Porro D, Srienc F
Department of Chemical Engineering and Materials Science, University of Minnesota, Minneapolis/St. Paul 55108, USA.
Biotechnol Prog. 1995 May-Jun;11(3):342-7. doi: 10.1021/bp00033a600.
A novel flow cytometric procedure has been developed with the aim to obtain the growth properties of individual Saccharomyces cerevisiae cells in asynchronous culture. The method is based on labeling of the cell surface with FITC-conjugated concanavalin A and detection of the single-cell fluorescence with flow cytometry after cell exposure to growth conditions. Because the formation of new cell wall material in budded cells is restricted to the bud tip, exposure of the stained cells to growth conditions results in three cell types: (i) stained cells, (ii) partially stained cells, and (iii) unstained cells. Analysis of the staining pattern over time permits the determination of the specific growth rate of the cell population, the length of the budded cell cycle phase, and the growth pattern during the cell cycle of newly formed, partially stained daughter cells. The procedure has been tested with yeast cell populations growing at different rates. The data suggest an exponential increase in the size of individual cells during the cell cycle, as reflected by the forward angle light scattering (FALS) signals. It has been found that the apparent single-cell specific cell size growth rates, determined by FALS intensity, are significantly lower than the specific growth rates of the overall population. This could indicate that the tracking of a cohort of cells is significantly perturbed by a distribution of staining levels of daughter cells at cell division and that FALS may not be a good indicator of the cell size.
已开发出一种新型流式细胞术程序,旨在获取异步培养中单个酿酒酵母细胞的生长特性。该方法基于用异硫氰酸荧光素(FITC)偶联的伴刀豆球蛋白A标记细胞表面,并在细胞暴露于生长条件后通过流式细胞术检测单细胞荧光。由于出芽细胞中新细胞壁物质的形成仅限于芽尖,将染色细胞暴露于生长条件下会产生三种细胞类型:(i)染色细胞,(ii)部分染色细胞,和(iii)未染色细胞。随着时间分析染色模式,可以确定细胞群体的比生长速率、出芽细胞周期阶段的长度以及新形成的部分染色子细胞在细胞周期中的生长模式。该程序已在以不同速率生长的酵母细胞群体上进行了测试。数据表明,在前向角光散射(FALS)信号反映下,单个细胞在细胞周期中的大小呈指数增加。已发现,由FALS强度确定的表观单细胞比细胞大小生长速率明显低于总体群体的比生长速率。这可能表明,细胞分裂时子细胞染色水平的分布会显著干扰对一群细胞的追踪,并且FALS可能不是细胞大小的良好指标。