Inouye Sachiye, Kubo Takanori, Miyamoto Takafumi, Iyoda Takuya, Okita Naoyuki, Akagi Reiko
Department of Pharmacy, Faculty of Pharmaceutical Sciences, Sanyo-Onoda City University, Yamaguchi, Japan.
Department of Pharmacy, Yasuda Women's University, Hiroshima, Japan.
Genes Cells. 2022 Dec;27(12):719-730. doi: 10.1111/gtc.12986. Epub 2022 Oct 20.
The induction mechanism of heme oxygenase-1 (HO-1) by heat shock (HS) is still unknown. Here, we discovered that HS activates the HO-1 expression in a mouse hepatoma cell line (Hepa 1-6). Knockdown experiments showed that the HS-induced HO-1 expression was dependent on HS factor 1 (HSF1). A chromatin immunoprecipitation (ChIP) assay demonstrated that the HS-activated HSF1 bound to the HS elements (HSEs) in the upstream enhancer 1 region (E1). Unexpectedly, HS also facilitates the BTB and CNC homology 1 (BACH1) binding to the Maf recognition elements (MAREs) in E1. We examined the effects of a catalytically inactive CRISPR-associated 9 nucleases (dCas9) with short guide RNAs (sgRNAs), and demonstrated that the HSF1 binding to HSEs in E1 was indispensable for the HS-induced HO-1 expression. Heme treatment (HA) dissociates BACH1 from MAREs and facilitated the binding of nuclear factor-erythroid-2-related factor 2 (NRF2) to MAREs. Following treatment with both HS and HA, the HO-1 induction and the HSF1 binding to HSEs in E1 were most notably observed. These results indicate that the HS-induced HO-1 expression is dependent on the HSF1 binding to HSEs in E1, although modulated by the BACH1 and NRF2 binding to MAREs within the same E1.
热休克(HS)诱导血红素加氧酶-1(HO-1)的机制仍不清楚。在此,我们发现热休克可激活小鼠肝癌细胞系(Hepa 1-6)中HO-1的表达。敲低实验表明,热休克诱导的HO-1表达依赖于热休克因子1(HSF1)。染色质免疫沉淀(ChIP)分析表明,热休克激活的HSF1与上游增强子1区域(E1)中的热休克元件(HSEs)结合。出乎意料的是,热休克还促进BTB和CNC同源物1(BACH1)与E1中的Maf识别元件(MAREs)结合。我们检测了带有短链引导RNA(sgRNAs)的催化失活的CRISPR相关9核酸酶(dCas9)的作用,并证明HSF1与E1中HSEs的结合对于热休克诱导的HO-1表达是必不可少的。血红素处理(HA)使BACH1与MAREs解离,并促进核因子红细胞2相关因子2(NRF2)与MAREs的结合。在热休克和血红素处理后,最显著地观察到了HO-1的诱导以及HSF1与E1中HSEs的结合。这些结果表明,热休克诱导的HO-1表达依赖于HSF1与E1中HSEs的结合,尽管受到同一E1内BACH1和NRF2与MAREs结合的调节。