Department of Biochemistry and Biophysics, Texas A&M University, College Station, Texas, USA.
PLoS Genet. 2012;8(3):e1002590. doi: 10.1371/journal.pgen.1002590. Epub 2012 Mar 15.
Upstream events that trigger initiation of cell division, at a point called START in yeast, determine the overall rates of cell proliferation. The identity and complete sequence of those events remain unknown. Previous studies relied mainly on cell size changes to identify systematically genes required for the timely completion of START. Here, we evaluated panels of non-essential single gene deletion strains for altered DNA content by flow cytometry. This analysis revealed that most gene deletions that altered cell cycle progression did not change cell size. Our results highlight a strong requirement for ribosomal biogenesis and protein synthesis for initiation of cell division. We also identified numerous factors that have not been previously implicated in cell cycle control mechanisms. We found that CBS, which catalyzes the synthesis of cystathionine from serine and homocysteine, advances START in two ways: by promoting cell growth, which requires CBS's catalytic activity, and by a separate function, which does not require CBS's catalytic activity. CBS defects cause disease in humans, and in animals CBS has vital, non-catalytic, unknown roles. Hence, our results may be relevant for human biology. Taken together, these findings significantly expand the range of factors required for the timely initiation of cell division. The systematic identification of non-essential regulators of cell division we describe will be a valuable resource for analysis of cell cycle progression in yeast and other organisms.
上游事件在酵母中称为 START 点,触发细胞分裂的开始,决定了细胞增殖的总体速率。这些事件的性质和完整序列仍然未知。以前的研究主要依赖于细胞大小的变化来系统地识别完成 START 所必需的基因。在这里,我们通过流式细胞术评估了非必需单基因缺失株的面板,以评估其 DNA 含量的变化。这项分析表明,大多数改变细胞周期进程的基因缺失并没有改变细胞大小。我们的结果强调了核糖体生物发生和蛋白质合成对于细胞分裂起始的强烈需求。我们还鉴定了许多以前与细胞周期控制机制无关的因素。我们发现 CBS(催化丝氨酸和同型半胱氨酸合成胱硫醚的酶)通过两种方式促进 START:通过促进细胞生长,这需要 CBS 的催化活性,以及通过不需要 CBS 催化活性的单独功能。CBS 缺陷会导致人类疾病,而在动物中 CBS 具有重要的、非催化的、未知的作用。因此,我们的结果可能与人类生物学有关。总之,这些发现极大地扩展了细胞分裂及时开始所需的因素范围。我们所描述的系统鉴定非必需的细胞分裂调节剂将成为分析酵母和其他生物体细胞周期进程的宝贵资源。