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Activation of proto-oncogenes in human and mouse lung tumors
1Laboratory of Molecular Toxicology, National Institute of Environmental Health Sciences, Research Triangle Park, NC 27709.
Abstract:
Lung cancer is a leading cause of cancer-related deaths in several nations. Epidemiological studies have indicated that 85% of all lung cancer deaths and 30% of all cancer deaths in the U.S. are associated with tobacco smoking. Various chemicals in tobacco smoke are thought to react with DNA and to ultimately yield heritable mutations. In an effort to understand the molecular mechanisms involved in lung tumorigenesis, we have analyzed proto-oncogene activation in a series of human lung tumors from smokers and spontaneously occurring and chemically induced lung tumors in mice. Approximately 86% of the human lung tumors and greater than 90% of the mouse lung tumors were found to contain activated oncogenes. ras Oncogenes activated by point mutations were detected in many of the human lung adenocarcinomas and virtually all of the mouse lung adenomas and adenocarcinomas. The mutation profiles of the activated K-ras genes detected in the chemically induced mouse lung tumors suggest that the observed mutations result from genotoxic effects of the chemicals. Comparison of the K-ras mutations observed in the human lung adenocarcinomas with mutation profiles observed in the mouse lung tumors suggest that bulky hydrophobic DNA adducts may be responsible for the majority of the mutations observed in the activated human K-ras genes. Other data indicate that approximately 20% of human lung tumors contain potentially novel transforming genes that may also be targets for mutagens in cigarette smoke.
Insights
Tobacco smoke chemicals cause DNA mutations, leading to lung cancer. This study found activated oncogenes in most human and mouse lung tumors, suggesting smoking-induced genetic damage drives cancer development.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Lung cancer is a major cause of cancer deaths globally.
- Tobacco smoking is linked to 85% of lung cancer deaths and 30% of all cancer deaths in the U.S.
- Chemicals in tobacco smoke can damage DNA, potentially causing mutations that lead to cancer.
Purpose of the Study:
- To investigate the molecular mechanisms of lung cancer development.
- To analyze proto-oncogene activation in human and mouse lung tumors.
- To understand the role of tobacco smoke in causing genetic mutations in lung cancer.
Main Methods:
- Analysis of proto-oncogene activation in human lung tumors from smokers.
- Examination of spontaneously occurring and chemically induced lung tumors in mice.
- Detection and characterization of oncogene mutations, particularly in the ras family.
Main Results:
- Activated oncogenes were found in 86% of human lung tumors and over 90% of mouse lung tumors.
- Point mutations in ras oncogenes were common in human lung adenocarcinomas and mouse lung tumors.
- Mutation profiles in mouse tumors suggest chemical genotoxicity, while human tumor mutations may stem from bulky DNA adducts.
Conclusions:
- Proto-oncogene activation is a frequent event in lung tumorigenesis, strongly associated with smoking.
- Specific mutation patterns suggest that DNA damage from tobacco smoke chemicals, particularly bulky hydrophobic adducts, drives K-ras mutations in lung cancer.
- A subset of human lung tumors may harbor novel transforming genes also susceptible to cigarette smoke mutagens.