Molecular Biology Institute of Barcelona, CSIC, 08028 Barcelona, Spain, Department of Biology, University of Crete, 71409 Heraklion, Greece, Department of Genetics and ERI Biotecmed, University of Valencia, 46100 Burjassot, Spain, Centre for Genomic Regulation (CRG), 08003 Barcelona, Spain and Department of Biochemistry and Molecular Biology and ERI Biotecmed, University of Valencia, 46100 Burjassot, Spain.
Nucleic Acids Res. 2013 Nov;41(20):9243-56. doi: 10.1093/nar/gkt707. Epub 2013 Aug 9.
Eukaryotic topoisomerase II (topo II) is the essential decatenase of newly replicated chromosomes and the main relaxase of nucleosomal DNA. Apart from these general tasks, topo II participates in more specialized functions. In mammals, topo IIα interacts with specific RNA polymerases and chromatin-remodeling complexes, whereas topo IIβ regulates developmental genes in conjunction with chromatin remodeling and heterochromatin transitions. Here we show that in budding yeast, topo II regulates the expression of specific gene subsets. To uncover this, we carried out a genomic transcription run-on shortly after the thermal inactivation of topo II. We identified a modest number of genes not involved in the general stress response but strictly dependent on topo II. These genes present distinctive functional and structural traits in comparison with the genome average. Yeast topo II is a positive regulator of genes with well-defined promoter architecture that associates to chromatin remodeling complexes; it is a negative regulator of genes extremely hypo-acetylated with complex promoters and undefined nucleosome positioning, many of which are involved in polyamine transport. These findings indicate that yeast topo II operates on singular chromatin architectures to activate or repress DNA transcription and that this activity produces functional responses to ensure chromatin stability.
真核拓扑异构酶 II(topo II)是新复制染色体的必需解链酶,也是核小体 DNA 的主要松弛酶。除了这些一般功能外,topo II 还参与了更专门的功能。在哺乳动物中,topo IIα 与特定的 RNA 聚合酶和染色质重塑复合物相互作用,而 topo IIβ 与染色质重塑和异染色质转变一起调节发育基因。在这里,我们表明在 budding yeast 中,topo II 调节特定基因子集的表达。为了揭示这一点,我们在热失活 topo II 后不久进行了基因组转录运行。我们鉴定了一小部分不参与一般应激反应但严格依赖 topo II 的基因。与基因组平均值相比,这些基因具有独特的功能和结构特征。酵母 topo II 是具有明确定义启动子结构的基因的正调节剂,与染色质重塑复合物相关联;它是具有复杂启动子和未定义核小体定位的极度低乙酰化基因的负调节剂,其中许多基因参与多胺转运。这些发现表明,酵母 topo II 在独特的染色质结构上运作,以激活或抑制 DNA 转录,并且这种活性产生功能反应以确保染色质稳定性。