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CC-1065(NSC 298223),一种能与双链DNA强烈相互作用的新型抗肿瘤药物。

CC-1065 (NSC 298223), a novel antitumor agent that interacts strongly with double-stranded DNA.

作者信息

Li L H, Swenson D H, Schpok S L, Kuentzel S L, Dayton B D, Krueger W C

出版信息

Cancer Res. 1982 Mar;42(3):999-1004.

PMID:6174220
Abstract

CC-1065, a novel antibiotic produced by Streptomyces zelensis, was active against several experimental tumors in vivo and a broad spectrum of human tumor cells in vitro. This report describes its biological and biochemical effects of L1210 leukemia cells. CC-1065 is one of the most cytotoxic agents known. The concentrations required for a 50 and 90% inhibition of cell growth are 0.02 and 0.05 ng/ml, respectively. It is about 400 times more cytotoxic than was Adriamycin. The action of CC-1065 is rapid and is dose and time dependent. CC-1065 inhibits DNA synthesis much more than it inhibits RNA and protein synthesis. The concentrations required for a 50% inhibition of DNA synthesis and RNA synthesis are 4 to 6 and 45 to 60 ng/ml, respectively. Although the drug inhibition of DNA synthesis cannot completely account for its cytotoxic effects on L1210 cells, these results, along with those generated by other investigators, suggest that the inhibition of DNA synthesis represents a major mode of action of CC-1065. CC-1065 inhibited both thymidine kinase and DNA polymerase alpha activities, but the effect on highly purified DNA polymerase alpha was more pronounced. At 1 microgram/ml, CC-1065 inhibited more than 70% of the enzyme activity. In order to elucidate the mechanism of inhibition of DNA polymerase alpha, the interaction between CC-1065 and DNA was investigated. The studies with thermal melting of DNA and difference circular dichroism measurement indicate that CC-1065 is one of the strongest DNA-binding agents. It induced an increase in thermal melting temperature of calf thymus DNA by at least 31 degrees. The circular dichroism studies also reveal that CC-1065 binds only to double-stranded DNA but not to heat-denatured DNA or yeast RNA. These observations were supported by those obtained with two other experimental approaches. CC-1065 also appeared to interact with proteins, but the interaction was weak and reversible.

摘要

CC - 1065是由泽链霉菌产生的一种新型抗生素,在体内对多种实验性肿瘤具有活性,在体外对多种人类肿瘤细胞具有广泛活性。本报告描述了其对L1210白血病细胞的生物学和生化作用。CC - 1065是已知细胞毒性最强的药物之一。抑制细胞生长50%和90%所需的浓度分别为0.02和0.05 ng/ml。其细胞毒性比阿霉素约高400倍。CC - 1065的作用迅速,且呈剂量和时间依赖性。CC - 1065对DNA合成的抑制作用远大于对RNA和蛋白质合成的抑制作用。抑制DNA合成和RNA合成50%所需的浓度分别为4至6 ng/ml和45至60 ng/ml。尽管该药物对DNA合成的抑制作用不能完全解释其对L1210细胞的细胞毒性作用,但这些结果以及其他研究人员的结果表明,DNA合成的抑制是CC - 1065的主要作用方式。CC - 1065抑制胸苷激酶和DNA聚合酶α的活性,但对高度纯化的DNA聚合酶α的作用更明显。在1 μg/ml时,CC - 1065抑制了超过70%的酶活性。为了阐明对DNA聚合酶α的抑制机制,研究了CC - 1065与DNA之间的相互作用。DNA热变性和差示圆二色性测量研究表明,CC - 1065是最强的DNA结合剂之一。它使小牛胸腺DNA的热变性温度至少升高31摄氏度。圆二色性研究还表明,CC - 1065仅与双链DNA结合,而不与热变性DNA或酵母RNA结合。其他两种实验方法得到的结果支持了这些观察结果。CC - 1065似乎也与蛋白质相互作用,但这种相互作用较弱且可逆。

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