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调节P-糖蛋白相关多药耐药性的化合物的结构特征。

Structural characteristics of compounds that modulate P-glycoprotein-associated multidrug resistance.

作者信息

Pearce H L, Winter M A, Beck W T

机构信息

Lilly Research Laboratories, Indianapolis, Indiana.

出版信息

Adv Enzyme Regul. 1990;30:357-73. doi: 10.1016/0065-2571(90)90026-x.

Abstract

Multidrug resistance is mediated by a membrane-bound protein, P-gp, that functions as an energy dependent efflux system to reduce the intracellular concentration of anticancer drugs by binding to these drugs and actively exporting them from the cell. Compounds that interact with P-gp and compete with anticancer drug binding modulate the degree of drug resistance and therefore enhance the cytotoxicity of anticancer drugs against the resistant cell. Effective modulators share certain physical and chemical properties including octanol/water partitioning and molecular size, but the physical properties of size and shape seem to correlate best with modulator effectiveness. Using a photoactivatable analog of vinblastine as a probe, together with a semi-synthetic series of structurally homologous reserpine and yohimbine analogs, the need for two planar aromatic domains and a basic nitrogen atom was established within the structural context of these compounds. The use of three-dimensional comparisons was extended to examine important structural features in other modulator types such as the condensed-ring aromatics. This approach indicates that structural similarities between different classes of compounds are present in compounds recognized by the MDR phenotype. These studies emphasize the importance of a ligand-receptor relationship for modulators of MDR, and begin to define the P-gp-binding pharmacophore. It is likely that this approach will be useful in directing the de novo synthesis of compounds that modulate MDR and help to further define the requirements for molecular recognition by this system.

摘要

多药耐药性由一种膜结合蛋白P-糖蛋白介导,该蛋白作为一种能量依赖的外排系统,通过与抗癌药物结合并将其主动转运出细胞来降低细胞内抗癌药物的浓度。与P-糖蛋白相互作用并与抗癌药物结合竞争的化合物可调节耐药程度,从而增强抗癌药物对耐药细胞的细胞毒性。有效的调节剂具有某些物理和化学性质,包括辛醇/水分配系数和分子大小,但大小和形状的物理性质似乎与调节剂的有效性相关性最佳。使用长春碱的光活化类似物作为探针,以及一系列半合成的结构同源的利血平和育亨宾类似物,在这些化合物的结构背景下确定了两个平面芳香域和一个碱性氮原子的必要性。三维比较的应用扩展到检查其他调节剂类型(如稠环芳烃)中的重要结构特征。这种方法表明,在被多药耐药表型识别的化合物中存在不同类化合物之间的结构相似性。这些研究强调了配体-受体关系对多药耐药调节剂的重要性,并开始定义P-糖蛋白结合药效团。这种方法可能有助于指导调节多药耐药的化合物的从头合成,并有助于进一步确定该系统分子识别的要求。

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