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AMPK-FoxO3A 轴作为癌症治疗的靶点。

The AMPK-FoxO3A axis as a target for cancer treatment.

机构信息

Laboratory of Signal-dependent Transcription; Department of Translational Pharmacology, Consorzio Mario Negri Sud, Santa Maria Imbaro, Chieti, Italy.

出版信息

Cell Cycle. 2010 Mar 15;9(6):1091-6. doi: 10.4161/cc.9.6.11035.

Abstract

FoxO proteins are an evolutionarily conserved subfamily of transcription factors involved in tumor suppression, regulation of energy metabolism and development in several tissues, and are mainly regulated by phosphorylation-dependent nuclear/cytoplasmic shuttling. The transcriptional activity of FoxO3A, one of the four members of the family, is further modulated by AMPK, one of the key regulators of cellular metabolism, which basically shifts cell machinery from energy-consuming to energy-producing pathways. We recently demonstrated that the AMPK/FoxO3A energy sensor pathway is still inducible in human cancer cells in response to metabolic stress, as it becomes activated in colorectal and ovarian cancer cells in response to the inhibition of p38α. Activation of the FoxO3A transcriptional program initially induces autophagy as an attempt to retain energy to survive, whereas under persistent stress conditions it triggers autophagic cell death. In this review, we focus on the connections between AMPK and FoxO3A, describing their central role as modulators of fundamental processes such as stress resistance, cell metabolism, autophagy and cell death, and highlighting the therapeutic potential of pharmacological modulation of the AMPK-FoxO3A axis.

摘要

FoxO 蛋白是一类进化上保守的转录因子亚家族,参与肿瘤抑制、能量代谢调节和几种组织的发育,主要受磷酸化依赖性核质穿梭调节。FoxO3A 是该家族的四个成员之一,其转录活性进一步受到 AMPK 的调节,AMPK 是细胞代谢的关键调节剂之一,它基本上将细胞机制从耗能途径转移到产能途径。我们最近证明,AMPK/FoxO3A 能量传感器通路在人类癌细胞中仍能对代谢应激产生反应,因为它在结直肠和卵巢癌细胞中对 p38α 的抑制有反应而被激活。FoxO3A 转录程序的激活最初诱导自噬作为保留能量以生存的尝试,而在持续的应激条件下,它会触发自噬性细胞死亡。在这篇综述中,我们重点关注 AMPK 和 FoxO3A 之间的联系,描述它们作为应激抵抗、细胞代谢、自噬和细胞死亡等基本过程调节剂的核心作用,并强调药理学调节 AMPK-FoxO3A 轴的治疗潜力。

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