Barnes A, Nurse P, Fraser R S
J Cell Sci. 1979 Feb;35:41-51. doi: 10.1242/jcs.35.1.41.
Mutant strains of the fission yeast Schizosaccharomyces pombe are available which divide at smaller mean sizes than wild type. Earlier work by the present authors has shown that all these strains double their rates of polyadenylated messenger RNA synthesis as a step once in each cell cycle. The smaller the cell, the later in the cycle is the doubling in rate of synthesis. Strains of all sizes, however, double their synthetic rate when at the same threshold size. We show here that the differences in cell cycle stage of doubling in rate of polyadenylated messenger RNA synthesis are enough to explain the reduced mean steady state polyadenylated messenger RNA contents of the smaller strains. The cell size-related control over doubling in rate of synthesis is also shown to maintain the mean polyadenylated messenger RNA content as a constant proportion of cell mass, irrespective of cell size. This control thus allows cells to maintain balanced exponential growth, even when absolute growth rate per cell is altered by mutation. It is also shown that the concentration of polyadenylated messenger RNA itself could act as a monitor of the threshold size triggering the doubling in rate of synthesis in each cell cycle.
裂殖酵母粟酒裂殖酵母的突变菌株是存在的,其平均分裂尺寸比野生型小。本文作者早期的研究表明,所有这些菌株在每个细胞周期中都会有一次将其多聚腺苷酸化信使核糖核酸合成速率加倍的步骤。细胞越小,合成速率加倍发生在周期中的时间越晚。然而,所有大小的菌株在达到相同阈值大小时都会使其合成速率加倍。我们在此表明,多聚腺苷酸化信使核糖核酸合成速率加倍的细胞周期阶段差异足以解释较小菌株中平均稳态多聚腺苷酸化信使核糖核酸含量的降低。与细胞大小相关的合成速率加倍控制还表明,无论细胞大小如何,平均多聚腺苷酸化信使核糖核酸含量都保持为细胞质量的恒定比例。因此,这种控制使细胞能够维持平衡的指数生长,即使每个细胞的绝对生长速率因突变而改变。还表明,多聚腺苷酸化信使核糖核酸本身的浓度可以作为触发每个细胞周期中合成速率加倍的阈值大小的监测器。