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胞质 5'-核苷酸酶 III 和核苷三磷酸二磷酸水解酶 1 使吉西他滨和恩曲他滨的药理学活性代谢物去磷酸化。

Cytosolic 5'-Nucleotidase III and Nucleoside Triphosphate Diphosphohydrolase 1 Dephosphorylate the Pharmacologically Active Metabolites of Gemcitabine and Emtricitabine.

机构信息

Department of Chemistry and Biochemistry, University of Maryland, Baltimore County, Baltimore, Maryland (N.R.P., H.K.S.); and Department of Cell Biology (C.T.I., P.J.E.) and Department of Oncology (P.J.E.), The Johns Hopkins University School of Medicine, Baltimore, Maryland.

Department of Chemistry and Biochemistry, University of Maryland, Baltimore County, Baltimore, Maryland (N.R.P., H.K.S.); and Department of Cell Biology (C.T.I., P.J.E.) and Department of Oncology (P.J.E.), The Johns Hopkins University School of Medicine, Baltimore, Maryland

出版信息

Drug Metab Dispos. 2024 Mar 13;52(4):288-295. doi: 10.1124/dmd.123.001508.

Abstract

Gemcitabine (dFdC) and emtricitabine (FTC) are first-line drugs that are used for the treatment of pancreatic cancer and human immunodeficiency virus, respectively. The above drugs must undergo sequential phosphorylation to become pharmacologically active. Interindividual variability associated with the responses of the above drugs has been reported. The molecular mechanisms underlying the observed variability are yet to be elucidated. Although this could be multifactorial, nucleotidases may be involved in the dephosphorylation of drug metabolites due to their structural similarity to endogenous nucleosides. With these in mind, we performed in vitro assays using recombinant nucleotidases to assess their enzymatic activities toward the metabolites of dFdC and FTC. From the above in vitro experiments, we noticed the dephosphorylation of dFdC-monophosphate in the presence of two 5'-nucleotidases (5'-NTs), cytosolic 5'-nucleotidase IA (NT5C1A) and cytosolic 5'-nucleotidase III (NT5C3), individually. Interestingly, FTC monophosphate was dephosphorylated only in the presence of NT5C3 enzyme. Additionally, nucleoside triphosphate diphosphohydrolase 1 (NTPDase 1) exhibited enzymatic activity toward both triphosphate metabolites of dFdC and FTC. Enzyme kinetic analysis further revealed Michaelis-Menten kinetics for both NT5C3-mediated dephosphorylation of monophosphate metabolites, as well as NTPDase 1-mediated dephosphorylation of triphosphate metabolites. Immunoblotting results confirmed the presence of NT5C3 and NTPDase 1 in both pancreatic and colorectal tissue that are target sites for dFdC and FTC treatment, respectively. Furthermore, sex-specific expression patterns of NT5C3 and NTPDase 1 were determined using mass spectrometry-based proteomics approach. Based on the above results, NT5C3 and NTPDase 1 may function in the control of the levels of dFdC and FTC metabolites. SIGNIFICANCE STATEMENT: Emtricitabine and gemcitabine are commonly used drugs for the treatment of human immunodeficiency virus and pancreatic cancer. To become pharmacologically active, both the above drugs must be phosphorylated. The variability in the responses of the above drugs can lead to poor clinical outcomes. Although the sources of drug metabolite concentration variability are multifactorial, it is vital to understand the role of nucleotidases in the tissue disposition of the above drug metabolites due to their structural similarities to endogenous nucleosides.

摘要

阿糖胞苷(dFdC)和恩曲他滨(FTC)分别是治疗胰腺癌和人类免疫缺陷病毒的一线药物。上述药物必须经过顺序磷酸化才能具有药理活性。已报道了与上述药物反应相关的个体间变异性。观察到的变异性的分子机制尚待阐明。尽管这可能是多因素的,但由于核苷酸酶与内源性核苷结构相似,它们可能参与了药物代谢物的去磷酸化。考虑到这一点,我们使用重组核苷酸酶进行了体外测定,以评估它们对 dFdC 和 FTC 代谢物的酶活性。从上述体外实验中,我们注意到在两种 5'-核苷酸酶(5'-NTs),细胞质 5'-核苷酸酶 IA(NT5C1A)和细胞质 5'-核苷酸酶 III(NT5C3)的存在下,dFdC-单磷酸的去磷酸化。有趣的是,仅在存在 NT5C3 酶的情况下,FTC 单磷酸被去磷酸化。此外,核苷三磷酸二磷酸水解酶 1(NTPDase 1)对 dFdC 和 FTC 的三磷酸代谢物均表现出酶活性。酶动力学分析进一步揭示了 NT5C3 介导的单磷酸代谢物去磷酸化以及 NTPDase 1 介导的三磷酸代谢物去磷酸化的米氏动力学。免疫印迹结果证实,在分别是 dFdC 和 FTC 治疗靶部位的胰腺和结直肠组织中存在 NT5C3 和 NTPDase 1。此外,使用基于质谱的蛋白质组学方法确定了 NT5C3 和 NTPDase 1 的性别特异性表达模式。基于上述结果,NT5C3 和 NTPDase 1 可能在控制 dFdC 和 FTC 代谢物水平方面发挥作用。意义陈述:恩曲他滨和阿糖胞苷是治疗人类免疫缺陷病毒和胰腺癌的常用药物。为了具有药理活性,上述两种药物都必须磷酸化。上述药物反应的变异性可导致临床结局不佳。尽管药物代谢物浓度变异性的来源是多因素的,但由于核苷酸酶与内源性核苷结构相似,了解核苷酸酶在上述药物代谢物组织处置中的作用对于理解药物代谢物组织处置中的作用非常重要。

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