Department of Biochemistry and Biophysics, Texas A&M University, College Station, TX 77843.
Department of Biochemistry and Biophysics, Texas A&M University, College Station, TX 77843
G3 (Bethesda). 2019 Jan 9;9(1):239-250. doi: 10.1534/g3.118.200854.
The question of what determines whether cells are big or small has been the focus of many studies because it is thought that such determinants underpin the coupling of cell growth with cell division. In contrast, what determines the overall pattern of how cell size is distributed within a population of wild type or mutant cells has received little attention. Knowing how cell size varies around a characteristic pattern could shed light on the processes that generate such a pattern and provide a criterion to identify its genetic basis. Here, we show that cell size values of wild type cells fit a gamma distribution, in haploid and diploid cells, and under different growth conditions. To identify genes that influence this pattern, we analyzed the cell size distributions of all single-gene deletion strains in We found that yeast strains which deviate the most from the gamma distribution are enriched for those lacking gene products functioning in gene expression, especially those in transcription or transcription-linked processes. We also show that cell size is increased in mutants carrying altered activity substitutions in Rpo21p/Rpb1, the largest subunit of RNA polymerase II (Pol II). Lastly, the size distribution of cells carrying extreme altered activity Pol II substitutions deviated from the expected gamma distribution. Our results are consistent with the idea that genetic defects in widely acting transcription factors or Pol II itself compromise both cell size homeostasis and how the size of individual cells is distributed in a population.
细胞大小的决定因素是什么一直是许多研究的焦点,因为人们认为这些决定因素是细胞生长与细胞分裂偶联的基础。相比之下,决定野生型或突变细胞群体中细胞大小分布总体模式的因素却很少受到关注。了解细胞大小如何围绕特征模式变化,可以揭示产生这种模式的过程,并提供识别其遗传基础的标准。在这里,我们表明,在单倍体和二倍体细胞中以及在不同的生长条件下,野生型细胞的大小值符合伽马分布。为了确定影响这种模式的基因,我们分析了所有单基因缺失株在中的细胞大小分布。我们发现,与伽马分布偏离最大的酵母株系富含缺乏基因产物的基因,这些基因产物在基因表达中起作用,尤其是在转录或转录相关过程中。我们还表明,携带改变的 Rpo21p/Rpb1(RNA 聚合酶 II(Pol II)的最大亚基)活性取代突变的细胞大小增加。最后,携带极端改变活性 Pol II 取代的细胞的大小分布偏离了预期的伽马分布。我们的结果与以下观点一致,即广泛作用的转录因子或 Pol II 本身的遗传缺陷会损害细胞大小的动态平衡以及个体细胞在群体中的大小分布。