1. iASPP-Mediated ROS Inhibition Drives 5-Fu Resistance Dependent on Nrf2 Antioxidative Signaling Pathway in Gastric Adenocarcinoma
- Author
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Jianli Hu, Pindong Li, Renwang Chen, Shengli Yang, Qiu-Shuang Wang, Heng Fan, Bashir Kaspo, and Lu Wen
- Subjects
Antimetabolites, Antineoplastic ,Physiology ,NF-E2-Related Factor 2 ,Apoptosis ,Adenocarcinoma ,digestive system ,environment and public health ,03 medical and health sciences ,GSTP1 ,Gastric adenocarcinoma ,0302 clinical medicine ,Western blot ,Cell Movement ,Stomach Neoplasms ,Cell Line, Tumor ,medicine ,Humans ,medicine.diagnostic_test ,Chemistry ,Gastroenterology ,Intracellular Signaling Peptides and Proteins ,respiratory system ,Alternative treatment ,Repressor Proteins ,Glutathione S-Transferase pi ,Drug Resistance, Neoplasm ,030220 oncology & carcinogenesis ,Cancer research ,030211 gastroenterology & hepatology ,Fluorouracil ,Signal transduction ,Reactive Oxygen Species ,Intracellular ,Heme Oxygenase-1 ,Nrf2 signaling ,Signal Transduction - Abstract
Inhibitor for the apoptosis-stimulating protein of p53 (iASPP) has been reported to be correlated with 5-fluorouracil (5-Fu) resistance in renal cell carcinoma. Here, we uncover mechanisms of iASPP-Nrf2-ROS regulation of 5-Fu resistance which are important for the development of alternative treatment strategies for gastric adenocarcinoma treatment. We analyzed iASPP and Nrf2 through TCGA RNA-seq data, UALCAN analysis, and cBioPortal datasets. Intracellular ROS generation was determined by 2′,7′-dichloro-fluorescin diacetate staining. Transwell was used to evaluate the invasion. The expression of iASPP, Nrf2, HO-1, and GSTP1 was tested using western blot. We found that iASPP KD led to an apparent 5-Fu-induced ROS accumulation in MGC803 and SCG790 cells. Accompanied by iASPP KD, Nrf2 was markedly decreased. iASPP-induced ROS inhibition relies on Nrf2, and due to both knocked down iASPP and Nrf2, the level of ROS did not show an obvious difference with Nrf2 KD solely. Similarly, iASPP KD failed to enhance the Nrf2 KD-mediated ROS accumulation after 5-Fu treatment, suggesting that iASPP-induced antioxidative effects related to 5-Fu resistance are partially dependent on Nrf2. Also, the combination of iASPP KD and Nrf2 KD did not show any synergistic effect on apoptosis after 5-Fu treatment in MGC803 and SCG790 cells. Further studies revealed that iASPP KD or Nrf2 KD could decrease the expression of HO-1 and GSTP1. Our data highlight that iASPP plays a crucial role in the inhibition of 5-Fu-induced apoptosis resistance by removing ROS accumulation in gastric adenocarcinoma, and that the removal of ROS induced by iASPP is Nrf2 signaling dependent.
- Published
- 2019