Fujimoto Mitsuaki, Oshima Koji, Shinkawa Toyohide, Wang Bei Bei, Inouye Sachiye, Hayashida Naoki, Takii Ryosuke, Nakai Akira
Department of Biochemistry, Yamaguchi University School of Medicine, Minami-Kogushi 1-1-1, Ube 755-8505, Japan.
J Biol Chem. 2008 Oct 31;283(44):29961-70. doi: 10.1074/jbc.M804629200. Epub 2008 Aug 27.
Heat shock transcription factors (HSFs) regulate gene expression in response to heat shock and in physiological conditions. In mammals, HSF1 is required for heat-mediated induction of classic heat shock genes; however, we do not know the molecular mechanisms by which HSF4 regulates gene expression or the biological consequences of its binding to chromatin. Here, we identified that HSF4 binds to various genomic regions, including the introns and distal parts of protein-coding genes in vivo in mouse lenses, and a substantial numbers of the regions were also occupied by HSF1 and HSF2. HSF4 regulated expression of some genes at a developmental stage when HSF1 and HSF2 expression decreased. Although HSF4 binding did not affect expression of many genes, it induces demethylated status of histone H3K9 on the binding regions. Unexpectedly, a lot of HSF4 targets were induced by heat shock treatment, and HSF4 is required for induction of a set of non-classic heat shock genes in response to heat shock, in part by facilitating HSF1 binding through chromatin modification. These results suggest novel mechanisms of gene regulation controlled by HSF4 in non-classic heat shock response and in lens development.
热休克转录因子(HSFs)在热休克反应和生理条件下调节基因表达。在哺乳动物中,热介导的经典热休克基因诱导需要HSF1;然而,我们尚不清楚HSF4调节基因表达的分子机制及其与染色质结合的生物学后果。在这里,我们发现HSF4在小鼠晶状体体内与各种基因组区域结合,包括蛋白质编码基因的内含子和远端部分,并且大量这些区域也被HSF1和HSF2占据。在HSF1和HSF2表达下降的发育阶段,HSF4调节一些基因的表达。虽然HSF4的结合不影响许多基因的表达,但它会诱导结合区域上组蛋白H3K9的去甲基化状态。出乎意料的是,许多HSF4靶标在热休克处理后被诱导,并且HSF4是响应热休克诱导一组非经典热休克基因所必需的,部分是通过染色质修饰促进HSF1结合来实现的。这些结果表明了HSF4在非经典热休克反应和晶状体发育中控制基因调节的新机制。