Dominguez A, Villanueva J R, Sentandreu R
Antonie Van Leeuwenhoek. 1978;44(2):183-92. doi: 10.1007/BF00643221.
A particulate membrane preparation from Saccharomyces cerevisiae catalyzed the incorporation of mannose from GDP-mannose into lipids that were extractable in chloroform-methanol. One lipid has been previously characterized as dolichyl phosphomannose. Another one was purified by chromatography on silicic acid, DEAE-cellulose and Sephadex LH-20 was found to be alkali unstable. The lipid moiety was shown to be dolichol and the glycosydic part contained mannose, glucose and glucosamine. Radioactive mannose was also incorporated at a slower rate into more polar compounds. They were soluble in chloroform-methanol-water and were seen to liberate neutral oligosaccharides after alkaline hydrolysis. Radioactive mannose was also incorporated into substances which behave chemically as glycoproteins since they were insoluble in organic solvents, water and trichloroactic acid. Pronase treatment of the trichloroacetic acid-insoluble material released water-soluble oligosaccharides. When the particulate preparation which had been extracted with chloroform-methanol at-20 C, was incubated with GDP-(U-14C)mannose, radioactivity was incorporated into glycolipids that were soluble in chloroform-methanol-water and into glycoproteins. This result suggests that at least part of the mannose was transferred to endogenous acceptors independent of dolichyl phosphomannose.
来自酿酒酵母的微粒体膜制剂催化了GDP-甘露糖中的甘露糖掺入可在氯仿-甲醇中萃取的脂质中。一种脂质先前已被鉴定为多萜醇磷酸甘露糖。另一种通过在硅酸、DEAE-纤维素和葡聚糖LH-20上进行色谱纯化,发现其对碱不稳定。脂质部分显示为多萜醇,糖苷部分含有甘露糖、葡萄糖和葡糖胺。放射性甘露糖也以较慢的速率掺入极性更强的化合物中。它们可溶于氯仿-甲醇-水,并且在碱性水解后可释放出中性寡糖。放射性甘露糖也掺入了化学性质上表现为糖蛋白的物质中,因为它们不溶于有机溶剂、水和三氯乙酸。用链霉蛋白酶处理三氯乙酸不溶性物质可释放出水溶性寡糖。当在-20℃下用氯仿-甲醇萃取的微粒体制剂与GDP-(U-14C)甘露糖一起孵育时,放射性被掺入可溶于氯仿-甲醇-水的糖脂和糖蛋白中。这一结果表明,至少部分甘露糖被转移到了独立于多萜醇磷酸甘露糖的内源性受体上。