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尿苷/胞苷激酶2在3'-乙炔基核苷抗肿瘤活性中的关键作用。

A crucial role of uridine/cytidine kinase 2 in antitumor activity of 3'-ethynyl nucleosides.

作者信息

Murata Daigo, Endo Yoshio, Obata Tohru, Sakamoto Kazuki, Syouji Yasuhiro, Kadohira Masakazu, Matsuda Akira, Sasaki Takuma

机构信息

Department of Experimental Therapeutics, Cancer Research Institute, Kanazawa University, 13-1 Takaramachi, Kanazawa 920-0934, Japan.

出版信息

Drug Metab Dispos. 2004 Oct;32(10):1178-82. doi: 10.1124/dmd.104.000737. Epub 2004 Jul 27.

Abstract

The antitumor 3'-ethynyl nucleosides, 1-(3-C-ethynyl-beta-D-ribopentofuranosyl)cytosine (ECyd) and 1-(3-C-ethynyl-beta-D-ribopentofuranosyl)uridine (EUrd), are potent inhibitors of RNA polymerases and show excellent antitumor activity against various human solid tumors in xenograft models. ECyd is being investigated in phase I clinical trials as a novel anticancer drug possessing a unique antitumor action. ECyd and EUrd require the activity of uridine/cytidine kinase (UCK) to produce the corresponding active metabolite. The UCK family consists of two members, UCK1 and UCK2, and both UCKs are expressed in many tumor cells. It was unclear, however, whether UCK1 or UCK2 is responsible for the phosphorylation of the 3'-ethynyl nucleosides. We therefore established cell lines that are highly resistant to the 3'-ethynyl nucleosides from human fibrosarcoma HT-1080 and gastric carcinoma NUGC-3. All the resistant cell lines showed a high cross-resistance to ECyd and EUrd. As a result of cDNA sequence analysis, we found that UCK2 mRNA expressed in EUrd-resistant HT-1080 cells has a 98-base pair deletion of exon 5, whereas EUrd-resistant NUGC-3 cells were harboring the point mutation at nucleotide position 484 (C to T) within exon 4 of UCK2 mRNA. This mutation was confirmed by genome sequence analysis of the UCK2 gene. Moreover, the expression of UCK2 protein was decreased in these resistant cells. In contrast, no mutation in the mRNA or differences in protein expression levels of UCK1 were shown in the EUrd-resistant HT-1080 and NUGC-3 cells. These results suggest that UCK2 is responsible for the phosphorylation and activation of the antitumor 3'-ethynyl nucleosides.

摘要

抗肿瘤3'-乙炔基核苷,1-(3-C-乙炔基-β-D-核糖戊呋喃糖基)胞嘧啶(ECyd)和1-(3-C-乙炔基-β-D-核糖戊呋喃糖基)尿苷(EUrd),是RNA聚合酶的有效抑制剂,在异种移植模型中对多种人类实体瘤显示出优异的抗肿瘤活性。ECyd作为一种具有独特抗肿瘤作用的新型抗癌药物正在进行I期临床试验。ECyd和EUrd需要尿苷/胞苷激酶(UCK)的活性来产生相应的活性代谢物。UCK家族由两个成员UCK1和UCK2组成,并且两种UCK在许多肿瘤细胞中均有表达。然而,尚不清楚UCK1还是UCK2负责3'-乙炔基核苷的磷酸化。因此,我们建立了对来自人纤维肉瘤HT-1080和胃癌NUGC-3的3'-乙炔基核苷具有高度抗性的细胞系。所有抗性细胞系对ECyd和EUrd均表现出高度交叉抗性。通过cDNA序列分析,我们发现,在EUrd抗性HT-1080细胞中表达的UCK2 mRNA在外显子5中有98个碱基对的缺失,而EUrd抗性NUGC-3细胞在UCK2 mRNA外显子4内的核苷酸位置484(C到T)处存在点突变。通过UCK2基因的基因组序列分析证实了该突变。此外,这些抗性细胞中UCK2蛋白的表达降低。相比之下,在EUrd抗性HT-1080和NUGC-3细胞中未显示UCK1的mRNA突变或蛋白表达水平差异。这些结果表明UCK2负责抗肿瘤3'-乙炔基核苷的磷酸化和激活。

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