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吩噻嗪对小鼠淋巴瘤细胞多药耐药性的逆转作用

Reversal of multidrug resistance in mouse lymphoma cells by phenothiazines.

作者信息

Molnar Joseph, Molnar Annamaria, Mucsi Ilona, Pinter Oliver, Nagy Beatrix, Varga Andreas, Motohashi Noboru

机构信息

Department of Microbiology, Albert Szent-Györgyi Medical University, Szeged, Hungary.

出版信息

In Vivo. 2003 Mar-Apr;17(2):145-9.

Abstract

Various compounds were tested with regard to their reversal of multidrug resistance (MDR) in mouse tumor cells transfected with the human MDR1 gene. Phenothiazines containing aromatic moieties were bound through stacking interaction involving the polarization of the aromatic aminoacid substituents at the target site of p-glycoprotein (Pgp) 170, as a consequence of their large dipoles (as in the binding of phenothiazine to calmodulin-like structures). Acting as a calcium channel blocker, verapamil may induce conformational changes in the calcium channel-like structures of the transmembrane regions of Pgp. Most probably the tyrosine moieties of Pgp are involved in the action of verapamil and phenothiazines. Tomato lectin specifically binds to the polylactosamine moiety of Pgp170 at the first loop of Pgp. Other targets in the membrane may exist in close proximity to Pgp170, such as conA-reactive glycoproteins with terminal mannosyl residues. WGA-reactive N-acetyl glucosamine residues can also be modified resulting in conformational changes in trans-membrane regions of the ABC transporter. Our results demonstrate that MDR can be reversed by interaction of various compounds with Pgp or by modification of the membrane structure around the Pgp.

摘要

针对多种化合物对转染了人类MDR1基因的小鼠肿瘤细胞中多药耐药性(MDR)的逆转作用进行了测试。含有芳香基团的吩噻嗪类化合物通过堆积相互作用结合,这种相互作用涉及到P -糖蛋白(Pgp)170靶点处芳香族氨基酸取代基的极化,这是由于它们具有较大的偶极矩(如同吩噻嗪与钙调蛋白样结构的结合)。作为一种钙通道阻滞剂,维拉帕米可能会诱导Pgp跨膜区域的钙通道样结构发生构象变化。最有可能的是,Pgp的酪氨酸基团参与了维拉帕米和吩噻嗪类化合物的作用。番茄凝集素特异性结合Pgp170在Pgp第一个环上的聚乳糖胺部分。膜中的其他靶点可能与Pgp170紧密相邻,例如带有末端甘露糖基残基的刀豆蛋白A反应性糖蛋白。小麦胚凝集素(WGA)反应性的N -乙酰葡糖胺残基也可能被修饰,从而导致ABC转运蛋白跨膜区域的构象变化。我们的结果表明,多种化合物与Pgp的相互作用或Pgp周围膜结构的修饰可以逆转MDR。

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