Metabolic and Nonmetabolic Functions of PSAT1 Coordinate Signaling Cascades to Confer EGFR Inhibitor Resistance and Drive Progression in Lung Adenocarcinoma

埃罗替尼 腺癌 癌症研究 癌变 肺癌 转移 医学 下调和上调 癌症 生物 药理学 内科学 表皮生长因子受体 生物化学 基因
作者
Mingyu Luo,Ye Zhou,Wei-ming Gu,Cheng Wang,Ning-xiang Shen,Jiang-Kai Dong,Hui‐Min Lei,Ya‐Bin Tang,Qian Liang,Jing-Hua Zou,Lu Xu,Ping Ma,Guanglei Zhuang,Ling Bi,Ling Xu,Liang Zhu,Hongzhuan Chen,Ying Shen
出处
期刊:Cancer Research [American Association for Cancer Research]
卷期号:82 (19): 3516-3531 被引量:10
标识
DOI:10.1158/0008-5472.can-21-4074
摘要

Abstract Emerging evidence demonstrates that the dysregulated metabolic enzymes can accelerate tumorigenesis and progression via both metabolic and nonmetabolic functions. Further elucidation of the role of metabolic enzymes in EGFR inhibitor resistance and metastasis, two of the leading causes of death in lung adenocarcinoma, could help improve patient outcomes. Here, we found that aberrant upregulation of phosphoserine aminotransferase 1 (PSAT1) confers erlotinib resistance and tumor metastasis in lung adenocarcinoma. Depletion of PSAT1 restored sensitivity to erlotinib and synergistically augmented the tumoricidal effect. Mechanistically, inhibition of PSAT1 activated the ROS-dependent JNK/c-Jun pathway to induce cell apoptosis. In addition, PSAT1 interacted with IQGAP1, subsequently activating STAT3-mediated cell migration independent of its metabolic activity. Clinical analyses showed that PSAT1 expression positively correlated with the progression of human lung adenocarcinoma. Collectively, these findings reveal the multifunctionality of PSAT1 in promoting tumor malignancy through its metabolic and nonmetabolic activities. Significance: Metabolic and nonmetabolic functions of PSAT1 confer EGFR inhibitor resistance and promote metastasis in lung adenocarcinoma, suggesting therapeutic targeting of PSAT1 may attenuate the malignant features of lung cancer.
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