安普克
生物
细胞生物学
氧化应激
AMP活化蛋白激酶
双重角色
内分泌学
磷酸化
蛋白激酶A
化学
组合化学
作者
Eunji Choi,Hyun‐Taek Oh,Seon-Hyeong Lee,Chen‐Song Zhang,Mengqi Li,Soo‐Youl Kim,Sunghyouk Park,Tong‐Shin Chang,Byung‐Hoon Lee,Sheng-Cai Lin,Sang‐Min Jeon
出处
期刊:Autophagy
[Informa]
日期:2024-07-02
卷期号:: 1-21
被引量:2
标识
DOI:10.1080/15548627.2024.2374692
摘要
Co-occurring mutations in KEAP1 in STK11/LKB1-mutant NSCLC activate NFE2L2/NRF2 to compensate for the loss of STK11-AMPK activity during metabolic adaptation. Characterizing the regulatory crosstalk between the STK11-AMPK and KEAP1-NFE2L2 pathways during metabolic stress is crucial for understanding the implications of co-occurring mutations. Here, we found that metabolic stress increased the expression and phosphorylation of SQSTM1/p62, which is essential for the activation of NFE2L2 and AMPK, synergizing antioxidant defense and tumor growth. The SQSTM1-driven dual activation of NFE2L2 and AMPK was achieved by inducing macroautophagic/autophagic degradation of KEAP1 and facilitating the AXIN-STK11-AMPK complex formation on the lysosomal membrane, respectively. In contrast, the STK11-AMPK activity was also required for metabolic stress-induced expression and phosphorylation of SQSTM1, suggesting a double-positive feedback loop between AMPK and SQSTM1. Mechanistically, SQSTM1 expression was increased by the PPP2/PP2A-dependent dephosphorylation of TFEB and TFE3, which was induced by the lysosomal deacidification caused by low glucose metabolism and AMPK-dependent proton reduction. Furthermore, SQSTM1 phosphorylation was increased by MAP3K7/TAK1, which was activated by ROS and pH-dependent secretion of lysosomal Ca
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