Prx I Suppresses K-ras-Driven Lung Tumorigenesis by Opposing Redox-Sensitive ERK/Cyclin D1 Pathway

  • Park, Young-Ho
  • Kim, Sun-Uk
  • Lee, Bo-Kyoung
  • Kim, Hyun-Sun
  • Song, In-Sung
  • 외 9명
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초록

Aims: Coupled responses of mutated K-ras and oxidative stress are often an important etiological factor in non-small-cell lung cancer (NSCLC). However, relatively few studies have examined the control mechanism of oxidative stress in oncogenic K-ras-driven NSCLC progression. Here, we studied whether the redox signaling pathway governed by peroxiredoxin I (Prx I) is involved in K-ras(G12D)-mediated lung adenocarcinogenesis. Results: Using human-lung adenocarcinoma tissues and lung-specific K-ras(G12D)-transgenic mice, we found that Prx I was significantly up-regulated in the tumor regions via activation of nuclear erythroid 2-related factor 2 (Nrf2) transcription. Interestingly, the increased reactive oxygen species (ROS) by null mutation of Prx I greatly promoted K-ras(G12D)-driven lung tumorigenesis in number and size, which appeared to require the activation of the ROS-dependent extracellular signal-regulated kinase (ERK)/cyclin D1 pathway. Innovation: Taken together, these results suggest that Prx I functions as an Nrf2-dependently inducible tumor suppressant in K-ras-driven lung adenocarcinogenesis by opposing ROS/ERK/cyclin D1 pathway activation. Conclusion: These findings provide a better understanding of oxidative stress-mediated lung tumorigenesis.

키워드

CANCER-CELLSCYCLIN D1ANTIOXIDANT DEFENSEOXIDATIVE STRESSPEROXIREDOXIN-ITUMOR-GROWTHEPITHELIAL-CELLSSTEM-CELLSC-MYCEXPRESSION
제목
Prx I Suppresses K-ras-Driven Lung Tumorigenesis by Opposing Redox-Sensitive ERK/Cyclin D1 Pathway
저자
Park, Young-HoKim, Sun-UkLee, Bo-KyoungKim, Hyun-SunSong, In-SungShin, Hye-JunHan, Ying-HaoChang, Kyu-TaeKim, Jin-ManLee, Dong-SeokKim, Yeul-HongChoi, Chang-MinKim, Bo-YeonYu, Dae-Yeul
DOI
10.1089/ars.2011.4421
발행일
2013-08
유형
Article
저널명
Antioxidants and Redox Signaling
19
5
페이지
482 ~ 496