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Molecular analysis of the multidrug transporter

机译:多药转运蛋白的分子分析

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摘要

The multidrug resistance gene product, P-glycoprotein or the multidrug transporter, confers multidrug resistance to cancer cells by maintaining intracellular levels of cytotoxic agents below a killing threshold. P-glycoprotein is located within the plasma membrane and is thought to act as an energy-dependent drug efflux pump. The multidrug transporter represents a member of the ATP-binding cassette superfamily of transporters (or traffic ATPases) and is composed of two highly homologous halves, each of which harbors a hydrophobic transmembrane domain and a hydrophilic ATP-binding fold. This review focuses on various biochemical and molecular genetic approaches used to analyze the structure, function, and mechanism of action of the multidrug transporter, whose most intriguing feature is its ability to interact with a large number of structurally and functionally different amphiphilic compounds. These studies have underscored the complexity of this membrane protein which has recently been suggested to assume alternative topological and quaternary structures, and to serve multiple functions both as a transporter and as a channel. With respect to the multidrug transporter activity of P-glycoprotein, progress has been made towards the elucidation of essential amino acid residues and/or polypeptide regions. Furthermore, the drug-stimulatable ATPase activity of P-glycoprotein has been established. The mechanism of drug transport by P-glycoprotein, however, is still unknown and its physiological role remains a matter of speculation.
机译:多药耐药基因产物P-糖蛋白或多药转运蛋白通过将细胞毒性剂的细胞内水平维持在杀伤阈值以下,从而赋予癌细胞多药耐药性。 P-糖蛋白位于质膜内,被认为是一种依赖能量的药物外排泵。多药转运蛋白代表转运蛋白(或运输ATP酶)的ATP结合盒超家族的成员,并且由两个高度同源的半部分组成,每个半部分都具有疏水性跨膜结构域和亲水性ATP结合折叠。这篇综述着重于用于分析多药转运蛋白的结构,功能和作用机理的各种生物化学和分子遗传学方法,其最吸引人的特点是其与大量结构和功能不同的两亲化合物相互作用的能力。这些研究强调了这种膜蛋白的复杂性,近来有人提出这种膜蛋白具有替代的拓扑结构和四级结构,并且既可以充当转运蛋白又可以充当通道。关于P-糖蛋白的多药转运蛋白活性,已经在阐明必需氨基酸残基和/或多肽区域方面取得了进展。此外,已经建立了P-糖蛋白的药物可刺激的ATP酶活性。然而,通过P-糖蛋白转运药物的机制仍是未知的,其生理作用仍是一个推测的问题。

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