Azzouz Nowel, Panasenko Olesya O, Deluen Cécile, Hsieh Julien, Theiler Grégory, Collart Martine A
Department of Microbiology and Molecular Medicine, Faculty of Medicine, University of Geneva, Geneva 4, Switzerland.
RNA. 2009 Mar;15(3):377-83. doi: 10.1261/rna.1348209. Epub 2009 Jan 20.
In this work we used micro-array experiments to determine the role of each nonessential subunit of the conserved Ccr4-Not complex in the control of gene expression in the yeast Saccharomyces cerevisiae. The study was performed with cells growing exponentially in high glucose and with cells grown to glucose depletion. Specific patterns of gene deregulation were observed upon deletion of any given subunit, revealing the specificity of each subunit's function. Consistently, the purification of the Ccr4-Not complex through Caf40p by tandem affinity purification from wild-type cells or cells lacking individual subunits of the Ccr4-Not complex revealed that each subunit had a particular impact on complex integrity. Furthermore, the micro-arrays revealed that the role of each subunit was specific to the growth conditions. From the study of only two different growth conditions, revealing an impact of the Ccr4-Not complex on more than 85% of all studied genes, we can infer that the Ccr4-Not complex is important for expression of most of the yeast genome.
在这项工作中,我们利用微阵列实验来确定保守的Ccr4-Not复合物的每个非必需亚基在酿酒酵母基因表达调控中的作用。该研究在高葡萄糖中指数生长的细胞以及生长至葡萄糖耗尽的细胞中进行。在缺失任何给定亚基时观察到了特定的基因失调模式,揭示了每个亚基功能的特异性。同样,通过串联亲和纯化从野生型细胞或缺乏Ccr4-Not复合物单个亚基的细胞中通过Caf40p纯化Ccr4-Not复合物,结果表明每个亚基对复合物的完整性都有特定影响。此外,微阵列显示每个亚基的作用对生长条件具有特异性。通过对仅两种不同生长条件的研究,揭示了Ccr4-Not复合物对所有研究基因中超过85%的基因有影响,我们可以推断Ccr4-Not复合物对大多数酵母基因组的表达很重要。