Dien B S, Srienc F
Department of Chemical Engineering and Materials Science, University of Minnesota, Minneapolis 55455.
Biotechnol Prog. 1991 Jul-Aug;7(4):291-8. doi: 10.1021/bp00010a001.
An immunofluorescent staining procedure has been developed to identify, with flow cytometry, replicating cells of Saccharomyces cerevisiae after incorporation of bromodeoxyuridine (BrdUrd) into the DNA. Incorporation of BrdUrd is made possible by using yeast strains with a cloned thymidine kinase gene from the herpes simplex virus. An exposure time of 4 min to BrdUrd results in detectable labeling of the DNA. The BrdUrd/DNA double staining procedure has been optimized and the flow cytometry measurements yield histograms comparable to data typically obtained for mammalian cells. On the basis of the accurate assessment of cell fractions in individual cell cycle phases of the asynchronously growing cell population, the average duration of the cell cycle phases has been evaluated. For a population doubling time of 100 min it was found that cells spend in average 41 min in the replicating phase and 24 min in the G2+M cell cycle period. Assuming that mother cells immediately reenter the S phase after cell division, daughter cells spend 65 min in the G1 cell cycle phase. Together with the single cell fluorescence parameters, the forward-angle light scattering intensity (FALS) has been determined as an indicator of cell size. Comparing different temporal positions within the cell cycle, the determined FALS distributions show the lowest variability at the beginning of the S phase. The developed procedure in combination with multiparameter flow cytometry should be useful for studying the kinetics and regulation of the budding yeast cell cycle.
已开发出一种免疫荧光染色程序,通过流式细胞术鉴定酿酒酵母在将溴脱氧尿苷(BrdUrd)掺入DNA后正在复制的细胞。通过使用携带来自单纯疱疹病毒的克隆胸苷激酶基因的酵母菌株,使得BrdUrd的掺入成为可能。将细胞暴露于BrdUrd 4分钟可导致DNA被检测到标记。BrdUrd/DNA双重染色程序已得到优化,流式细胞术测量产生的直方图与通常从哺乳动物细胞获得的数据相当。基于对异步生长细胞群体各个细胞周期阶段中细胞分数的准确评估,已评估了细胞周期各阶段的平均持续时间。对于群体倍增时间为100分钟的情况,发现细胞在复制阶段平均花费41分钟,在G2+M细胞周期期花费24分钟。假设母细胞在细胞分裂后立即重新进入S期,子细胞在G1细胞周期期花费65分钟。连同单细胞荧光参数一起,已将前向角光散射强度(FALS)确定为细胞大小的指标。比较细胞周期内不同的时间点,所确定的FALS分布在S期开始时显示出最低的变异性。所开发的程序与多参数流式细胞术相结合,应有助于研究出芽酵母细胞周期的动力学和调控。