Ericson M C, Gafford J T, Elbein A D
J Biol Chem. 1977 Nov 10;252(21):7431-3.
Previous studies from this laboratory (Forsee, W. T., and Elbein, A. D. (1975) J. Biol. Chem. 250, 9283-9293; Forsee, W. T., Valkovich, G., and Elbein, A. D. (1976) Arch Biochem. Biophys. 174, 469-479) have shown that particulate extracts from cotton fibers and mung been seedlings catalyze the transfer of mannose from GDP-[14C]mannose and GlcNAc from UDP-[3H]GlcNAc into lipid-linked saccharides, Concentrations of tunicamycin of 5 microgram/ml or higher inhibit the incorporation of GlcNAc into GlcNAc-pyrophosphoryl-polyprenol but this antibiotic, even at 500 microgram/ml, had no effect on the synthesis of mannosyl-phosphoryldolichol. Tunicamycin also caused a slight inhibition in the incorporation of mannose into lipid-linked oligosaccharides. The concentration of tunicamycin necessary for inhibition was dependent on the amount of particulate enzyme in the incubations.
该实验室之前的研究(福西,W.T.,和埃尔宾,A.D.(1975年)《生物化学杂志》250卷,9283 - 9293页;福西,W.T.,瓦尔科维奇,G.,和埃尔宾,A.D.(1976年)《生物化学与生物物理学报》174卷,469 - 479页)表明,棉纤维和绿豆幼苗的微粒提取物催化将GDP - [14C]甘露糖中的甘露糖以及UDP - [3H]GlcNAc中的GlcNAc转移到脂质连接的糖类中。5微克/毫升或更高浓度的衣霉素抑制GlcNAc掺入GlcNAc - 焦磷酸化聚戊烯醇中,但这种抗生素即使在500微克/毫升时,对甘露糖基磷酸化多萜醇的合成也没有影响。衣霉素对甘露糖掺入脂质连接寡糖也有轻微抑制作用。抑制所需的衣霉素浓度取决于孵育中微粒酶的量。