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Nrf2-p62 autophagy pathway and its response to oxidative stress in hepatocellular carcinoma

机译:NRF2-P62自噬途径及其对肝细胞癌氧化应激的反应

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Deregulation of autophagy is proposed to play a key pathogenic role in hepatocellular carcinoma (HCC), the most common primary malignancy of the liver and the third leading cause of cancer death. Autophagy is an evolutionarily conserved catabolic process activated to degrade and recycle cell's components. Under stress conditions, such as oxidative stress and nutrient deprivation, autophagy is an essential survival pathway that operates in harmony with other stress response pathways. These include the redox-sensitive transcription complex Nrf2-Keap1 that controls groups of genes with roles in detoxification and antioxidant processes, intermediary metabolism, and cell cycle regulation. Recently, a functional association between a dysfunctional autophagy and Nrf2 pathway activation has been identified in HCC. This appears to occur through the physical interaction of the autophagy adaptor p62 with the Nrf2 inhibitor Keap1, thus leading to increased stabilization and transcriptional activity of Nrf2, a key event in reprogramming metabolic and stress response pathways of proliferating hepatocarcinoma cells. These emerging molecular mechanisms and the therapeutic perspective of targeting Nrf2-p62 interaction in HCC are discussed in this paper along with the prognostic value of autophagy in this type of cancer.
机译:提出了对自噬的放松抑制,在肝细胞癌(HCC)中发挥关键致病作用,肝脏最常见的原发性恶性肿瘤以及癌症死亡的第三个主要原因。自噬是一种流变的保守的分解代谢过程,激活以降解和再循环电池的组件。在胁迫条件下,例如氧化应激和营养剥夺,自噬是一种基本的存活途径,其与其他应激响应途径相处和谐。这些包括氧化还原敏感性转录复合NRF2-Keap1,其控制具有解毒和抗氧化方法,中间代谢和细胞周期调节的作用的基因组。最近,在HCC中鉴定了功能障碍自噬和NRF2途径激活之间的功能关系。这似乎通过自噬添加剂P62与NRF2抑制剂Keap1的物理相互作用发生,从而导致NRF2的稳定性和转录活性,是重编程代谢和增殖肝癌细胞的应激响应途径的关键事件。本文讨论了这些新兴的分子机制和靶向NRF2-P62相互作用的治疗性观点,以及这种癌症中自噬的预后价值。

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