跳至主導覽 跳至搜尋 跳過主要內容

Mitochondrial Signal Lacking Manganese Superoxide Dismutase Failed to Prevent Cell Death by Reoxygenation Following Hypoxia in a Human Pancreatic Cancer Cell Line, KP4

  • Futoshi Hirai
  • , Shigeatsu Motoori
  • , Shizuko Kakinuma
  • , Kazuo Tomita
  • , Hiroko P. Indo
  • , Hirotoshi Kato
  • , Taketo Yamaguchi
  • , Hsiu Chuan Yen
  • , Daret K. St. Clair
  • , Tetsuo Nagano
  • , Toshihiko Ozawa
  • , Hiromitsu Saisho
  • , Hideyuki J. Majima*
  • *此作品的通信作者
  • Chiba University
  • National Institutes for Quantum Science and Technology
  • Kagoshima University
  • University of Kentucky
  • The University of Tokyo

研究成果: 期刊稿件文章同行評審

24 引文 斯高帕斯(Scopus)

摘要

One of the major characteristics of tumor is the presence of a hypoxic cell population, which is caused by abnormal distribution of blood vessels. Manganese superoxide dismutase (MnSOD) is a nuclear-encoded mitochondrial enzyme, which scavenges superoxide generated from the electron-transport chain in mitochondria. We examined whether MnSOD protects against hypoxia/reoxygenation (H/R)-induced oxidative stress using a human pancreas carcinoma-originated cell line, KP4. We also examined whether MnSOD is necessarily present in mitochondria to have a function. Normal human MnSOD and MnSOD without a mitochondrial targeting signal were transfected to KP4 cells, and reactive oxygen species, nitric oxide, lipid peroxidation, and apoptosis were examined as a function of time in air following 1 day of hypoxia as a H/R model. Our results showed H/R caused no increase in nitric oxide, but resulted in increases in reactive oxygen species, 4-hydroxy-2-nonenal protein adducts, and apoptosis. Authentic MnSOD protected against these processes and cell death, but MnSOD lacking a mitochondrial targeting signal could not. These results suggest that only when MnSOD is located in mitochondria is it efficient in protecting against cellular injuries by H/R, and they also indicate that mitochondria are primary sites of H/R-induced cellular oxidative injuries.

原文英語
頁(從 - 到)523-535
頁數13
期刊Antioxidants and Redox Signaling
6
發行號3
DOIs
出版狀態已出版 - 06 2004

UN SDG

此研究成果有助於以下永續發展目標

  1. SDG3 健康與福祉
    SDG3 健康與福祉

指紋

深入研究「Mitochondrial Signal Lacking Manganese Superoxide Dismutase Failed to Prevent Cell Death by Reoxygenation Following Hypoxia in a Human Pancreatic Cancer Cell Line, KP4」主題。共同形成了獨特的指紋。

引用此