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Southern Analysis of Genomic Alterations in Gamma-Ray-Induced Aprt- Hamster Cell Mutants

机译:γ射线诱导的Apr-仓鼠细胞突变体中基因组改变的Southern分析。

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摘要

The role of genomic alterations in mutagenesis induced by ionizing radiation has been the subject of considerable speculation. By Southern blotting analysis we show here that 9 of 55 (approximately 1/6) gamma-ray-induced mutants at the adenine phosphoribosyl transferase (aprt) locus of Chinese hamster ovary (CHO) cells have a detectable genomic rearrangement. These fall into two classes: intragenic deletions and chromosomal rearrangements. In contrast, no major genomic alterations were detected among 67 spontaneous mutants, although two restriction site loss events were observed. Three gamma-ray-induced mutants were found to be intragenic deletions; all may have identical break-points. The remaining six gamma-ray-induced mutants demonstrating a genomic alteration appear to be the result of chromosomal rearrangements, possibly translocation or inversion events. None of the remaining gamma-ray-induced mutants showed any observable alteration in blotting pattern indicating a substantial role for point mutation in gamma-ray-induced mutagenesis at the aprt locus.
机译:基因组改变在电离辐射诱导的诱变中的作用已成为相当多的推测的主题。通过Southern印迹分析,我们在这里显示中国仓鼠卵巢(CHO)细胞的腺嘌呤磷酸核糖基转移酶(aprt)基因座的55个(约1/6)γ射线诱导的突变体中有可检测的基因组重排。这些分为两类:基因内缺失和染色体重排。相反,虽然观察到两个限制性位点丢失事件,但在67个自发突变体中未检测到主要的基因组改变。发现了三个伽马射线诱导的突变体是基因内缺失。所有这些都可能具有相同的断点。剩下的六个伽马射线诱导的突变体证明了基因组的改变,似乎是染色体重排的结果,可能是易位或倒位事件。其余的伽马射线诱导的突变体均未显示出印迹模式的任何可观察到的变化,表明点突变在aprt基因座的伽马射线诱导的诱变中起着重要作用。

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