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Ecto-5′-Nucleotidase and Thiopurine Cellular Circulation: Association with Cytotoxicity

机译:Ecto-5-核苷酸酶和硫嘌呤细胞循环: 与细胞毒性有关

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摘要

Thiopurine drugs such as 6-mercaptopurine (6-MP) and 6-thioguanine (6-TG) are used to treat acute lymphoblastic leukemia of childhood. To test the hypothesis that variation in the expression of genes within the “thiopurine pathway” might influence 6-MP and 6-TG sensitivity, we generated basal gene expression profiles and IC50 values for both of these thiopurine drugs using a model system consisting of 194 Human Variation Panel lymphoblastoid cell lines. Association analysis showed that thiopurine S-methyltransferase, ecto-5′-nucleotidase (NT5E), and multidrug resistance protein 4 (ABCC4) expression were correlated with thiopurine cytotoxicity. Those observations suggested the possible existence of a “thiopurine cellular circulation” involving nucleotide efflux by ABCC4, hydrolysis of thiopurine nucleotide monophosphates outside of the cell by NT5E, and subsequent transport of thiopurine nucleosides back into the cell by nucleoside transporters. The existence of this cellular circulation was confirmed by a series of functional experiments performed with cultured cells stably or transiently transfected with ABCC4 and/or NT5E. Because of the central role of NT5E in this cellular circulation, the NT5E gene was resequenced using 287 DNA samples from three ethnic groups, with the identification of 68 single nucleotide polymorphisms (SNPs), 46 of which were novel. Several SNPs in the 5′-flanking region of NT5E were highly correlated with expression, rs9450278 having the lowest p value (p = 2.4 × 10−10, R = −0.376). The thiopurine cellular circulation and genetic polymorphisms for genes encoding the proteins involved should be incorporated into future studies of thiopurine drug therapy and effect.
机译:硫嘌呤类药物,例如6-巯基嘌呤(6-MP)和6-硫代鸟嘌呤(6-TG)用于治疗儿童急性淋巴细胞白血病。为了测试“硫嘌呤途径”内基因表达的变化可能影响6-MP和6-TG敏感性的假设,我们使用由194个分子组成的模型系统,生成了这两种硫嘌呤药物的基础基因表达谱和IC50值人类变异小组淋巴母细胞细胞系。关联分析表明,硫嘌呤S-甲基转移酶,ecto-5′-核苷酸酶(NT5E)和多药耐药蛋白4(ABCC4)的表达与硫嘌呤的细胞毒性有关。这些观察结果表明可能存在“硫嘌呤细胞循环”,涉及ABCC4的核苷酸外排,NT5E将硫嘌呤核苷酸的单磷酸水解到细胞外,以及随后通过核苷转运蛋白将硫嘌呤核苷转运回细胞。通过用ABCC4和/或NT5E稳定或瞬时转染的培养细胞进行的一系列功能实验证实了这种细胞循环的存在。由于NT5E在这种细胞循环中的核心作用,因此使用 来自三个种族的287个DNA样本,鉴定出68个 核苷酸多态性(SNP),其中46个是新颖的。中的几个SNP NT5E的5'侧翼区与 表达式,rs9450278具有最低的p值(p = 2.4×10 −10 ,R = -0.376)。硫嘌呤的细胞循环和遗传多态性 编码相关蛋白质的基因应纳入未来研究 硫嘌呤药物的治疗和效果。

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