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B9209 - 005,化学增敏剂盐酸右尼群地平的叠氮衍生物,可对P - 糖蛋白进行光标记。

B9209-005, an azido derivative of the chemosensitizer dexniguldipine-HCl, photolabels P-glycoprotein.

作者信息

Borchers C, Ulrich W R, Klemm K, Ise W, Gekeler V, Haas S, Schödl A, Conrad J, Przybylski M, Boer R

机构信息

Fakultät für Chemie, Universität Konstanz, Germany.

出版信息

Mol Pharmacol. 1995 Jul;48(1):21-9.

PMID:7623771
Abstract

P-glycoprotein is an energy-dependent drug extrusion pump for a variety of anticancer drugs and is involved in the development of multidrug resistance in cancer. Dexniguldipine-HCl is a potent chemosensitizer for P-glycoprotein-mediated multidrug resistance in vitro, and clinical phase I/II trials are underway. To investigate the mechanisms of chemosensitization and to identify the binding sites for dexniguldipine-HCl on target proteins involved in chemosensitization, [3H]B9209-005, an azido derivative of dexniguldipine-HCl, was synthesized and used as a photoaffinity ligand. In two models of multidrug resistance reversal, i.e., sensitization to vincristine and modulation of rhodamine-123 uptake, B9209-005 and dexniguldipine-HCl showed identical biological activities. Photoaffinity labeling experiments with [3H]B9209-005 in cell membranes from multidrug-resistant CCRF ADR-5000 cells, in comparison with labeling experiments with [3H]azidopine (an established photoaffinity ligand for P-glycoprotein), showed that [3H]B9209-005 labeled two proteins, with apparent molecular masses of 170 and 95 kDa. The pharmacological specificity of labeling was demonstrated by inhibition of photoincorporation by several cytostatic drugs transported by P-glycoprotein, as well as by chemosensitizers. Immunoprecipitation of the labeled proteins with the P-glycoprotein-specific monoclonal antibody C 219 and with a site-directed polyclonal antibody to the amino-terminal sequence of P-glycoprotein (amino acids 389-406) identified these proteins as intact P-glycoprotein and the amino-terminal fragment thereof. No specific labeling was obtained in the drug-sensitive parent cell line CCRF-CEM, which is devoid of significant P-glycoprotein expression. Maximal labeling of 17 pmol of the 170-kDa protein/mg of crude membrane protein was obtained. The affinity of [3H]B9209-005 for binding to and photoincorporation into P-glycoprotein was 5-fold greater than that of [3H]azidopine, and photoincorporation of [3H]B9209-005 showed a different photoincorporation pattern, compared with [3H]azidopine, in that the latter compound was incorporated specifically into the carboxyl-terminal 55-kDa fragment of P-glycoprotein. In contrast to [3H]azidopine, no specific labeling of this fragment was obtained with [3H]B9209-005, indicating different binding sites for or different photoincorporation of the two dihydropyridine ligands. Because B9209-005 carries the photoreactive azido group in the dihydropyridine moiety, whereas the azido group of azidopine is located in the side chain, these results suggest that the dihydropyridine moiety of the two compounds probably interacts with the amino-terminal part of P-glycoprotein, whereas the side chains react preferentially with the carboxyl-terminal 55-kDa fragment.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

P-糖蛋白是一种能量依赖性药物外排泵,可作用于多种抗癌药物,并参与癌症多药耐药性的产生。盐酸右尼群地平是一种有效的化学增敏剂,可在体外克服P-糖蛋白介导的多药耐药性,目前正在进行I/II期临床试验。为了研究化学增敏的机制,并确定盐酸右尼群地平在参与化学增敏的靶蛋白上的结合位点,合成了盐酸右尼群地平的叠氮衍生物[3H]B9209-005,并将其用作光亲和配体。在两种多药耐药逆转模型中,即对长春新碱的增敏作用和罗丹明-123摄取的调节作用,B9209-005和盐酸右尼群地平表现出相同的生物学活性。与[3H]叠氮平(一种已确立的P-糖蛋白光亲和配体)标记实验相比,用[3H]B9209-005对多药耐药的CCRF ADR-5000细胞膜进行光亲和标记实验表明,[3H]B9209-005标记了两种蛋白质,其表观分子量分别为170 kDa和95 kDa。通过P-糖蛋白转运的几种细胞生长抑制剂以及化学增敏剂对光掺入的抑制作用,证明了标记的药理学特异性。用P-糖蛋白特异性单克隆抗体C 219和针对P-糖蛋白氨基末端序列(氨基酸389-406)的定点多克隆抗体对标记蛋白进行免疫沉淀,确定这些蛋白为完整的P-糖蛋白及其氨基末端片段。在对药物敏感的亲本细胞系CCRF-CEM中未获得特异性标记,该细胞系缺乏显著的P-糖蛋白表达。获得的最大标记量为17 pmol的170-kDa蛋白/mg粗膜蛋白。[3H]B9209-005与P-糖蛋白结合并光掺入的亲和力比[3H]叠氮平高5倍,并且与[3H]叠氮平相比,[3H]B9209-005的光掺入模式不同,因为后者化合物特异性掺入P-糖蛋白的羧基末端55-kDa片段。与[3H]叠氮平相反,[3H]B9209-005未获得该片段的特异性标记,表明两种二氢吡啶配体的结合位点不同或光掺入不同。由于B9209-005在二氢吡啶部分带有光反应性叠氮基团,而叠氮平的叠氮基团位于侧链中,这些结果表明两种化合物的二氢吡啶部分可能与P-糖蛋白的氨基末端部分相互作用,而侧链则优先与羧基末端55-kDa片段反应。(摘要截短至400字)

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