Zusman D, Gottlieb P, Rosenberg E
J Bacteriol. 1971 Mar;105(3):811-9. doi: 10.1128/jb.105.3.811-819.1971.
The kinetics of cell growth and protein synthesis during the division cycle of Myxococcus xanthus was determined. The distribution of cell size for both septated and nonseptated bacteria was obtained by direct measurement of the lengths of 8,000 cells. The Collins-Richmond equation was modified to consider bacterial growth in two phases: growth and division. From the derived equation, the growth rate of individual cells was computed as a function of size. Nondividing cells (growth phase) comprised 91% of the population and took up 87% of the time of the division cycle. The absolute and specific growth rates of nondividing cells were observed to increase continually throughout the growth phase; the growth rate of dividing cells could not be determined accurately by this technique because of changes in the geometry of cells between the time of septation and physical separation. The rate of protein synthesis during the division cycle was measured by pulselabeling an exponential-phase culture with radio-active valine or arginine and then preparing the cells for quantitative autoradiography. By measuring the size of individual cells as well as the number of grains, the rate of protein synthesis as a function of cell size was obtained. Nondividing cells showed an increase in both the absolute and specific rates of protein synthesis throughout the growth phase; the specific rate of protein synthesis for dividing cells was low when compared to growthphase cells. Cell growth and protein synthesis are compared to the previously reported kinetics of deoxyribonucleic acid and ribonucleic acid synthesis during the division cycle.
测定了黄色黏球菌分裂周期中细胞生长和蛋白质合成的动力学。通过直接测量8000个细胞的长度,获得了分隔和未分隔细菌的细胞大小分布。对柯林斯 - 里士满方程进行了修改,以考虑细菌在两个阶段的生长:生长和分裂。根据推导方程,计算出单个细胞的生长速率作为细胞大小的函数。未分裂细胞(生长阶段)占群体的91%,占分裂周期时间的87%。观察到未分裂细胞的绝对生长速率和比生长速率在整个生长阶段持续增加;由于在分隔时间和物理分离之间细胞几何形状的变化,这种技术无法准确测定分裂细胞的生长速率。通过用放射性缬氨酸或精氨酸脉冲标记指数生长期培养物,然后制备细胞进行定量放射自显影,测量了分裂周期中蛋白质合成的速率。通过测量单个细胞的大小以及银粒数量,获得了蛋白质合成速率作为细胞大小的函数。未分裂细胞在整个生长阶段的蛋白质合成绝对速率和比速率均增加;与生长阶段细胞相比,分裂细胞的蛋白质合成比速率较低。将细胞生长和蛋白质合成与先前报道的分裂周期中脱氧核糖核酸和核糖核酸合成的动力学进行了比较。