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Mutations induced by dacarbazine activated with cytochrome P-450.

机译:达卡巴嗪诱导的突变被细胞色素P-450激活。

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摘要

The mutagenicity of the antitumor drug dacarbazine (DTIC) is due to alkylation of cellular DNA by metabolites resulting from the metabolism of this drug by the mixed function oxidase system. In the present study, we used an in vitro shuttle vector assay to study the base and sequence specificity of mutagenesis by DTIC. The shuttle vector plasmid pSP189 was treated with DTIC (1-2.5 mM) in vitro in a reconstituted cytochrome P-450 system at 37 degrees C for either 30 or 60 min. SupF tRNA gene insert contained in the plasmid was sequenced after replication of the drug-treated plasmid in human Ad 293 cells followed by amplification in indicator bacteria. Mutagenesis of DTIC in this system was dependent upon the presence of the cytochrome P-450 reconstituted system and NADPH. Mutations induced by DTIC included single base substitutions (35%), single base deletions (30.5%), single base insertions (19.4%) and large deletions (13.8%). Among the substitutions, transversions and transitions were in the ratio of 1:0.7. Base pairs 108 and 127 in the SupF tRNA of the pSP189 were identified as mutational hot spots.
机译:抗肿瘤药物达卡巴嗪(DTIC)的诱变性是由于代谢产物使细胞DNA烷基化,而代谢产物是该药物通过混合功能氧化酶系统代谢所致。在本研究中,我们使用体外穿梭载体测定法研究了DTIC诱变的碱基和序列特异性。穿梭载体质粒pSP189在重构的细胞色素P-450系统中于37摄氏度体外用DTIC(1-2.5 mM)处理30分钟或60分钟。在人Ad 293细胞中复制药物处理的质粒后,在指示菌中扩增后,对质粒中包含的SupF tRNA基因插入物进行测序。 DTIC在该系统中的诱变取决于细胞色素P-450重构系统和NADPH的存在。 DTIC诱导的突变包括单碱基取代(35%),单碱基缺失(30.5%),单碱基插入(19.4%)和大缺失(13.8%)。在取代中,颠换和过渡的比例为1:0.7。 pSP189的SupF tRNA中的碱基对108和127被鉴定为突变热点。

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