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对C2-去氨基-C2-甲基-N10-炔丙基-5,8-二去氮叶酸获得抗性的人淋巴母细胞:一种新型的基于叶酸的胸苷酸合成酶抑制剂。

Human lymphoblastoid cells with acquired resistance to C2-desamino-C2-methyl-N10-propargyl-5,8-dideazafolic acid: a novel folate-based thymidylate synthase inhibitor.

作者信息

O'Connor B M, Jackman A L, Crossley P H, Freemantle S E, Lunec J, Calvert A H

机构信息

Institute of Cancer Research, Drug Development Section, Sutton, Surrey, England.

出版信息

Cancer Res. 1992 Mar 1;52(5):1137-43.

PMID:1737372
Abstract

We describe the characterization of human lymphoblastoid cell lines with acquired resistance (greater than 20,000-fold) to a novel folate-based thymidylate synthase (TS) (EC 2.1.1.45) inhibitor, C2-desamino-C2-methyl-N10-propargyl-5,8-dideazafolic acid (ICI198583). This acquired resistance was associated with a 64-fold amplification of the TS gene, a similar elevation in the corresponding mRNA, and an approximately 200-fold increase in both TS activity and TS protein. This amplification was maintained when the cells were grown in the absence of the selective agent, ICI198583, for 340 generations. TS isolated from one of the resistant cell lines, W1-L2:C1, displayed inhibition kinetic parameters similar to those of TS isolated from the parent W1-L2 cell line. It thus appears unlikely that resistance is due to an altered TS enzyme having a lower affinity for ICI198583. The resistant cell line, W1-L2:C1, was cross-resistant to other folate-based TS inhibitors but was as sensitive as the parent cell line, W1-L2, to 5-fluorodeoxyuridine. The W1-L2:C1 cell line was collaterally sensitive to the classical dihydrofolate reductase (EC 1.5.1.3) inhibitor methotrexate as well as to the lipophilic dihydrofolate reductase inhibitors metoprine and 2,4-diamino-5-methyl-6-[(3,4,5-trimethoxyanilino)methyl]quinazolin e glucuronic acid salt (also called trimetrexate). When the W1-L2 and W1-L2:C1 cell lines were exposed to 1 microM ICI198583 for 24 h they accumulated the same concentration of total cellular ICI198583 polyglutamates despite the fact that the latter cell line accumulated a 300-fold greater concentration of ICI198583 monoglutamate. As polyglutamates, the tetra- and pentaglutamate forms predominated in the W1-L2 cell line, whereas the diglutamate form predominated in the W1-L2:C1 cell line, with few higher polyglutamates being detected. The lack of tri- and higher polyglutamates of ICI198583 (i.e., the more active species) in the W1-L2:C1 cell line may also contribute to the observed resistance. These findings may have important implications in light of the rapid onset of resistance to antifolates in the clinic.

摘要

我们描述了对一种新型基于叶酸的胸苷酸合成酶(TS)(EC 2.1.1.45)抑制剂C2-脱氨基-C2-甲基-N10-炔丙基-5,8-二氮杂叶酸(ICI198583)具有获得性抗性(大于20000倍)的人淋巴母细胞系的特征。这种获得性抗性与TS基因64倍的扩增、相应mRNA的类似升高以及TS活性和TS蛋白大约200倍的增加有关。当细胞在没有选择剂ICI198583的情况下生长340代时,这种扩增得以维持。从一个抗性细胞系W1-L2:C1中分离的TS显示出与从亲本W1-L2细胞系中分离的TS相似的抑制动力学参数。因此,抗性似乎不太可能是由于TS酶对ICI198583的亲和力降低所致。抗性细胞系W1-L2:C1对其他基于叶酸的TS抑制剂具有交叉抗性,但对5-氟脱氧尿苷的敏感性与亲本细胞系W1-L2相同。W1-L2:C1细胞系对经典的二氢叶酸还原酶(EC 1.5.1.3)抑制剂甲氨蝶呤以及亲脂性二氢叶酸还原酶抑制剂美托普林和2,4-二氨基-5-甲基-6-[(3,4,5-三甲氧基苯胺基)甲基]喹唑啉葡糖酸盐(也称为三甲曲沙)具有协同敏感性。当W1-L2和W1-L2:C1细胞系暴露于1 microM ICI198583 24小时时,尽管后者细胞系积累的ICI198583单谷氨酸盐浓度高300倍,但它们积累的总细胞ICI198583多谷氨酸盐浓度相同。作为多谷氨酸盐,四聚和五聚谷氨酸形式在W1-L2细胞系中占主导,而二聚谷氨酸形式在W1-L2:C1细胞系中占主导,几乎检测不到更高的多谷氨酸盐。W1-L2:C1细胞系中缺乏ICI198583的三聚和更高多谷氨酸盐(即更具活性的物种)也可能导致观察到的抗性。鉴于临床上抗叶酸药物抗性的快速出现,这些发现可能具有重要意义。

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