Mikami Hiroki, Saito Youhei, Okamoto Namiko, Kakihana Ayana, Kuga Takahisa, Nakayama Yuji
Department of Biochemistry and Molecular Biology, Kyoto Pharmaceutical University, 5 Nakauchi-cho, Misasagi, Yamashina-ku, Kyoto 607-8414, Japan.
Department of Biochemistry and Molecular Biology, Kyoto Pharmaceutical University, 5 Nakauchi-cho, Misasagi, Yamashina-ku, Kyoto 607-8414, Japan.
Exp Cell Res. 2017 Mar 15;352(2):225-233. doi: 10.1016/j.yexcr.2017.02.004. Epub 2017 Feb 6.
The mammalian stress protein Hsp105α protects cells from stress conditions. Several studies have indicated that Hsp105α is overexpressed in many types of solid tumors, which contain hypoxic microenvironments. However, the role of Hsp105α in hypoxic tumors remains largely unknown. We herein demonstrated the involvement of Hsp105α in HIF-1 functions induced by the hypoxia-mimetic agent CoCl. While Hsp105α is mainly localized in the cytoplasm under normal conditions, a treatment with CoCl induces the nuclear localization of Hsp105α, which correlated with HIF-1α expression levels. The overexpression of degradation-resistant HIF-1α enhances the nuclear localization of Hsp105α without the CoCl treatment. The CoCl-dependent transcriptional activation of HIF-1, which is measured using a reporter gene containing a HIF-responsive element, is reduced by the knockdown of Hsp105α. Furthermore, the CoCl-induced accumulation of HIF-1α is enhanced by heat shock, which results in the nuclear localization of Hsp105, and is suppressed by the knockdown of Hsp105. Hsp105 associates with HIF-1α in CoCl-treated cells. These results suggest that Hsp105α plays an important role in the functions of HIF-1 under hypoxic conditions, in which Hsp105α enhances the accumulation and transcriptional activity of HIF-1 through the HIF-1α-mediated nuclear localization of Hsp105α.
哺乳动物应激蛋白Hsp105α可保护细胞免受应激条件影响。多项研究表明,Hsp105α在许多含有缺氧微环境的实体瘤类型中过表达。然而,Hsp105α在缺氧肿瘤中的作用仍 largely未知。我们在此证明了Hsp105α参与了由缺氧模拟剂CoCl诱导的HIF-1功能。在正常条件下,Hsp105α主要定位于细胞质中,而CoCl处理可诱导Hsp105α的核定位,这与HIF-1α表达水平相关。抗降解HIF-1α的过表达在未进行CoCl处理的情况下增强了Hsp105α的核定位。使用含有HIF反应元件的报告基因测量的HIF-1的CoCl依赖性转录激活,通过敲低Hsp105α而降低。此外,热休克增强了CoCl诱导的HIF-1α积累,这导致Hsp105的核定位,并被敲低Hsp105所抑制。在CoCl处理的细胞中,Hsp105与HIF-1α结合。这些结果表明,Hsp105α在缺氧条件下HIF-1的功能中起重要作用,其中Hsp105α通过HIF-1α介导的Hsp105α核定位增强了HIF-1的积累和转录活性。