Hamada H, Hagiwara K, Nakajima T, Tsuruo T
Cancer Res. 1987 Jun 1;47(11):2860-5.
An overexpression of plasma membrane glycoprotein with a relative molecular mass (Mr) of 170,000-180,000 is consistently found in different multidrug-resistant human and animal cell lines, although the functional role of the protein in multidrug resistance is not fully understood. It has been reported previously that the Mr 170,000-180,000 glycoprotein is involved, directly or indirectly, in the drug transport mechanism and the proliferation of multidrug-resistant tumor cells. In an attempt to clarify further the function of the Mr 170,000-180,000 glycoprotein, we have studied the phosphorylation state of the protein in intact K562/ADM cells and found that: the protein is phosphorylated in the basal state; verapamil and trifluoperazine, which inhibit the active drug efflux and restore drug sensitivity in resistant cells, caused an increase in the phosphorylation of the Mr 170,000-180,000 glycoprotein; 4 beta-phorbol 12 beta-myristate 13 alpha-acetate and 1-oleoyl 2-acetylglycerol enhanced phosphorylation of the protein; the protein was phosphorylated at serine residues; tryptic phosphopeptide mapping of the Mr 170,000-180,000 glycoprotein showed that 4 beta-phorbol 12 beta-myristate 13 alpha-acetate treatment induced an increase in phosphorylation at different sites of the protein from those induced by verapamil or trifluoperazine treatment, suggesting that the protein is phosphorylated by an array of complex regulation mechanisms. Phosphorylation of the Mr 170,000-180,000 glycoprotein might play a role in the regulation of processes affecting cellular function in multidrug resistance.
在不同的多药耐药人类和动物细胞系中,始终发现相对分子质量(Mr)为170,000 - 180,000的质膜糖蛋白过表达,尽管该蛋白在多药耐药中的功能作用尚未完全明确。先前已有报道称,Mr 170,000 - 180,000糖蛋白直接或间接参与药物转运机制以及多药耐药肿瘤细胞的增殖。为了进一步阐明Mr 170,000 - 180,000糖蛋白的功能,我们研究了完整K562/ADM细胞中该蛋白的磷酸化状态,结果发现:该蛋白在基础状态下被磷酸化;抑制耐药细胞中活性药物外排并恢复药物敏感性的维拉帕米和三氟拉嗪,导致Mr 170,000 - 180,000糖蛋白的磷酸化增加;4β - 佛波醇12β - 肉豆蔻酸酯13α - 乙酸酯和1 - 油酰基2 - 乙酰甘油增强了该蛋白的磷酸化;该蛋白在丝氨酸残基处被磷酸化;Mr 170,000 - 180,000糖蛋白的胰蛋白酶磷酸肽图谱显示,4β - 佛波醇12β - 肉豆蔻酸酯13α - 乙酸酯处理诱导该蛋白不同位点的磷酸化增加,与维拉帕米或三氟拉嗪处理诱导的位点不同,这表明该蛋白通过一系列复杂的调节机制被磷酸化。Mr 170,000 - 180,000糖蛋白的磷酸化可能在多药耐药中影响细胞功能的过程调节中发挥作用。