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FK317的细胞毒性机制,一种具有强大抗肿瘤活性的新型生物还原剂。

Cytotoxic mechanisms of FK317, a new class of bioreductive agent with potent antitumor activity.

作者信息

Naoe Y, Inami M, Kawamura I, Nishigaki F, Tsujimoto S, Matsumoto S, Manda T, Shimomura K

机构信息

Department of Pharmacology, Pharmacological Research Laboratories, Fujisawa Pharmaceutical Co., Ltd., Osaka.

出版信息

Jpn J Cancer Res. 1998 Jun;89(6):666-72. doi: 10.1111/j.1349-7006.1998.tb03269.x.

Abstract

FK317 is a member of a new class of bioreductive agents that exhibit strong cytotoxicity against various human cancer cells. The effect of FK317 was found to be stronger than that of mitomycin C (MMC), adriamycin (ADR) or cisplatin (CDDP). Alkaline elution analysis indicated that FK317 formed interstrand DNA-DNA and DNA-protein cross-links in cells. On the other hand, no DNA single-strand breaks were observed in the cells treated with FK317. In a cell-free system the deacetylated metabolites produced cross-linked DNA under reductive conditions, though FK317 itself did not form DNA-DNA cross-links. In order to elucidate the metabolic activation mechanisms, we established an FK317-resistant subline from human non-small cell lung cancer cells (Lu99) by stepwise and brief exposure (1 h) to FK317. The resistant subline (Lu99/317) showed cross-resistance to MMC and carboquone (CQ), but not to ADR or CDDP. DT-diaphorase, which is one of the activation enzymes of MMC and CQ, was deficient in Lu99/317 cells as determined by enzyme activity assay. However, the levels of NADPH:cytochrome P450 reductase, which is another activation enzyme for MMC and CQ, were comparable in resistant and parent cell lines. Treatment of the cells with dicumarol, an inhibitor of DT-diaphorase, reduced the cytotoxicity of FK317 to Lu99 cells, but not to Lu99/317 cells. These results indicate that deacetylation of FK317 is necessary for its reductive activation, and deacetylated FK317 is reduced by DT-diaphorase to form an active metabolite, which produces DNA-DNA interstrand and DNA-protein cross-links that lead to cell death.

摘要

FK317是一类新型生物还原药物的成员,对多种人类癌细胞具有很强的细胞毒性。研究发现FK317的作用比丝裂霉素C(MMC)、阿霉素(ADR)或顺铂(CDDP)更强。碱性洗脱分析表明,FK317在细胞中形成链间DNA-DNA和DNA-蛋白质交联。另一方面,在用FK317处理的细胞中未观察到DNA单链断裂。在无细胞系统中,去乙酰化代谢产物在还原条件下形成交联DNA,尽管FK317本身不形成DNA-DNA交联。为了阐明代谢激活机制,我们通过逐步短暂暴露(1小时)于FK317,从人非小细胞肺癌细胞(Lu99)中建立了一个FK317抗性亚系。抗性亚系(Lu99/317)对MMC和卡波醌(CQ)表现出交叉抗性,但对ADR或CDDP没有交叉抗性。通过酶活性测定确定,MMC和CQ的激活酶之一DT-黄递酶在Lu99/317细胞中缺乏。然而,MMC和CQ的另一种激活酶NADPH:细胞色素P450还原酶的水平在抗性细胞系和亲本细胞系中相当。用DT-黄递酶抑制剂双香豆素处理细胞,可降低FK317对Lu99细胞的细胞毒性,但对Lu99/317细胞则无此作用。这些结果表明,FK317的去乙酰化是其还原激活所必需的,去乙酰化的FK317被DT-黄递酶还原形成活性代谢产物,该产物产生DNA-DNA链间交联和DNA-蛋白质交联,导致细胞死亡。

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