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吉西他滨的脱氨代谢物 2',2'-二氟脱氧尿苷通过脱氧胞苷激酶调节吉西他滨的转运和细胞内磷酸化速度。

The deaminated metabolite of gemcitabine, 2',2'-difluorodeoxyuridine, modulates the rate of gemcitabine transport and intracellular phosphorylation via deoxycytidine kinase.

机构信息

Department of Experimental and Clinical Pharmacology, University of Minnesota, Minneapolis, Minnesota, USA.

出版信息

Drug Metab Dispos. 2011 Nov;39(11):2013-6. doi: 10.1124/dmd.111.040790. Epub 2011 Aug 10.

Abstract

Gemcitabine (dFdC) is a chemotherapeutic nucleoside analog that undergoes uptake via equilibrative nucleoside transporters (hENT) followed by sequential phosphorylation to the active triphosphate moiety (dFdCTP). Its deaminated metabolite, 2',2'-difluorodeoxyuridine (dFdU), competes with the parent compound for cellular entry via hENTs, but over time dFdU increases the net intracellular accumulation of dFdC by a currently unknown mechanism. In this study, we investigated whether dFdU affects intracellular phosphorylation of gemcitabine by modulating the activity of deoxycytidine kinase (dCK). We report here that coincubation of dFdU with dFdC significantly increases intracellular levels of dFdCTP. dFdCTP was not identified as a substrate for hENTs, suggesting that dFdU affects the formation rather than elimination of the triphosphate. To further characterize the disposition of dFdC in the presence of dFdU, the net intracellular radioactivity of [5-(3)H]dFdC and corresponding metabolic profile were evaluated in HeLa cells transfected with dCK-targeting small interfering RNA. Intracellular radioactivity significantly decreased in cells with compromised intracellular phosphorylation, which was mainly due to a loss in dFdCTP. Although dFdU increased the net intracellular radioactivity of [5-(3)H]dFdC at 24 h in control cells, this increase was abolished in the absence of dCK activity, strongly suggesting that the interaction between dFdU and dFdC occurs via modulation of both transport and metabolism. In conclusion, we have demonstrated that the intracellular distribution of dFdC is dependent on both transport and metabolic processes, and that by affecting the rate at which dFdC enters the cell, the presence of dFdU may be altering the metabolic fate of the parent compound (dFdC).

摘要

吉西他滨(dFdC)是一种化疗核苷类似物,通过平衡核苷转运体(hENT)摄取,然后连续磷酸化为活性三磷酸部分(dFdCTP)。其脱氨酶代谢物 2',2'-二氟脱氧尿苷(dFdU)通过 hENT 与母体化合物竞争细胞内进入,但随着时间的推移,dFdU 通过一种目前未知的机制增加了 dFdC 的净细胞内积累。在这项研究中,我们研究了 dFdU 是否通过调节脱氧胞苷激酶(dCK)的活性来影响吉西他滨的细胞内磷酸化。我们在这里报告,dFdU 与 dFdC 同时孵育会显著增加细胞内 dFdCTP 水平。dFdCTP 未被鉴定为 hENTs 的底物,这表明 dFdU 影响三磷酸的形成而不是消除。为了进一步描述在存在 dFdU 的情况下 dFdC 的处置,在转染了 dCK 靶向小干扰 RNA 的 HeLa 细胞中评估了[5-(3)H]dFdC 的净细胞内放射性和相应的代谢谱。在细胞内磷酸化受损的细胞中,细胞内放射性显著降低,这主要是由于 dFdCTP 的损失。尽管 dFdU 在对照细胞中在 24 小时时增加了[5-(3)H]dFdC 的净细胞内放射性,但在缺乏 dCK 活性的情况下,这种增加被消除,这强烈表明 dFdU 与 dFdC 之间的相互作用是通过调节两者的转运和代谢来发生的。总之,我们已经证明,dFdC 的细胞内分布取决于转运和代谢过程,并且通过影响 dFdC 进入细胞的速度,dFdU 的存在可能正在改变母体化合物(dFdC)的代谢命运。

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