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细胞抑制剂和化学增敏剂与P-糖蛋白上的右尼群地平结合位点的相互作用。

Interaction of cytostatics and chemosensitizers with the dexniguldipine binding site on P-glycoprotein.

作者信息

Boer R, Ulrich W R, Haas S, Borchers C, Gekeler V, Boss H, Przybylski M, Schödl A

机构信息

Byk Gulden, Konstanz, Germany.

出版信息

Eur J Pharmacol. 1996 Jan 11;295(2-3):253-60. doi: 10.1016/0014-2999(95)00649-4.

Abstract

The interaction of cytostatics and chemosensitizers with the dexniguldipine binding site of P-glycoprotein was investigated in photoaffinity labeling experiments. A tritiated azidoderivative of the chemosensitizer dexniguldipine with dihydropyridine structure, [3H]B9209-005, was used to irreversibly label P-glycoprotein. The apparent affinity of cytostatics and chemosensitizers to this binding site was estimated from labeling experiments in the presence of increasing concentrations of compounds. From the cytostatics tested, the vinca alkaloids and taxol showed the highest affinity, anthracyclins possessed moderate affinity while methotrexate, ara C and camptothecin, cytostatics not involved in P-glycoprotein-mediated multidrug resistance, were almost inactive. The chemosensitizers GF 120918, cyclosporin A and SDZ PSC-833 inhibited photoincorporation with the highest potency. Steep dose-inhibition curves were obtained with the cyclic peptides and S9788, indicating that these compounds may bind allosterically to a separate binding site. Compounds with dihydropyridine structure with or without chemosensitizing potency were also tested and some structure-activity relationships could be derived from the data. Our data show that inhibition of photoaffinity labeling by [3H]B9209-005 is a valuable and reliable system for measuring the interaction with and potency of chemosensitizing compounds at P-glycoprotein. Furthermore, data obtained in this test system are well suited to investigate structure-activity relationships for chemosensitizers at P-glycoprotein. In addition cytostatics underlying P-glycoprotein-mediated multidrug resistance can be identified.

摘要

在光亲和标记实验中研究了细胞抑制剂和化学增敏剂与P-糖蛋白的右尼群地平结合位点的相互作用。使用具有二氢吡啶结构的化学增敏剂右尼群地平的氚化叠氮衍生物[3H]B9209-005不可逆地标记P-糖蛋白。通过在化合物浓度不断增加的情况下进行标记实验,估计细胞抑制剂和化学增敏剂对该结合位点的表观亲和力。在所测试的细胞抑制剂中,长春花生物碱和紫杉醇显示出最高的亲和力,蒽环类药物具有中等亲和力,而甲氨蝶呤、阿糖胞苷和喜树碱这些不参与P-糖蛋白介导的多药耐药性的细胞抑制剂几乎没有活性。化学增敏剂GF 120918、环孢素A和SDZ PSC-833以最高效力抑制光掺入。环肽和S9788获得了陡峭的剂量抑制曲线,表明这些化合物可能通过变构作用结合到一个单独的结合位点。还测试了具有或不具有化学增敏效力的二氢吡啶结构化合物,并且可以从数据中得出一些构效关系。我们的数据表明,[3H]B9209-005对光亲和标记的抑制是一种用于测量化学增敏化合物与P-糖蛋白的相互作用及其效力的有价值且可靠的系统。此外,在该测试系统中获得的数据非常适合研究化学增敏剂在P-糖蛋白上的构效关系。此外,还可以鉴定出P-糖蛋白介导的多药耐药性背后的细胞抑制剂。

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