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首页> 外文期刊>Biochemistry >The membrane lipid environment modulates drug interactions with the P-glycoprotein multidrug transporter.
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The membrane lipid environment modulates drug interactions with the P-glycoprotein multidrug transporter.

机译:膜脂质环境调节药物与P-糖蛋白多药转运蛋白的相互作用。

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摘要

The P-glycoprotein multidrug transporter functions as an ATP-driven efflux pump for a large number of structurally unrelated hydrophobic compounds. Substrates are believed to gain access to the transporter after partitioning into the membrane, rather than from the extracellular aqueous phase. The binding of drug substrates to P-glycoprotein may thus be modulated by the properties of the lipid bilayer. The interactions with P-glycoprotein of two drugs (vinblastine and daunorubicin) and a chemosensitizer (verapamil) were characterized by quenching of purified fluorescently labeled protein in the presence of various phospholipids. Biphasic quench curves were observed for vinblastine and verapamil, suggesting that more than one molecule of these compounds may bind to the transporter simultaneously. All three drugs bound to P-glycoprotein with substantially higher affinity in egg phosphatidylcholine (PC), compared to brain phosphatidylserine (PS) and egg phosphatidylethanolamine (PE). The nature of the lipid acyl chains also modulated binding, with affinity decreasing in the order egg PC > dimyristoyl-PC (DMPC) > dipalmitoyl-PC (DPPC). Following reconstitution of the transporter into DMPC, all three compounds bound to P-glycoprotein with 2-4-fold higher affinity in gel phase lipid relative to liquid-crystalline phase lipid. The P-glycoprotein ATPase stimulation/inhibition profiles for the drugs were also altered in different lipids, in a manner consistent with the observed changes in binding affinity. The ability of the drugs to partition into bilayers of phosphatidylcholines was determined. All of the drugs partitioned much better into egg PC relative to DMPC and DPPC. The binding affinity increased (i.e., the value of Kd decreased) as the drug-lipid partition coefficient increased, supporting the proposal that the effective concentration of the drug substrate in the membrane is important for interaction with the transporter. These results provide support for the vacuum cleaner model of P-glycoprotein action.
机译:P-糖蛋白多药转运蛋白可作为ATP驱动的外排泵,用于大量与结构无关的疏水性化合物。据信底物在分配入膜后而不是从细胞外水相进入转运蛋白。药物底物与P-糖蛋白的结合因此可以通过脂质双层的性质来调节。两种药物(长春碱和柔红霉素)和化学增敏剂(维拉帕米)与P-糖蛋白的相互作用通过在各种磷脂存在下淬灭纯化的荧光标记蛋白来表征。观察到长春碱和维拉帕米的双相猝灭曲线,表明这些化合物的一个以上分子可能同时结合到转运蛋白上。与脑磷脂酰丝氨酸(PS)和卵磷脂酰乙醇胺(PE)相比,所有这三种药物在卵磷脂酰胆碱(PC)中均以更高的亲和力与P-糖蛋白结合。脂质酰基链的性质也调节结合,亲和力以卵PC>二肉豆蔻酰基-PC(DMPC)>二棕榈酰-PC(DPPC)的顺序降低。在将转运蛋白重构为DMPC后,所有三种化合物以相对于液晶相脂质在凝胶相脂质中的亲和力高2-4倍的方式结合于P-糖蛋白。药物的P-糖蛋白ATPase刺激/抑制特性在不同脂质中也发生了变化,其方式与观察到的结合亲和力变化相一致。确定了药物分配到磷脂酰胆碱双层中的能力。相对于DMPC和DPPC,所有药物在鸡蛋PC中的分配效果都更好。随着药物-脂质分配系数的增加,结合亲和力增加(即,Kd值降低),支持了膜中药物底物的有效浓度对于与转运蛋白相互作用很重要的建议。这些结果为P-糖蛋白作用的真空吸尘器模型提供了支持。

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