Sharma Nimisha, Marguerat Samuel, Mehta Surbhi, Watt Stephen, Bähler Jürg
University School of Biotechnology, G.G.S. Indraprastha University, Kashmere Gate, Delhi, 110006, India.
Mol Genet Genomics. 2006 Dec;276(6):545-54. doi: 10.1007/s00438-006-0161-5. Epub 2006 Sep 14.
RNA polymerase II is a complex of 12 subunits, Rpb1 to Rpb12, whose specific roles are only partly understood. Rpb4 is essential in mammals and fission yeast, but not in budding yeast. To learn more about the roles of Rpb4, we expressed the rpb4 gene under the control of regulatable promoters of different strength in fission yeast. We demonstrate that below a critical level of transcription, Rpb4 affects cellular growth proportional to its expression levels: cells expressing lower levels of rpb4 grew slower compared to cells expressing higher levels. Lowered rpb4 expression did not affect cell survival under several stress conditions, but it caused specific defects in cell separation similar to sep mutants. Microarray analysis revealed that lowered rpb4 expression causes a global reduction in gene expression, but the transcript levels of a distinct subset of genes were particularly responsive to changes in rpb4 expression. These genes show some overlap with those regulated by the Sep1-Ace2 transcriptional cascade required for cell separation. Most notably, the gene expression signature of cells with lowered rpb4 expression was highly similar to those of mcs6, pmh1, sep10 and sep15 mutants. Mcs6 and Pmh1 encode orthologs of metazoan TFIIH-associated cyclin-dependent kinase (CDK)-activating kinase (Cdk7-cyclin H-Mat1), while Sep10 and Sep15 encode mediator components. Our results suggest that Rpb4, along with some other general transcription factors, plays a specialized role in a transcriptional pathway that controls the cell cycle-regulated transcription of a specific subset of genes involved in cell division.
RNA聚合酶II是一个由12个亚基(Rpb1至Rpb12)组成的复合体,其具体作用仅部分为人所知。Rpb4在哺乳动物和裂殖酵母中是必需的,但在芽殖酵母中不是。为了更多地了解Rpb4的作用,我们在裂殖酵母中,在不同强度的可调控启动子的控制下表达rpb4基因。我们证明,在转录的关键水平以下,Rpb4对细胞生长的影响与其表达水平成正比:与表达较高水平rpb4的细胞相比,表达较低水平rpb4的细胞生长较慢。降低rpb4的表达在几种应激条件下不影响细胞存活,但会导致细胞分离出现类似于sep突变体的特定缺陷。微阵列分析表明,降低rpb4的表达会导致基因表达整体下降,但有一个独特的基因子集的转录水平对rpb4表达的变化特别敏感。这些基因与细胞分离所需的Sep1-Ace2转录级联反应所调控的基因有一些重叠。最值得注意的是,rpb4表达降低的细胞的基因表达特征与mcs6、pmh1、sep10和sep15突变体的基因表达特征高度相似。Mcs6和Pmh1编码后生动物TFIIH相关的细胞周期蛋白依赖性激酶(CDK)激活激酶(Cdk7-细胞周期蛋白H-Mat1)的直系同源物,而Sep10和Sep15编码中介体成分。我们的结果表明,Rpb4与其他一些通用转录因子一起,在一个转录途径中发挥特殊作用,该途径控制参与细胞分裂的特定基因子集的细胞周期调控转录。