Growth Factor Group, Cancer Research UK, Molecular Oncology Laboratories, Weatherall Institute of Molecular Medicine, John Radcliffe Hospital, University of Oxford, Headington, Oxford, OX3 9DS, UK.
Mol Biol Rep. 2012 Dec;39(12):10811-22. doi: 10.1007/s11033-012-1975-3. Epub 2012 Oct 23.
Intratumoral hypoxia is associated with poor prognosis, regardless of the mode of therapy. Cancer cells survive this condition through activating several adaptive signaling pathways, including the integrated stress response (ISR) and autophagy. Activating transcription factor 4 (ATF4) is the major transcriptional mediator of the ISR, which we have shown to be involved in autophagy regulation to protect cells from severe hypoxia. Here we demonstrate that ATF4 orchestrates a program of BH3-only protein expression in severe hypoxia. We find that the BH3-only proteins HRK, PUMA, and NOXA are transcriptionally induced in severe hypoxia and that their expression is abrogated by RNA interference against ATF4. In particular, we show that the BH3-only protein harakiri (HRK) is transactivated by ATF4 in severe hypoxia through direct binding of ATF4 to the promoter region. Furthermore, we demonstrate through siRNA knockdown that HRK induces autophagy and promotes cancer cell survival in severe hypoxia.
肿瘤内缺氧与预后不良有关,无论治疗方式如何。癌细胞通过激活几种适应性信号通路来在这种情况下存活,包括整合应激反应(ISR)和自噬。激活转录因子 4(ATF4)是 ISR 的主要转录介体,我们已经表明它参与自噬调节以保护细胞免受严重缺氧的影响。在这里,我们证明 ATF4 在严重缺氧下协调了一种仅 BH3 蛋白的表达程序。我们发现,仅 BH3 蛋白 HRK、PUMA 和 NOXA 在严重缺氧下被转录诱导,并且它们的表达被针对 ATF4 的 RNA 干扰所消除。特别是,我们表明仅 BH3 蛋白 harakiri(HRK)通过 ATF4 与启动子区域的直接结合在严重缺氧下被 ATF4 反式激活。此外,我们通过 siRNA 敲低证明 HRK 在严重缺氧下诱导自噬并促进癌细胞存活。