Literature DB >> 28260004

GSH depletion and consequent AKT inhibition contribute to the Nrf2 knockdown-induced decrease in proliferation in glioblastoma U251 cells.

Yue Jia1, Han-Dong Wang1, Qiang Wang1, Hui Ding2, He-Ming Wu3, Hao Pan1.   

Abstract

Nuclear factor erythroid 2-related factor 2 (Nrf2), a pivotal transcription regulator that controls the expression of numerous antioxidant and cytoprotective genes, was recently defined as a proto-oncogene. However, the role and mechanism of Nrf2 in glioma pathoetiology remain unclear. In the present study, we first evaluated the expression patterns of Nrf2 in normal human astrocytes and 3 glioblastoma (GBM) cell lines (U251, U87 and A172) and found that all 3 GBM cell lines overexpressed Nrf2, with the highest level observed in the U251 cells. We further assessed the biological effects of Nrf2 in U251 cells by specific knockdown of Nrf2 using lentivirus‑mediated RNA interference. We discovered that Nrf2 deficiency led to a decrease in U251 cell proliferation and caused intracellular redox imbalance [diminished glutathione (GSH) levels and increased reactive oxygen species (ROS) levels]. Both N-acetylcysteine and glutathione monoethyl ester (GMEE) supplementation completely eliminated the increased levels of ROS that were present in the Nrf2‑deficient U251 cells. However, only GMEE supplementation both reversed Nrf2 deficiency-induced cell growth arrest and restored intracellular GSH levels. Moreover, AKT and ERK1/2 signaling were both impaired in the Nrf2-knockdown U251 cells, but GMEE supplementation restored AKT signaling but not ERK1/2 signaling, and blocking AKT signaling with an AKT-specific inhibitor greatly diminished the GMEE-induced Nrf2-deficient cell proliferation. In conclusion, our findings revealed novel functions for Nrf2 in the regulation of redox status and cell proliferation, and that intracellular GSH levels and AKT signaling are required for this process, a new viewpoint by which to comprehend the role and underlying mechanism of Nrf2 in tumorigenesis.

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Year:  2017        PMID: 28260004     DOI: 10.3892/or.2017.5467

Source DB:  PubMed          Journal:  Oncol Rep        ISSN: 1021-335X            Impact factor:   3.906


  3 in total

Review 1.  The Role of NRF2/KEAP1 Pathway in Glioblastoma: Pharmacological Implications.

Authors:  Seyed Hossein Shahcheraghi; Fateme Salemi; Waqas Alam; Henry Ashworth; Luciano Saso; Haroon Khan; Marzieh Lotfi
Journal:  Med Oncol       Date:  2022-05-15       Impact factor: 3.064

2.  Antibacterial effect of Cu2O/TiO2 photocatalytic composite on Pseudomonas marginalis pv. marginalis.

Authors:  Ying Jiang; Mengna Ding; Lang Liu; Jianguo Cao; Liuhong Chen; Guozheng Huang; Yuning Huo; Xiling Dai
Journal:  Arch Microbiol       Date:  2022-07-06       Impact factor: 2.667

3.  Targeting NRF2, Regulator of Antioxidant System, to Sensitize Glioblastoma Neurosphere Cells to Radiation-Induced Oxidative Stress.

Authors:  Paulo R D V Godoy; Ali Pour Khavari; Marzia Rizzo; Elza T Sakamoto-Hojo; Siamak Haghdoost
Journal:  Oxid Med Cell Longev       Date:  2020-06-15       Impact factor: 6.543

  3 in total

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