AI Article Synopsis

  • Nrf2 is a crucial regulator of genes involved in drug metabolism and oxidative stress defense, and its regulation by Keap1 is disrupted in several types of cancer, including pancreatic cancer.
  • Analysis of pancreatic cancer cell lines showed no mutations in NRF2 but only synonymous mutations in KEAP1, and depletion of Nrf2 reduced cell proliferation and increased sensitivity to various chemotherapy agents.
  • The study suggests that higher levels of Nrf2 in pancreatic cancer cells may aid their survival and proliferation, indicating that targeting Nrf2 could enhance treatment effectiveness and reduce tumor growth.

Article Abstract

Background: Nrf2 is a key transcriptional regulator of a battery of genes that facilitate phase II/III drug metabolism and defence against oxidative stress. Nrf2 is largely regulated by Keap1, which directs Nrf2 for proteasomal degradation. The Nrf2/Keap1 system is dysregulated in lung, head and neck, and breast cancers and this affects cellular proliferation and response to therapy. Here, we have investigated the integrity of the Nrf2/Keap1 system in pancreatic cancer.

Results: Keap1, Nrf2 and the Nrf2 target genes AKR1c1 and GCLC were detected in a panel of five pancreatic cancer cell lines. Mutation analysis of NRF2 exon 2 and KEAP1 exons 2-6 in these cell lines identified no mutations in NRF2 and only synonomous mutations in KEAP1. RNAi depletion of Nrf2 caused a decrease in the proliferation of Suit-2, MiaPaca-2 and FAMPAC cells and enhanced sensitivity to gemcitabine (Suit-2), 5-flurouracil (FAMPAC), cisplatin (Suit-2 and FAMPAC) and gamma radiation (Suit-2). The expression of Nrf2 and Keap1 was also analysed in pancreatic ductal adenocarcinomas (n = 66 and 57, respectively) and matching normal benign epithelium (n = 21 cases). Whilst no significant correlation was seen between the expression levels of Keap1 and Nrf2 in the tumors, interestingly, Nrf2 staining was significantly greater in the cytoplasm of tumors compared to benign ducts (P < 0.001).

Conclusions: Expression of Nrf2 is up-regulated in pancreatic cancer cell lines and ductal adenocarcinomas. This may reflect a greater intrinsic capacity of these cells to respond to stress signals and resist chemotherapeutic interventions. Nrf2 also appears to support proliferation in certain pancreatic adenocarinomas. Therefore, strategies to pharmacologically manipulate the levels and/or activity of Nrf2 may have the potential to reduce pancreatic tumor growth, and increase sensitivity to therapeutics.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3098205PMC
http://dx.doi.org/10.1186/1476-4598-10-37DOI Listing

Publication Analysis

Top Keywords

nrf2
15
pancreatic cancer
12
cell lines
12
nrf2/keap1 system
8
keap1 nrf2
8
cancer cell
8
expression nrf2
8
ductal adenocarcinomas
8
pancreatic
7
keap1
6

Similar Publications

Objective: Ferroptosis has been described in association with acute kidney injury (AKI)-induced sepsis. Fibronectin type III domain containing protein 5 (FNDC5)/irisin plays a crucial role in renal protection. The objective of this study was to investigate whether FNDC5/irisin is involved in AKI-induced sepsis by modulating ferroptosis, and the molecular mechanisms that may be involved.

View Article and Find Full Text PDF

Safety and efficacy of omaveloxolone v/s placebo for the treatment of Friedreich's ataxia in patients aged more than 16 years: a systematic review.

Orphanet J Rare Dis

December 2024

Discovery Research Division, Indian Council of Medical Research (ICMR) Headquarters, V. Ramalingaswami Bhawan, Ansari Nagar, P.O. Box 4911, New Delhi, 110029, India.

Background: Friedreich's ataxia (FA) is a rare genetic disorder caused by silencing of the frataxin gene (FXN), which leads to multiorgan damage. Nrf2 is a regulator of FXN, which is a modulator of oxidative stress in animals and humans. Omaveloxolone (Omav) is an Nrf2 activator and has been reported to have antioxidative potential in various disease conditions.

View Article and Find Full Text PDF

Background: Maintaining autophagic homeostasis has been proved to play an important role in Alzheimer's disease.

Object: The aim of this study was to investigate the effect of Fuzhisan(FZS) on autophagic function in Alzheimer's disease and to elucidate its potential mechanism through the P62 regulatory pathways.

Methods: FZS was extracted by water extraction-rotary evaporation method.

View Article and Find Full Text PDF

Psoriasis is a chronic inflammatory skin condition characterized by erythematous plaques with white scales. Its pathogenesis is closely linked to oxidative stress and an imbalance in Th1/Th2 immune responses. Current treatments for psoriasis, such as topical agents, systemic therapies and phototherapy, frequently fail to achieve complete remission in clinical settings.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!