Ross Carley D, French C Tenley, Keysar Stephen B, Fox Michael H
Cell and Molecular Biology Graduate Program, Colorado State University, Fort Collins, CO 80523, USA.
Mutat Res. 2007 Nov 1;624(1-2):61-70. doi: 10.1016/j.mrfmmm.2007.04.005. Epub 2007 Apr 20.
We have previously developed a sensitive and rapid mammalian cell mutation assay which is based on a Chinese hamster ovary cell line that stably incorporates human chromosome 11 (CHO A(L)) and uses flow cytometry to measure mutations in CD59. We now show that multiparameter flow cytometry may be used to simultaneously analyze irradiated CHO A(L) cells for mutations in five CD genes along chromosome 11 (CD59, CD44, CD90, CD98, CD151) and also a GPI-anchor gene. Using this approach, 19 different mutant clones derived from individual sorted mutant cells were analyzed to determine the mutant spectrum induced by ionizing radiation. All clones analyzed were negative for CD59 expression and PCR confirmed that at least CD59 exon 4 was also absent. As expected, ionizing radiation frequently caused large deletions along chromosome 11. This technology can readily be used to rapidly analyze the mutant yield as well as the spectrum of mutations caused by a variety of genotoxic agents and provide greater insight into the mechanisms of mutagenesis.
我们之前开发了一种灵敏且快速的哺乳动物细胞突变检测方法,该方法基于一种稳定整合了人类11号染色体的中国仓鼠卵巢细胞系(CHO A(L)),并使用流式细胞术来检测CD59中的突变。我们现在表明,多参数流式细胞术可用于同时分析受辐照的CHO A(L)细胞中11号染色体上五个CD基因(CD59、CD44、CD90、CD98、CD151)以及一个糖基磷脂酰肌醇锚定基因的突变情况。使用这种方法,对来自单个分选突变细胞的19个不同突变克隆进行了分析,以确定电离辐射诱导的突变谱。所有分析的克隆均不表达CD59,PCR证实至少CD59外显子4也缺失。正如预期的那样,电离辐射经常导致11号染色体上出现大片段缺失。该技术可轻松用于快速分析各种遗传毒性剂引起的突变产量以及突变谱,并能更深入地了解诱变机制。