Hogues Hervé, Lavoie Hugo, Sellam Adnane, Mangos Maria, Roemer Terry, Purisima Enrico, Nantel André, Whiteway Malcolm
Biotechnology Research Institute, National Research Council, Montreal, QC H4P 2R2, Canada.
Mol Cell. 2008 Mar 14;29(5):552-62. doi: 10.1016/j.molcel.2008.02.006.
Coordinated ribosomal protein (RP) gene expression is crucial for cellular viability, but the transcriptional network controlling this regulon has only been well characterized in the yeast Saccharomyces cerevisiae. We have used whole-genome transcriptional and location profiling to establish that, in Candida albicans, the RP regulon is controlled by the Myb domain protein Tbf1 working in conjunction with Cbf1. These two factors bind both the promoters of RP genes and the rDNA locus; Tbf1 activates transcription at these loci and is essential. Orthologs of Tbf1 bind TTAGGG telomeric repeats in most eukaryotes, and TTAGGG cis-elements are present upstream of RP genes in plants and fungi, suggesting that Tbf1 was involved in both functions in ancestral eukaryotes. In all Hemiascomycetes, Rap1 substituted Tbf1 at telomeres and, in the S. cerevisiae lineage, this substitution also occurred independently at RP genes, illustrating the extreme adaptability and flexibility of transcriptional regulatory networks.
核糖体蛋白(RP)基因的协调表达对细胞活力至关重要,但控制该调控子的转录网络仅在酿酒酵母中得到了充分表征。我们利用全基因组转录和定位分析确定,在白色念珠菌中,RP调控子由与Cbf1协同作用的Myb结构域蛋白Tbf1控制。这两个因子结合RP基因的启动子和rDNA位点;Tbf1激活这些位点的转录,并且是必不可少的。在大多数真核生物中,Tbf1的直系同源物结合TTAGGG端粒重复序列,并且在植物和真菌的RP基因上游存在TTAGGG顺式元件,这表明Tbf1在祖先真核生物中参与了这两种功能。在所有半子囊菌中,Rap1在端粒处取代了Tbf1,并且在酿酒酵母谱系中,这种取代也在RP基因处独立发生,这说明了转录调控网络的极端适应性和灵活性。