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多药耐药人类细胞中交叉耐药模式的改变是由mdr1(P-糖蛋白)基因的自发突变引起的。

An altered pattern of cross-resistance in multidrug-resistant human cells results from spontaneous mutations in the mdr1 (P-glycoprotein) gene.

作者信息

Choi K H, Chen C J, Kriegler M, Roninson I B

机构信息

Department of Genetics, University of Illinois, Chicago 60612.

出版信息

Cell. 1988 May 20;53(4):519-29. doi: 10.1016/0092-8674(88)90568-5.

Abstract

Multidrug resistance in human cells results from increased expression of the mdr1 (P-glycoprotein) gene. Although the same gene is activated in cells selected with different drugs, multidrug-resistant cell lines can be preferentially resistant to their selecting agent. The mdr1 cDNA sequence from vinblastine-selected KB cells, which are uniformly resistant to different lipophilic drugs, was compared with the corresponding sequence from colchicine-selected KB cells preferentially resistant to colchicine. These sequences differ at three positions, resulting in a single amino acid change in P-glycoprotein. These differences result from mutations that occurred during colchicine selection. The appearance of these mutations coincides with the emergence of preferential resistance to colchicine. We have constructed biologically active mdr1 cDNA clones that express either wild-type or mutant P-glycoprotein. Multi-drug-resistant transfectants obtained with the mutant sequence were characterized by increased relative resistance to colchicine compared with transfectants obtained with wild-type sequence. mdr1 mutations are therefore responsible for preferential resistance to colchicine in multidrug-resistant KB cells.

摘要

人类细胞中的多药耐药性是由mdr1(P-糖蛋白)基因表达增加所致。尽管在用不同药物筛选的细胞中该相同基因被激活,但多药耐药细胞系可能对其筛选剂具有优先抗性。将来自长春花碱筛选的KB细胞(对不同亲脂性药物均有抗性)的mdr1 cDNA序列与来自秋水仙碱筛选的优先对秋水仙碱有抗性的KB细胞的相应序列进行比较。这些序列在三个位置存在差异,导致P-糖蛋白中出现一个氨基酸变化。这些差异源于秋水仙碱筛选过程中发生的突变。这些突变的出现与对秋水仙碱优先抗性的出现相吻合。我们构建了表达野生型或突变型P-糖蛋白的具有生物活性的mdr1 cDNA克隆。与用野生型序列获得的转染子相比,用突变序列获得的多药耐药转染子表现出对秋水仙碱相对抗性增加。因此,mdr1突变是多药耐药KB细胞对秋水仙碱优先抗性的原因。

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