Department of Pharmacotherapy and Translational Research, Center for Pharmacogenomics, University of Florida, Gainesville, FL 32610, USA.
Department of Experimental and Clinical Pharmacology, University of Minnesota, Minneapolis, MN 55455, USA.
Genes (Basel). 2019 Apr 24;10(4):319. doi: 10.3390/genes10040319.
Nucleoside analog, cytarabine (ara-C) is the mainstay of acute myeloid leukemia (AML) chemotherapy. Cytarabine and other nucleoside analogs require activation to the triphosphate form (ara-CTP). Intracellular ara-CTP levels demonstrate significant inter-patient variation and have been related to therapeutic response in AML patients. Inter-patient variation in expression levels of drug transporters or enzymes involved in their activation or inactivation of cytarabine and other analogs is a prime mechanism contributing to development of drug resistance. Since microRNAs (miRNAs) are known to regulate gene-expression, the aim of this study was to identify miRNAs involved in regulation of messenger RNA expression levels of cytarabine pathway genes. We evaluated miRNA and gene-expression levels of cytarabine metabolic pathway genes in 8 AML cell lines and The Cancer Genome Atlas (TCGA) data base. Using correlation analysis and functional validation experiments, our data demonstrates that miR-34a-5p and miR-24-3p regulate DCK, an enzyme involved in activation of cytarabine and DCDT, an enzyme involved in metabolic inactivation of cytarabine expression, respectively. Further our results from gel shift assays confirmed binding of these mRNA-miRNA pairs. Our results show miRNA mediated regulation of gene expression levels of nucleoside metabolic pathway genes can impact interindividual variation in expression levels which in turn may influence treatment outcomes.
核苷类似物,阿糖胞苷(ara-C)是急性髓细胞白血病(AML)化疗的主要药物。阿糖胞苷和其他核苷类似物需要激活为三磷酸形式(ara-CTP)。细胞内 ara-CTP 水平显示出显著的个体间差异,并与 AML 患者的治疗反应相关。参与阿糖胞苷和其他类似物的激活或失活的药物转运体或酶的表达水平的个体间差异是导致药物耐药性发展的主要机制。由于已知 microRNAs(miRNAs)可调节基因表达,本研究的目的是鉴定参与调节阿糖胞苷途径基因信使 RNA 表达水平的 miRNAs。我们评估了 8 种 AML 细胞系和癌症基因组图谱(TCGA)数据库中阿糖胞苷代谢途径基因的 miRNA 和基因表达水平。通过相关分析和功能验证实验,我们的数据表明 miR-34a-5p 和 miR-24-3p 分别调节 DCK,一种参与阿糖胞苷激活的酶,和 DCDT,一种参与阿糖胞苷代谢失活的酶。此外,我们的凝胶迁移实验结果证实了这些 mRNA-miRNA 对的结合。我们的结果表明,miRNA 介导的核苷代谢途径基因表达水平的基因表达调控可能会影响个体间表达水平的个体间差异,进而可能影响治疗结果。