首页> 外文期刊>Photochemistry and Photobiology: An International Journal >USING CELL-FRACTIONATION AND PHOTOCHEMICAL CROSSLINKING METHODS TO DETERMINE THE CELLULAR BINDING SITE(S) OF THE ANTITUMOR DRUG DMP 840
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USING CELL-FRACTIONATION AND PHOTOCHEMICAL CROSSLINKING METHODS TO DETERMINE THE CELLULAR BINDING SITE(S) OF THE ANTITUMOR DRUG DMP 840

机译:使用细胞分离和光化学交联方法确定抗药性DMP 840的细胞结合位点

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In order to understand its mechanism of action we have begun an effort to better define the cellular target of action of the experimental antitumor agent DMP 840 (NSC D640430; (R,R)-2,2'-(1,2-ethanediylbis(imino-(1-methyl-2,1- ethanediyl)))-bis(5-nitro-1H-benz(de)isoquinoline- 1,3-(2H)-dione) dimethanesulfonate). Using a combination of gentle cell fractionation procedures and a previously unidentified photochemical crosslinking reaction, we have shown that after the drug is added to cultured Clone A cells, more than 80% of the drug that is found associated with cells partitions to the chromatin-containing structural framework of the cell and that the primary target after crosslinking with 360 nm light is DNA. While DMP 840 photoreacts quite efficiently with purified RNA in vitro, no photoattachment of the drug to RNA was observed in cells. In vitro photochemical studies also reveal that while GC-rich DNA is a preferred target for drug interaction, AT-rich DNA is more active in the photochemical crosslinking reaction. These results suggest that DMP 840 probably kills cells by interfering with DNA-metabolic processes, and that the drug and its derivatives are likely to be useful photoactive molecular probes for investigating higher order chromatin structures in cells. [References: 15]
机译:为了了解其作用机理,我们已开始努力更好地确定实验性抗肿瘤药DMP 840(NSC D640430;(R,R)-2,2'-(1,2-乙二基双(亚氨基-(1-甲基-2,1-乙二基))-双(5-硝基-1H-苯并(去)异喹啉-1,3-(2H)-二酮)二甲磺酸酯)。结合温和的细胞分级程序和以前未知的光化学交联反应,我们发现将药物添加到培养的克隆A细胞后,发现与细胞相关的80%以上的药物会分配到含染色质的细胞中细胞的结构框架,以及与360 nm光交联后的主要靶标是DNA。尽管DMP 840在体外与纯化的RNA可以非常有效地发生光反应,但在细胞中未观察到药物与RNA的光附着。体外光化学研究还显示,尽管富含GC的DNA是药物相互作用的首选目标,但富含AT的DNA在光化学交联反应中更具活性。这些结果表明,DMP 840可能通过干扰DNA代谢过程杀死细胞,并且该药物及其衍生物可能是有用的光敏分子探针,可用于研究细胞中更高阶的染色质结构。 [参考:15]

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