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由一系列调节多药耐药性的利血平类似物所定义的P-糖蛋白药效基团的基本特征。

Essential features of the P-glycoprotein pharmacophore as defined by a series of reserpine analogs that modulate multidrug resistance.

作者信息

Pearce H L, Safa A R, Bach N J, Winter M A, Cirtain M C, Beck W T

机构信息

Lilly Research Laboratories, Eli Lilly and Co., Indianapolis, IN 46285.

出版信息

Proc Natl Acad Sci U S A. 1989 Jul;86(13):5128-32. doi: 10.1073/pnas.86.13.5128.

Abstract

We have shown previously that reserpine is an effective "modulator" of P-glycoprotein-associated multidrug resistance (MDR). In addition to enhancing drug cytotoxicity in our multidrug-resistant human leukemia cell line, CEM/VLB100, reserpine strongly competes with a photoactivatible analog of vinblastine, N-(p-azido-3-[125I]iodosalicyl)-N'-(beta-aminoethyl)vindesine, for binding to P-glycoprotein. We also demonstrated previously that there are three substructural domains present in many compounds that modulate P-glycoprotein-associated MDR: a basic nitrogen atom and two planar aromatic rings. In the present study, we wished to test more rigorously the hypothesis that not only are these domains necessary for modulators of MDR but also they must exist in an appropriate conformation. Reserpine is a modulator of MDR in which these domains are present in a well-defined conformation. Accordingly, we prepared eight compounds that vary the spatial orientation of these domains, using either naturally occurring reserpine or yohimbine as chemical templates. When tested for their ability to enhance the cytotoxic activity of natural product antitumor drugs in CEM/VLB100 cells, five compounds that retained the pendant benzoyl function in an appropriate spatial orientation all modulated MDR. By contrast, compounds lacking this moiety failed to do so. These active modulators competed strongly with the 125I-labeled vinblastine analog for binding to P-glycoprotein in plasma membrane vesicles prepared from these cells. Conformational analysis using molecular mechanics revealed the structural similarities of the active modulators. Our results support the hypothesis that the relative disposition of aromatic rings and basic nitrogen atom is important for modulators of P-glycoprotein-associated MDR, and they suggest a ligand-receptor relationship for these agents. These results also provide direction for the definition of an MDR "pharmacophore."

摘要

我们之前已经表明,利血平是P-糖蛋白相关多药耐药性(MDR)的有效“调节剂”。除了增强我们的多药耐药人白血病细胞系CEM/VLB100中的药物细胞毒性外,利血平还与长春碱的光活化类似物N-(对叠氮基-3-[125I]碘水杨酸基)-N'-(β-氨基乙基)长春地辛强烈竞争,以结合P-糖蛋白。我们之前还证明,许多调节P-糖蛋白相关MDR的化合物中存在三个亚结构域:一个碱性氮原子和两个平面芳香环。在本研究中,我们希望更严格地检验这一假设,即这些结构域不仅是MDR调节剂所必需的,而且它们必须以适当的构象存在。利血平是一种MDR调节剂,其中这些结构域以明确的构象存在。因此,我们以天然存在的利血平或育亨宾为化学模板,制备了八种改变这些结构域空间取向的化合物。当测试它们增强天然产物抗肿瘤药物在CEM/VLB100细胞中的细胞毒性活性的能力时,五种在适当空间取向上保留侧链苯甲酰功能的化合物均调节了MDR。相比之下,缺乏该部分的化合物则不能。这些活性调节剂与125I标记的长春碱类似物在从这些细胞制备的质膜囊泡中结合P-糖蛋白时存在强烈竞争。使用分子力学进行的构象分析揭示了活性调节剂的结构相似性。我们的结果支持这一假设,即芳香环和碱性氮原子的相对位置对于P-糖蛋白相关MDR的调节剂很重要,并且它们表明了这些药物的配体-受体关系。这些结果也为定义MDR“药效团”提供了方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/09e9/297570/d5f4015a5a10/pnas00280-0336-a.jpg

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