Chiacchiera F, Matrone A, Ferrari E, Ingravallo G, Lo Sasso G, Murzilli S, Petruzzelli M, Salvatore L, Moschetta A, Simone C
Laboratory of Signal-dependent Transcription, Department of Translational Pharmacology, Consorzio Mario Negri Sud, Santa Maria Imbaro, Ch 66030, Italy.
Cell Death Differ. 2009 Sep;16(9):1203-14. doi: 10.1038/cdd.2009.36. Epub 2009 Apr 3.
Colorectal cancer cell (CRC) fate is governed by an intricate network of signaling pathways, some of which are the direct target of DNA mutations, whereas others are functionally deregulated. As a consequence, cells acquire the ability to grow under nutrients and oxygen shortage conditions. We earlier reported that p38alpha activity is necessary for proliferation and survival of CRCs in a cell type-specific manner and regardless of their phenotype and genotype. Here, we show that p38alpha sustains the expression of HIF1alpha target genes encoding for glycolytic rate-limiting enzymes, and that its inhibition causes a drastic decrease in ATP intracellular levels in CRCs. Prolonged inactivation of p38alpha triggers AMPK-dependent nuclear localization of FoxO3A and subsequent activation of its target genes, leading to autophagy, cell cycle arrest and cell death. In vivo, pharmacological blockade of p38alpha inhibits CRC growth in xenografted nude mice and azoxymethane-treated Apc(Min) mice, achieving both a cytostatic and cytotoxic effect, associated with high nuclear expression of FoxO3A and increased expression of its target genes p21 and PTEN. Hence, inhibition of p38alpha affects the aerobic glycolytic metabolism specific of cancer cells and might be taken advantage of as a therapeutic strategy targeted against CRCs.
结肠直肠癌细胞(CRC)的命运受复杂的信号通路网络调控,其中一些是DNA突变的直接靶点,而其他一些则在功能上失调。因此,细胞获得了在营养和氧气短缺条件下生长的能力。我们之前报道过,p38α活性以细胞类型特异性方式对CRC的增殖和存活是必需的,且与它们的表型和基因型无关。在此,我们表明p38α维持编码糖酵解限速酶的HIF1α靶基因的表达,并且其抑制导致CRC细胞内ATP水平急剧下降。p38α的长期失活触发FoxO3A的AMPK依赖性核定位及其靶基因的随后激活,导致自噬、细胞周期停滞和细胞死亡。在体内,p38α的药理学阻断抑制异种移植裸鼠和经氧化偶氮甲烷处理的Apc(Min)小鼠中的CRC生长,实现细胞生长抑制和细胞毒性作用,这与FoxO3A的高核表达及其靶基因p21和PTEN的表达增加相关。因此,抑制p38α影响癌细胞特有的有氧糖酵解代谢,并且可能被用作针对CRC的治疗策略。