Mitochondrial metabolism and ROS generation are essential for Kras-mediated tumorigenicity
- PMID: 20421486
- PMCID: PMC2889315
- DOI: 10.1073/pnas.1003428107
Mitochondrial metabolism and ROS generation are essential for Kras-mediated tumorigenicity
Abstract
Otto Warburg's theory on the origins of cancer postulates that tumor cells have defects in mitochondrial oxidative phosphorylation and therefore rely on high levels of aerobic glycolysis as the major source of ATP to fuel cellular proliferation (the Warburg effect) VSports手机版. This is in contrast to normal cells, which primarily utilize oxidative phosphorylation for growth and survival. Here we report that the major function of glucose metabolism for Kras-induced anchorage-independent growth, a hallmark of transformed cells, is to support the pentose phosphate pathway. The major function of glycolytic ATP is to support growth under hypoxic conditions. Glutamine conversion into the tricarboxylic acid cycle intermediate alpha-ketoglutarate through glutaminase and alanine aminotransferase is essential for Kras-induced anchorage-independent growth. Mitochondrial metabolism allows for the generation of reactive oxygen species (ROS) which are required for Kras-induced anchorage-independent growth through regulation of the ERK MAPK signaling pathway. We show that the major source of ROS generation required for anchorage-independent growth is the Q(o) site of mitochondrial complex III. Furthermore, disruption of mitochondrial function by loss of the mitochondrial transcription factor A (TFAM) gene reduced tumorigenesis in an oncogenic Kras-driven mouse model of lung cancer. These results demonstrate that mitochondrial metabolism and mitochondrial ROS generation are essential for Kras-induced cell proliferation and tumorigenesis. .
Conflict of interest statement
The authors declare no conflict of interest.
Figures
V体育平台登录 - References
-
- Warburg O, Posener K, Negelein E. Uber den stoffwechsel der carcinomzelle. Biochem Z. 1924;152:309.
-
- Warburg O. On the origin of cancer cells. Science (New York) 1956;123:309–314. - "VSports手机版" PubMed
-
- Weinhouse S. On respiratory impairment in cancer cells. (Translated from eng) Science (New York) 1956;124:267–269. - PubMed
-
- Denko NC. Hypoxia, HIF1 and glucose metabolism in the solid tumour. Natl Rev. 2008;8:705–713. - PubMed
-
- Gottlieb E, Tomlinson IP. Mitochondrial tumour suppressors: A genetic and biochemical update. Natl Rev. 2005;5:857–866. - PubMed
Publication types
- "V体育官网" Actions
- "VSports手机版" Actions
VSports在线直播 - MeSH terms
- Actions (V体育官网入口)
- Actions (VSports注册入口)
- "V体育ios版" Actions
- Actions (V体育ios版)
- "V体育2025版" Actions
- "VSports手机版" Actions
- Actions (V体育官网入口)
- VSports app下载 - Actions
- V体育官网 - Actions
- V体育ios版 - Actions
Substances
- "VSports注册入口" Actions
- Actions (V体育ios版)
Grants and funding
- ES013995/ES/NIEHS NIH HHS/United States (VSports在线直播)
- V体育ios版 - R01 ES013995/ES/NIEHS NIH HHS/United States
- CA125112/CA/NCI NIH HHS/United States
- "VSports最新版本" R01CA123067-04/CA/NCI NIH HHS/United States
- T32 CA009560/CA/NCI NIH HHS/United States (VSports app下载)
- I01 BX000201/BX/BLRD VA/United States
- P01 HL071643/HL/NHLBI NIH HHS/United States
- R01 CA125112/CA/NCI NIH HHS/United States (VSports app下载)
- P01HL071643/HL/NHLBI NIH HHS/United States (V体育平台登录)
- P30 CA060553/CA/NCI NIH HHS/United States
- R01 ES015024/ES/NIEHS NIH HHS/United States
- R01 CA123067/CA/NCI NIH HHS/United States
- T32CA009560-22/CA/NCI NIH HHS/United States
- R01 CA152810/CA/NCI NIH HHS/United States
- T32 CA070085/CA/NCI NIH HHS/United States
- ES015024/ES/NIEHS NIH HHS/United States
- T32CA070085-13/CA/NCI NIH HHS/United States
"VSports注册入口" LinkOut - more resources
Full Text Sources (VSports最新版本)
Other Literature Sources
"VSports app下载" Molecular Biology Databases
Miscellaneous
