Institute of Biomedicine, University of Eastern Finland, Kuopio, Finland.
BMC Res Notes. 2022 Jul 15;15(1):248. doi: 10.1186/s13104-022-06142-9.
While it is clear that cells need to grow before committing to division at the G1/S transition of the cell cycle, how cells sense their growth rate or size at the molecular level is unknown. It has been proposed that, in budding yeast, the dilution of the Whi5 G1/S transcriptional repressor as cells grow in G1 is the main driver of G1/S commitment. This model implies that Whi5 synthesis is substantially reduced in G1 phase. Recent work has reported that the concentration of Whi5 is size- and time-independent in G1 cells, challenging the dilution model. These results in turn imply that Whi5 must be synthesized in G1 phase, but the cell cycle dependence of WHI5 mRNA expression has not been examined in live cells.
To address this question, we monitored single WHI5 mRNA molecules in single live cells using confocal microscopy, and quantified WHI5 mRNA copy number in G1, G1/S, and S/G2/M phase cells. We observed that WHI5 mRNA is found in very similar amount irrespective of cell cycle stage. The constant WHI5 mRNA copy number throughout G1 phase rules out alterations in mRNA abundance as a contributing factor for any putative dilution of Whi5.
虽然很明显,细胞在细胞周期的 G1/S 转换处分裂之前需要生长,但细胞如何在分子水平上感知其生长速度或大小尚不清楚。有人提出,在芽殖酵母中,随着细胞在 G1 中生长,Whi5 G1/S 转录阻遏物的稀释是 G1/S 承诺的主要驱动因素。该模型意味着 Whi5 的合成在 G1 期会大大减少。最近的工作表明,在 G1 细胞中,Whi5 的浓度与大小和时间无关,这对稀释模型提出了挑战。这些结果反过来又意味着 Whi5 必须在 G1 期合成,但尚未在活细胞中检查 WHI5 mRNA 表达的细胞周期依赖性。
为了解决这个问题,我们使用共焦显微镜在单个活细胞中监测单个 WHI5 mRNA 分子,并定量了 G1、G1/S 和 S/G2/M 期细胞中的 WHI5 mRNA 拷贝数。我们观察到,WHI5 mRNA 的含量无论细胞周期阶段如何都非常相似。整个 G1 期 WHI5 mRNA 拷贝数保持不变,排除了 mRNA 丰度变化作为 Whi5 任何假定稀释的因素。