Higashino Ayako, Shiwa Yuh, Yoshikawa Hirofumi, Kokubo Tetsuro, Kasahara Koji
a Department of Bioscience , Tokyo University of Agriculture , Tokyo , Japan.
Biosci Biotechnol Biochem. 2015;79(3):384-93. doi: 10.1080/09168451.2014.978258. Epub 2014 Nov 20.
Hmo1, a member of the high mobility group B family proteins in Saccharomyces cerevisiae, associates with the promoters of ribosomal protein genes (RPGs) to direct accurate transcriptional initiation. Here, to identify factors involved in the binding of Hmo1 to its targets and the mechanism of Hmo1-dependent transcriptional initiation, we developed a novel reporter system using the promoter of the RPG RPS5. A genetic screen did not identify any factors that influence Hmo1 binding, but did identify a number of mutations in Hmo1 that impair its DNA binding activity in vivo and in vitro. These results suggest that Hmo1 binds to its target promoters autonomously without any aid of additional factors. Furthermore, characterization of Hmo1 mutants showed that the box A domain plays a pivotal role in DNA binding and may be required for the recognition of structural properties of target promoters that occur in native chromatin.
Hmo1是酿酒酵母中高迁移率族B家族蛋白的成员,它与核糖体蛋白基因(RPG)的启动子结合以指导准确的转录起始。在此,为了鉴定参与Hmo1与其靶标结合的因子以及Hmo1依赖性转录起始的机制,我们利用RPG RPS5的启动子开发了一种新型报告系统。遗传筛选未鉴定出任何影响Hmo1结合的因子,但确实鉴定出Hmo1中的一些突变,这些突变在体内和体外均损害其DNA结合活性。这些结果表明,Hmo1无需任何其他因子的帮助即可自主结合其靶标启动子。此外,Hmo1突变体的表征表明,A框结构域在DNA结合中起关键作用,可能是识别天然染色质中靶标启动子结构特性所必需的。