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衣霉素对体外表皮糖蛋白和糖胺聚糖合成的影响。

Effect of tunicamycin on epidermal glycoprotein and glycosaminoglycan synthesis in vitro.

作者信息

King I A, Tabiowo A

出版信息

Biochem J. 1981 Aug 15;198(2):331-8. doi: 10.1042/bj1980331.

Abstract
  1. When pig ear skin slices were cultured for 18h in the presence of 1mug of tunicamycin/ml the incorporation of d-[(3)H]glucosamine into the epidermis, solubilized with 8m-urea/5% (w/v) sodium dodecyl sulphate, was inhibited by 45-55%. This degree of inhibition was not increased by using up to 5mug of tunicamycin/ml or by treating the skin slices with tunicamycin for up to 8 days. The incorporation of (U-(14)C)-labelled l-amino acids under these conditions was not affected by tunicamycin. Polyacrylamide-gel electrophoresis indicated that the labelling of the major glycosaminoglycan peak with d-[(3)H]glucosamine was unaffected, whereas that of the faster migrating glycoprotein components was considerably decreased in the presence of tunicamycin. 2. Subcellular fractionation indicated that tunicamycin specifically inhibited the incorporation of d-[(3)H]glucosamine but not of (U-(14)C)-labelled l-amino acids into particulate (mainly plasma-membrane) glycoproteins by about 70%. The labelling of soluble glycoproteins was hardly affected. Polyacrylamide-gel electrophoresis of the plasma-membrane fraction showed decreased d-[(3)H]glucosamine incorporation into all glycoprotein components, indicating that the plasma-membrane glycoproteins contained mainly N-asparagine-linked oligosaccharides. 3. Cellulose acetate electrophoresis of both cellular and extracellular glycosaminoglycans showed that tunicamycin had no significant effect on the synthesis of the major component, hyaluronic acid. However, the incorporation of both d-[(3)H]glucosamine and (35)SO(4) (2-) into sulphated glycosaminoglycans was inhibited by about 50%. This inhibition was partially overcome, at least in the cellular fraction, by 2mm-p-nitrophenyl beta-d-xyloside indicating that tunicamycin-treated epidermis retained the ability to synthesize sulphated glycosaminoglycan chains. Tunicamycin may affect the synthesis and/or degradation of proteoglycan core proteins or the xylosyltransferase. 4. Electron-microscopic examination of epidermis treated with tunicamycin for up to 4 days revealed no significant changes in cell-surface morphology or in epidermal-cell adhesion. Either N-asparagine-linked carbohydrates play little role in epidermal-cell adhesion or more probably there is little turnover of these components in epidermal adhesive structures such as desmosomes and hemidesmosomes during organ culture.
摘要
  1. 当猪耳皮肤切片在含有1μg衣霉素/毫升的条件下培养18小时时,用8M尿素/5%(w/v)十二烷基硫酸钠溶解后,d-[(3)H]葡萄糖胺掺入表皮的量被抑制了45 - 55%。使用高达5μg衣霉素/毫升或用衣霉素处理皮肤切片长达8天,这种抑制程度并未增加。在这些条件下,(U-(14)C)-标记的L-氨基酸的掺入不受衣霉素影响。聚丙烯酰胺凝胶电泳表明,d-[(3)H]葡萄糖胺对主要糖胺聚糖峰的标记不受影响,而在衣霉素存在下,迁移速度较快的糖蛋白成分的标记显著减少。2. 亚细胞分级分离表明,衣霉素特异性抑制d-[(3)H]葡萄糖胺掺入颗粒状(主要是质膜)糖蛋白中,但不抑制(U-(14)C)-标记的L-氨基酸掺入,抑制率约为70%。可溶性糖蛋白的标记几乎不受影响。质膜部分的聚丙烯酰胺凝胶电泳显示,所有糖蛋白成分中d-[(3)H]葡萄糖胺的掺入均减少,这表明质膜糖蛋白主要含有N-天冬酰胺连接的寡糖。3. 细胞内和细胞外糖胺聚糖的醋酸纤维素电泳表明,衣霉素对主要成分透明质酸的合成没有显著影响。然而,d-[(3)H]葡萄糖胺和(35)SO(4)(2-)掺入硫酸化糖胺聚糖的量被抑制了约50%。至少在细胞部分,2mM对硝基苯基β-D-木糖苷部分克服了这种抑制,这表明经衣霉素处理的表皮保留了合成硫酸化糖胺聚糖链的能力。衣霉素可能影响蛋白聚糖核心蛋白的合成和/或降解或木糖基转移酶。4. 对用衣霉素处理长达4天的表皮进行电子显微镜检查,未发现细胞表面形态或表皮细胞黏附方面有显著变化。要么N-天冬酰胺连接的碳水化合物在表皮细胞黏附中作用很小,要么更可能的是,在器官培养过程中,这些成分在诸如桥粒和半桥粒等表皮黏附结构中的周转很少。

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