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[DT-黄递酶]

[DT-diaphorase].

作者信息

Mikami K, Shirakusa T, Tsuruo T

机构信息

Institute of Molecular and Cellular Biosciences, University of Tokyo.

出版信息

Gan To Kagaku Ryoho. 1997 Sep;24(11):1606-10.

PMID:9309161
Abstract

Anti-tumor quinone, including mitomycin C (MMC), needs to be activated by bioreduction to exert its cytotoxic activities. The enzymes underlying this bioreductive activation have been the subject of extensive research on Mitomycin C. Cytochrome P450 reductase, cytochrome b5 reductase, xanthine oxidase, xanthine dehydrogenase and DT-diaphorase (DTD) have been shown to be involved in the reduction of MMC. The relationship between bioreductive enzymes and the cytotoxicity of quinone, however, has not been analyzed yet. In this study, we investigated the relationship between the bioreductive enzymes and the cytotoxicity of MMC. We carried out the following experiments and the following results were obtained. I) We isolated an MMC-resistant variant. This cell showed five-fold resistance to MMC as compared with the parental cell line. DTD was deficient in this resistant cell. II) We have examined the bioreductive enzyme activities of DTD and cytochrome P450 reductase and IC50's of MMC in 13 colon and gastric carcinoma cell lines. A positive correlation was not found between the enzyme activities and MMC sensitivities, but the cells with little or no DTD activity showed higher IC50 values compared to the other cell lines. III) To elucidate directly the role of DTD in MMC sensitivity, we introduced NQO1 gene into St-4 cells. NQO1 gene encodes DTD and St-4 cells have no DTD activity. All of the transfectants showed five- to ten-fold higher sensitivity to MMC as compared to the parental St-4 cells. The above data indicate that DTD is a critical determinant of sensitivity to MMC in aerobic conditions.

摘要

抗肿瘤醌类,包括丝裂霉素C(MMC),需要通过生物还原作用被激活才能发挥其细胞毒性活性。这种生物还原激活作用背后的酶一直是丝裂霉素C广泛研究的对象。细胞色素P450还原酶、细胞色素b5还原酶、黄嘌呤氧化酶、黄嘌呤脱氢酶和DT-二氢嘧啶脱氢酶(DTD)已被证明参与MMC的还原过程。然而,生物还原酶与醌类细胞毒性之间的关系尚未得到分析。在本研究中,我们调查了生物还原酶与MMC细胞毒性之间的关系。我们进行了以下实验并获得了以下结果。I)我们分离出了一个对MMC耐药的变异体。与亲代细胞系相比,该细胞对MMC具有五倍的耐药性。该耐药细胞中DTD缺乏。II)我们检测了13种结肠和胃癌细胞系中DTD和细胞色素P450还原酶的生物还原酶活性以及MMC的半数抑制浓度(IC50)。酶活性与MMC敏感性之间未发现正相关,但与其他细胞系相比,DTD活性很少或没有的细胞显示出更高的IC50值。III)为了直接阐明DTD在MMC敏感性中的作用,我们将NQO1基因导入St-4细胞。NQO1基因编码DTD,而St-4细胞没有DTD活性。所有转染子对MMC的敏感性比亲代St-4细胞高五到十倍。上述数据表明,DTD是有氧条件下对MMC敏感性的关键决定因素。

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