Molecular Cardiology Research Institute, Tufts Medical Center and Department of Medicine, Tufts University School of Medicine, Boston, MA 02111, USA.
Mol Biol Cell. 2010 Apr 15;21(8):1335-49. doi: 10.1091/mbc.e09-09-0818. Epub 2010 Feb 24.
Autophagy is a cytoprotective pathway used to degrade and recycle cytoplasmic content. Dysfunctional autophagy has been linked to both cancer and cardiomyopathies. Here, we show a role for the transcriptional regulator p8 in autophagy. p8 RNA interference (RNAi) increases basal autophagy markers in primary cardiomyocytes, in H9C2 and U2OS cells, and decreases cellular viability after autophagy induction. This autophagy is associated with caspase activation and is blocked by atg5 silencing and by pharmacological inhibitors. FoxO3 transcription factor was reported to activate autophagy by enhancing the expression of autophagy-related genes. P8 expression represses FoxO3 transcriptional activity, and p8 knockdown affects FoxO3 nuclear localization. Thus, p8 RNAi increases FoxO3 association with bnip3 promoter, a known proautophagic FoxO3 target, resulting in higher bnip3 RNA and protein levels. Accordingly, bnip3 knockdown restores cell viability and blocks apoptosis of p8-deficient cells. In vivo, p8 -/- mice have higher autophagy and express higher cardiac bnip3 levels. These mice develop left ventricular wall thinning and chamber dilation, with consequent impaired cardiac function. Our studies provide evidence of a p8-dependent mechanism regulating autophagy by acting as FoxO3 corepressor, which may be relevant for diseases associated with dysregulated autophagy, as cardiovascular pathologies and cancer.
自噬是一种细胞保护途径,用于降解和回收细胞质内容物。功能失调的自噬与癌症和心肌病都有关联。在这里,我们展示了转录调节剂 p8 在自噬中的作用。p8 RNA 干扰 (RNAi) 增加了原代心肌细胞、H9C2 和 U2OS 细胞中的基础自噬标志物,并在自噬诱导后降低了细胞活力。这种自噬与半胱天冬酶激活有关,并被 atg5 沉默和药理学抑制剂阻断。FoxO3 转录因子通过增强自噬相关基因的表达来激活自噬。p8 表达抑制 FoxO3 的转录活性,p8 敲低影响 FoxO3 的核定位。因此,p8 RNAi 增加了 FoxO3 与 bnip3 启动子的结合,bnip3 是已知的促进自噬的 FoxO3 靶标,导致 bnip3 RNA 和蛋白水平升高。相应地,bnip3 敲低恢复了 p8 缺陷细胞的活力并阻断了细胞凋亡。在体内,p8 -/- 小鼠的自噬水平更高,心脏中表达的 bnip3 水平也更高。这些小鼠出现左心室壁变薄和心室扩张,导致心脏功能受损。我们的研究提供了证据,表明 p8 通过作为 FoxO3 辅阻遏物来调节自噬的机制,这可能与与自噬失调相关的疾病有关,如心血管疾病和癌症。