Mimnaugh E G, Chavany C, Neckers L
Clinical Pharmacology Branch, National Cancer Institute, National Institutes of Health, Bethesda, Maryland 20892, USA.
J Biol Chem. 1996 Sep 13;271(37):22796-801. doi: 10.1074/jbc.271.37.22796.
Treatment of SKBr3 human breast carcinoma cells with the benzoquinoid ansamycin, geldanamycin, rapidly depletes p185c-erbB-2 protein-tyrosine kinase. Loss of p185c-erbB-2 is initiated by disruption of a heteromeric complex between p185c-erbB-2 and the 94-kDa glucose-regulated protein, GRP94, to which geldanamycin binds avidly. Here we report that within minutes of exposure to geldanamycin, mature p185c-erbB-2 becomes polyubiquitinated. Treatment of cells with the specific proteasome proteolytic inhibitor, lactacystin, blocked geldanamycin-induced degradation of p185c-erbB-2 and enhanced the accumulation of polyubiquitinated p185c-erbB-2. Following geldanamycin and lactacystin treatment, a higher molecular weight form of p185c-erbB-2, which likely represents ubiquitin-p185c-erbB-2 conjugates, was detected by anti-p185c-erbB-2 immunoblotting. Nascent p185c-erbB-2 synthesized in the presence of geldanamycin is incompletely glycosylated and remains sequestered in the endoplasmic reticulum. While this immature form of the protein is not ubiquitinated in the presence of geldanamycin, its marked, drug-induced instability is nonetheless antagonized by lactacystin. Thus, the rapid depletion of mature p185c-erbB-2 caused by geldanamycin and the marked, drug-stimulated decrease in half-life of the newly synthesized protein are both mediated by the proteasome, although only the former phenomenon involves polyubiquitination.
用苯醌安莎霉素格尔德霉素处理SKBr3人乳腺癌细胞,可迅速消耗p185c-erbB-2蛋白酪氨酸激酶。p185c-erbB-2的缺失是由p185c-erbB-2与94 kDa葡萄糖调节蛋白GRP94之间的异源复合物被破坏引发的,格尔德霉素能与之紧密结合。在此我们报告,在接触格尔德霉素几分钟内,成熟的p185c-erbB-2会发生多聚泛素化。用特异性蛋白酶体蛋白水解抑制剂乳胞素处理细胞,可阻断格尔德霉素诱导的p185c-erbB-2降解,并增强多聚泛素化p185c-erbB-2的积累。经格尔德霉素和乳胞素处理后,通过抗p185c-erbB-2免疫印迹检测到一种分子量更高的p185c-erbB-2形式,它可能代表泛素-p185c-erbB-2缀合物。在格尔德霉素存在的情况下合成的新生p185c-erbB-2糖基化不完全,并保留在内质网中。虽然这种未成熟形式的蛋白在格尔德霉素存在下不会发生泛素化,但其明显的药物诱导不稳定性仍会被乳胞素拮抗。因此,格尔德霉素导致的成熟p185c-erbB-2的快速消耗以及新合成蛋白半衰期的显著药物刺激缩短均由蛋白酶体介导,尽管只有前一种现象涉及多聚泛素化。