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亲脂性阳离子:一类多药耐药转运蛋白的模型底物。

Lipophilic cations: a group of model substrates for the multidrug-resistance transporter.

作者信息

Gros P, Talbot F, Tang-Wai D, Bibi E, Kaback H R

机构信息

Department of Biochemistry, McGill University, Montreal, Canada.

出版信息

Biochemistry. 1992 Feb 25;31(7):1992-8. doi: 10.1021/bi00122a014.

Abstract

The possibility that simple lipophilic cations such as tetraphenylphosphonium (TPA+), triphenylmethylphosphonium (TPMP+), and diphenyldimethylphosphonium (DDP+) are substrates for the multidrug-resistance transport protein, P-glycoprotein, was tested. Hamster cells transfected with and overexpressing mouse mdr1 or mouse mdr3 exhibit high levels of resistance to TPP+ and TPA+ (20-fold) and somewhat lower levels of resistance to TPMP+ and DDP+ (3-12-fold). Transfected cell clones expressing mdr1 or mdr3 mutants with decreased activity against drugs of the MDR spectrum (e.g., Vinca alkaloids and anthracyclines) also show reduced resistance to lipophilic cations. Studies with radiolabeled TPP+ and TPA+ demonstrate that increased resistance to cytotoxic concentrations of these lipophilic cations is correlated quantitatively with a decrease in intracellular accumulation in mdr1- and mdr3-transfected cells. This decreased intracellular accumulation is shown to be strictly dependent on intact intracellular nucleotide triphosphate pools and is reversed by verapamil, a known competitive inhibitor of P-glycoprotein. Taken together, these results demonstrate that lipophilic cations are a new class of substrates for P-glycoprotein and can be used to study its mechanism of action in homologous and heterologous systems.

摘要

对诸如四苯基鏻(TPA+)、三苯甲基鏻(TPMP+)和二苯基二甲基鏻(DDP+)等简单亲脂性阳离子是否为多药耐药转运蛋白P-糖蛋白的底物进行了测试。转染并过表达小鼠mdr1或小鼠mdr3的仓鼠细胞对TPP+和TPA+表现出高水平的耐药性(20倍),而对TPMP+和DDP+的耐药性水平略低(3-12倍)。表达对MDR谱药物(如长春花生物碱和蒽环类药物)活性降低的mdr1或mdr3突变体的转染细胞克隆对亲脂性阳离子的耐药性也降低。对放射性标记的TPP+和TPA+的研究表明,对这些亲脂性阳离子细胞毒性浓度的耐药性增加与mdr1和mdr3转染细胞中细胞内积累的减少在数量上相关。这种细胞内积累的减少被证明严格依赖于完整的细胞内核苷三磷酸池,并被维拉帕米(一种已知的P-糖蛋白竞争性抑制剂)逆转。综上所述,这些结果表明亲脂性阳离子是P-糖蛋白的一类新底物,可用于研究其在同源和异源系统中的作用机制。

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