anhydro-beta-D-glucopyranosyl upon hot alkali treatment. The [14C]glucolipid had the same chromatographic mobility as dolichyl beta-D-[14C]mannosyl phosphate, and its formation was stimulated by exogenous dolichyl phosphate. The chloroform/methanol/water extract contained radioactive lipid-bound oligosaccharides which were retained on DEAE-cellulose more strongly than dolichyl D-[14C]glucosyl phosphate. They were stable to mild alkali, but labile to acid and hot alkali. Acid treatment yielded a D-glucose-labeled oligosaccharide fraction which was shown by gel filtration to be slightly larger than most of the D-mannose-labeled oligosaccharides. About 80% of the radioactive D-glucose residues could be removed with alpha-glucosidase, but not with beta-glucosidase. Pancreatic dolichyl beta-D-[14C]glucosyl phosphate incubated with calf pancreas microsomes served as direct donor of D-glucosyl residues to lipid-bound oligosaccharides and to the precipitate. These oligosaccharides had the same size as those labeled from UDP-D-[14C]glucose, and the D-[14C]glucose residues could also be removed with alpha-glucosidase.
小牛胰腺微粒体将来自UDP-D-葡萄糖的放射性标记的D-葡萄糖掺入用氯仿/甲醇(2:1,v/v)、氯仿/甲醇/水(10:10:2.5,v/v)提取的产物以及残余沉淀中,在Tris/马来酸缓冲液中最适pH约为5.3。氯仿/甲醇提取物含有单一的14C标记酸性产物,鉴定为多萜醇β-D-葡糖基磷酸。它对弱碱稳定,在弱酸水解时产生D-[14C]葡萄糖,在热碱处理时产生具有1,6-脱水-β-D-吡喃葡萄糖基色谱迁移率的14C标记化合物。[14C]糖脂与多萜醇β-D-[14C]甘露糖基磷酸具有相同的色谱迁移率,其形成受外源多萜醇磷酸刺激。氯仿/甲醇/水提取物含有放射性脂质结合寡糖,其在DEAE-纤维素上的保留比多萜醇D-[14C]葡糖基磷酸更强。它们对弱碱稳定,但对酸和热碱不稳定。酸处理产生D-葡萄糖标记的寡糖级分,通过凝胶过滤显示其略大于大多数D-甘露糖标记的寡糖。约80%的放射性D-葡萄糖残基可用α-葡糖苷酶去除,但不能用β-葡糖苷酶去除。与小牛胰腺微粒体一起温育的胰腺多萜醇β-D-[14C]葡糖基磷酸作为D-葡糖基残基的直接供体参与脂质结合寡糖和沉淀的形成。这些寡糖与从UDP-D-[14C]葡萄糖标记的寡糖大小相同,D-[14C]葡萄糖残基也可用α-葡糖苷酶去除。