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以NCI-60细胞系为模型,研究叶酸途径酶基因多态性在基因表达和抗癌药物敏感性中的作用。

Involvement of gene polymorphisms of the folate pathway enzymes in gene expression and anticancer drug sensitivity using the NCI-60 panel as a model.

作者信息

Charasson Virginie, Hillaire-Buys Dominique, Solassol Isabelle, Laurand-Quancard Armelle, Pinguet Frédéric, Le Morvan Valérie, Robert Jacques

机构信息

Laboratoire de Pharmacologie et Toxicologie Clinique, Hôpital Lapeyronie et Université de Montpellier 1, 34295 Montpellier, France.

出版信息

Eur J Cancer. 2009 Sep;45(13):2391-401. doi: 10.1016/j.ejca.2009.05.013. Epub 2009 Jun 6.

Abstract

Folate, a vitamin of the B group involved in one-carbon group metabolism, plays an important role in DNA synthesis and methylation. Several polymorphisms in the genes involved in folate uptake and biotransformations have been shown to be associated to the risk of cancer and to anticancer drug response. We studied common polymorphisms in MTHFR (N(5,10)-methylene-tetrahydrofolate reductase), MTHFD1 (N(5,10)-methylene-tetrahydrofolate dehydrogenase), MTR (methionine synthetase) and SLC19A1 (reduced folate carrier) in the panel of 60 human tumour cell lines established by the NCI for anticancer drug screening and we tentatively associated these polymorphisms with gene expression and drug cytotoxicity as extracted from the public database of the Developmental Therapeutic Programme. We observed a consistent and highly significant association between the presence of the variant C allele of the A>C1298 polymorphism of MTHFR and the sensitivity to many anticancer drugs belonging to the classes of antifolates, antimetabolites, alkylating agents and, to a lesser extent, topoisomerase inhibitors. In contrast, the T variant allele of the C>T677 variation of MTHFR was rather associated to lower sensitivity of the cell lines towards anticancer drugs (alkylating agents, antifolates and antimetabolites) but with much lower effects than the A>C1298 variation. The polymorphisms of the other genes studied were not associated with differences in anticancer drug sensitivity, but the expression of the SLC19A1 gene was significantly correlated with the sensitivity to several drugs (antifolates, thiopurines, nitrosoureas, and DACH-platinum drugs). We concluded that the NCI-60 panel may constitute a good starting point for implementing clinical studies aimed at discovering and validating predictive genetic markers of drug efficacy and/or toxicity.

摘要

叶酸是一种参与一碳基团代谢的B族维生素,在DNA合成和甲基化过程中发挥重要作用。叶酸摄取和生物转化相关基因中的几种多态性已被证明与癌症风险和抗癌药物反应有关。我们研究了美国国立癌症研究所(NCI)为抗癌药物筛选建立的60种人类肿瘤细胞系中,亚甲基四氢叶酸还原酶(MTHFR)、亚甲基四氢叶酸脱氢酶(MTHFD1)、甲硫氨酸合成酶(MTR)和还原型叶酸载体(SLC19A1)的常见多态性,并根据发育治疗项目的公共数据库,初步将这些多态性与基因表达和药物细胞毒性联系起来。我们观察到,MTHFR基因A>C1298多态性的变异C等位基因的存在与许多属于抗叶酸类、抗代谢类、烷化剂类以及程度较轻的拓扑异构酶抑制剂类抗癌药物的敏感性之间存在一致且高度显著的关联。相比之下,MTHFR基因C>T677变异的T变异等位基因与细胞系对抗癌药物(烷化剂、抗叶酸类和抗代谢类)的较低敏感性相关,但影响程度远低于A>C1298变异。所研究的其他基因的多态性与抗癌药物敏感性差异无关,但SLC19A1基因的表达与对几种药物(抗叶酸类、硫嘌呤类、亚硝基脲类和二氨基环丁烷铂类药物)的敏感性显著相关。我们得出结论,NCI - 60细胞系可能是开展旨在发现和验证药物疗效和/或毒性预测性遗传标志物的临床研究的良好起点。

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