Shaw E I, Hsie A W
Mutat Res. 1978 Aug;51(2):237-54. doi: 10.1016/s0027-5107(78)80020-7.
We have investigated conditions necessary to quantify the relationship between exposure to a mutagen, ethyl methanesulfonate (EMS), and the frequency of mutation induction at the hypoxanthine-guanine phosphoribosyl transferase locus in V79 cells. Maximal expression of potential mutants has been achieved by either subculturing at fewer than 5 X 10(5) cells/100-mm dish at 2-day intervals or by daily feeding of cultures. An expression period of 5 days (measure from 1 day after the initiation of treatment with the chemical mutagen) should be allowed, since at least 4 days of expression is required to reach to steady maximum of mutation frequency. It appears that there is no concentration dependence of expression time necessary to reach a plateau of mutation frequency with increasing concentrations of EMS up to 1.6 mg/ml. About 1.25 X 10(5) cells/100-mm dish or fewer should be plated for selection to avoid the loss of mutants which occurs at 1.5 X 10(5) cells/dish, presumably through cross-feeding (metabolic cooperation). The use of 6-thioguanine in hypoxanthine-free medium (supplemented with dialyzed fetal calf serum) appears to be a very stringent condition for selection. Mutation induction by EMS as a function of EMS exposure (EMS concentration X treatment time) increases linearly with concentration up to 12 h. For these treatment periods, the observed mutation frequencies for EMS are directly proportional to mutagen exposure regardless of the duration of the treatment.
我们研究了量化诱变剂甲磺酸乙酯(EMS)暴露与V79细胞次黄嘌呤 - 鸟嘌呤磷酸核糖转移酶位点突变诱导频率之间关系所需的条件。通过每隔2天以少于5×10⁵个细胞/100毫米培养皿进行传代培养或每天对培养物进行换液,可实现潜在突变体的最大表达。应给予5天的表达期(从用化学诱变剂处理开始后的第1天起计算),因为至少需要4天的表达时间才能达到突变频率的稳定最大值。对于高达1.6毫克/毫升的EMS浓度,随着浓度增加,达到突变频率平台期所需的表达时间似乎不存在浓度依赖性。为避免突变体损失(可能是通过交叉喂养(代谢协作),在1.5×10⁵个细胞/培养皿时会出现这种情况),应接种约1.25×10⁵个细胞/100毫米培养皿或更少的细胞用于筛选。在无次黄嘌呤培养基(补充有透析胎牛血清)中使用6 - 硫鸟嘌呤似乎是一种非常严格的筛选条件。EMS诱导的突变作为EMS暴露(EMS浓度×处理时间)的函数,在长达12小时内随浓度呈线性增加。对于这些处理时间段,无论处理持续时间如何,观察到的EMS突变频率都与诱变剂暴露直接成正比。