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哺乳动物易化型己糖转运蛋白在耐药性发展中的可能作用。

A possible role for a mammalian facilitative hexose transporter in the development of resistance to drugs.

作者信息

Vera J C, Castillo G R, Rosen O M

机构信息

Program in Molecular Biology, Memorial Sloan Kettering Cancer Research Center, New York, New York 10021.

出版信息

Mol Cell Biol. 1991 Jul;11(7):3407-18. doi: 10.1128/mcb.11.7.3407-3418.1991.

Abstract

We show that D- but not L-hexoses modulate the accumulation of radioactive vinblastine in injected Xenopus laevis oocytes expressing the murine Mdr1b P-glycoprotein. We also show that X. laevis oocytes injected with RNA encoding the rat erythroid/brain glucose transport protein (GLUT1) and expressing the corresponding functional transporter exhibit a lower accumulation of [3H]vinblastine and show a greater capacity to extrude the drug than do control oocytes not expressing the rat GLUT1 protein. Cytochalasin B and phloretin, two inhibitors of the mammalian facilitative glucose transporters, can overcome the reduced drug accumulation conferred by expression of the rat GLUT1 protein in Xenopus oocytes but have no significant effect on the accumulation of drug by Xenopus oocytes expressing the mouse Mdr1b P-glycoprotein. These drugs also increase the accumulation of [3H]vinblastine in multidrug-resistant Chinese hamster ovary cells. Cytochalasin E, an analog of cytochalasin B that does not affect the activity of the facilitative glucose transporter, has no effect on the accumulation of vinblastine by multidrug-resistant Chinese hamster cells or by oocytes expressing either the mouse Mdr1b P-glycoprotein or the GLUT1 protein. In all three cases, the drug verapamil produces a profound effect on the cellular accumulation of vinblastine. Interestingly, although immunological analysis indicated the presence of massive amounts of P-glycoprotein in the multidrug-resistant cells, immunological and functional studies revealed only a minor increase in the expression of a hexose transporter-like protein in resistant versus drug-sensitive cells. Taken together, these results suggest the participation of the mammalian facilitative glucose transporter in the development of drug resistance.

摘要

我们发现,D-己糖而非L-己糖可调节放射性长春碱在注射了表达小鼠Mdr1b P-糖蛋白的非洲爪蟾卵母细胞中的蓄积。我们还发现,注射了编码大鼠红细胞/脑葡萄糖转运蛋白(GLUT1)的RNA并表达相应功能性转运蛋白的非洲爪蟾卵母细胞,与未表达大鼠GLUT1蛋白的对照卵母细胞相比,[3H]长春碱的蓄积量更低,且排出药物的能力更强。细胞松弛素B和根皮素是哺乳动物易化葡萄糖转运蛋白的两种抑制剂,它们可克服非洲爪蟾卵母细胞中因表达大鼠GLUT1蛋白而导致的药物蓄积减少,但对表达小鼠Mdr1b P-糖蛋白的非洲爪蟾卵母细胞的药物蓄积没有显著影响。这些药物还可增加多药耐药中国仓鼠卵巢细胞中[3H]长春碱的蓄积。细胞松弛素E是细胞松弛素B的类似物,不影响易化葡萄糖转运蛋白的活性,对多药耐药中国仓鼠细胞或表达小鼠Mdr1b P-糖蛋白或GLUT1蛋白的卵母细胞的长春碱蓄积没有影响。在所有这三种情况下,药物维拉帕米对长春碱的细胞蓄积都有深远影响。有趣的是,尽管免疫分析表明多药耐药细胞中存在大量P-糖蛋白,但免疫和功能研究显示,与药物敏感细胞相比,耐药细胞中类似己糖转运蛋白的蛋白表达仅略有增加。综上所述,这些结果表明哺乳动物易化葡萄糖转运蛋白参与了耐药性的形成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/57b5/361066/9df4c71694d4/molcellb00031-0026-a.jpg

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