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衣霉素抑制N-连接糖基化对L1210白血病细胞核苷转运多肽的影响。

Effects of inhibition of N-linked glycosylation by tunicamycin on nucleoside transport polypeptides of L1210 leukemia cells.

作者信息

Hogue D L, Hodgson K C, Cass C E

机构信息

Department of Biochemistry, University of Alberta, Edmonton, Canada.

出版信息

Biochem Cell Biol. 1990 Jan;68(1):199-209. doi: 10.1139/o90-026.

Abstract

Membrane polypeptides (relative mass (Mr) 48,000--55,000) associated with the equilibrative transport of nucleosides were identified in cultured murine leukemia (L1210/C2) cells by site-specific photolabeling with [3H]nitrobenzylthioinosine ([3H]NBMPR). Growth of cells in the presence of tunicamycin resulted in the gradual conversion of 3H-labeled polypeptides to a form that migrated more rapidly (Mr 42,000--47,000) during sodium dodecyl sulfate (SDS)--polyacrylamide gel electrophoresis. When plasma membrane fractions were photolabeled and incubated with O-glycanase or endoglycosidase F, the [3H]NBMPR-labeled polypeptides migrated in SDS-polyacrylamide gels with the same mobility as native NBMPR-binding polypeptides, whereas incubation with either N-glycanase or trifluoromethane sulfonic acid converted [3H]NBMPR-labeled polypeptides to the more rapidly migrating form (Mr 41,000--48,000). These observations are consistent with the presence of N-linked oligosaccharides of the complex type on the NBMPR-binding polypeptides of L1210/C2 cells. Tunicamycin exposures that reduced incorporation of [3H]mannose into plasma membrane fractions by greater than 95% had little, if any, effect on either the affinity (Kd values, 0.1-0.2 nM) or abundance (Bmax values, 200,000--220,000 sites/cell) of NBMPR-binding sites, whereas uridine transport kinetics at 37 degrees C were altered in a complex way. Thus, although N-linked glycosylation is not required for insertion of the NBMPR-binding protein into the plasma membrane or for interaction of NBMPR with the high-affinity binding sites, it is important for function of at least one of the three nucleoside transporters expressed by L1210/C2 cells.

摘要

通过用[3H]硝基苄硫肌苷([3H]NBMPR)进行位点特异性光标记,在培养的小鼠白血病(L1210/C2)细胞中鉴定出与核苷平衡转运相关的膜多肽(相对分子质量(Mr)为48,000 - 55,000)。在衣霉素存在下培养细胞,导致3H标记的多肽在十二烷基硫酸钠(SDS)-聚丙烯酰胺凝胶电泳过程中逐渐转变为迁移速度更快的形式(Mr为42,000 - 47,000)。当质膜组分进行光标记并与O-聚糖酶或内切糖苷酶F一起孵育时,[3H]NBMPR标记的多肽在SDS-聚丙烯酰胺凝胶中迁移,迁移率与天然NBMPR结合多肽相同,而与N-聚糖酶或三氟甲磺酸一起孵育则将[3H]NBMPR标记的多肽转变为迁移速度更快的形式(Mr为41,000 - 48,000)。这些观察结果与L1210/C2细胞的NBMPR结合多肽上存在复杂型N-连接寡糖一致。衣霉素处理使[3H]甘露糖掺入质膜组分的量减少超过95%,对NBMPR结合位点的亲和力(Kd值,0.1 - 0.2 nM)或丰度(Bmax值,200,000 - 220,000个位点/细胞)几乎没有影响,而37℃下尿苷转运动力学以复杂的方式改变。因此,虽然N-连接糖基化对于NBMPR结合蛋白插入质膜或NBMPR与高亲和力结合位点的相互作用不是必需的,但对于L1210/C2细胞表达的三种核苷转运蛋白中至少一种的功能很重要。

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