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首页> 外文期刊>Cytotechnology >DNA fingerprint analysis for the detection of induced mutations in mammalian cells in culture
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DNA fingerprint analysis for the detection of induced mutations in mammalian cells in culture

机译:DNA指纹分析用于检测培养物中哺乳动物细胞的诱导突变

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摘要

A mutation assay in cultured mammalian cells based on the direct analysis of minisatellite DNA was developed. Band pattern variations reflect DNA alterations ranging from single base changes to complex rearrangements. By DNA fingerprinting a large number of autosomal loci throughout the human genome can be simultaneously checked, therefore minimizing the size of the samples of cell colonies to be scored in the absence of phenotypic selection. For the mutation assay chinese hamster cells (V79) were treated with Nitrosoguanidine and 14 independent colonies were isolated and expanded. DNA fingerprints were obtained after digestion of the DNA extracted from each clone with bothHinfI andHae III, and hybridisation with both 33.15 and 33.6 probes. Twelve colonies from untreated cells were also analysed. Several differences in the band pattern of treated colonies were observed when compared with untreated cells; digestion withHae III and hybridisation with 33.15 probe allowed the detection of the highest frequency of induced variants. The results suggest that minisatellite sequences are hypermutable sites that can be used to monitor the mutagenic potential of chemical agents directly at the DNA level, without phenotypic selection. Moreover, with the method herein decribed, it is possible to distinguish between true mutations and epimutations, such as those caused by changes in DNA methylation.
机译:在直接分析小卫星DNA的基础上,开发了一种在哺乳动物细胞中进行突变的方法。条带模式变化反映了DNA的变化,范围从单碱基变化到复杂的重排。通过DNA指纹分析,可以同时检查整个人类基因组中的大量常染色体基因座,因此可以在不进行表型选择的情况下最小化要进行评分的细胞集落样品的大小。对于突变测定,用亚硝基胍处理中国仓鼠细胞(V79),并分离并扩增14个独立的菌落。用HinfI和Hae III消化从每个克隆中提取的DNA,并与33.15和33.6探针杂交后,获得了DNA指纹。还分析了来自未处理细胞的十二个菌落。与未处理的细胞相比,观察到处理过的菌落的条带模式存在一些差异。用Hae III酶切和与33.15探针杂交可以检测诱导变异的最高频率。结果表明,小卫星序列是超变位点,可用于直接在DNA水平上监测化学试剂的诱变潜力,而无需进行表型选择。而且,利用本文描述的方法,有可能区分真实的突变和表位突变,例如由DNA甲基化的变化引起的那些。

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