Related Experiment Videos
Role of proto-oncogene activation in carcinogenesis
M W Anderson1, S H Reynolds, M You
1National Institute of Environmental Health Sciences, Research Triangle Park, NC 27709.
Abstract:
The accumulation of genetic damage in the forms of activated proto-oncogenes and inactivated tumor-suppressor genes is the driving force in the evolution of a normal cell to a malignant cell. For example, both the activation of ras oncogenes and the inactivation of several suppressor genes, including p53, have been observed in the development of human colon and lung tumors. Point mutations in key codons can activate ras proto-oncogenes and inactivate the p53 suppressor gene. Thus, several critical genes for tumorigenesis are potential targets for carcinogens and radiation that can induce point mutations at low doses. The ras proto-oncogenes are targets for many genotoxic carcinogens. Activation of the ras gene is an early event--probably the "initiating" step--in the development of many chemical-induced rodent tumors. ras Oncogenes are observed in more human tumors and at a higher frequency than any other oncogene, and activation of the proto-oncogene may occur at various stages of the carcinogenic process. Numerous proto-oncogenes other than the ras genes have been shown to be activated in human tumors and to a lesser extent in rodent tumors. Mechanisms that induce aberrant expression of proto-oncogenes are gene amplification and chromosomal translocation or gene rearrangement. Amplification of proto-oncogenes and possibly gene overexpression during the absence of gene amplification occur in the development of many human tumors. For a specific tumor type, amplification of any one proto-oncogene may occur at a low frequency, but the frequency of tumors in which at least one proto-oncogene is amplified can be much higher. Proto-oncogene amplification is usually associated with late stages of tumor progression; however, amplified HER2/neu has been observed in early clinical stages of mammary neoplasia. Activation of proto-oncogenes by chromosomal translocation has been detected at a high frequency in several hematopoietic tumors. Non-ras genes have been detected by DNA transfection assays in both human and rodent tumors. For example, ret and trk genes were found to be activated by gene rearrangements in human papillary thyroid carcinomas. Several potentially new types of oncogenes have also been detected by DNA transfection assays. The etiology of the genetic alterations observed in most human tumors is unclear at present. Examples of ras gene activation and those documented for mutations in the p53 gene demonstrate that exogenous conditions can induce oncogenic mutants of normal genes. The genetic alterations observed in most human tumors are probably generated by both spontaneous events and exogenous conditions.
Insights
Genetic damage, including proto-oncogene activation and tumor-suppressor gene inactivation, drives cancer development. Carcinogens and radiation can induce mutations in critical genes like ras and p53, initiating tumor formation.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Cancer arises from accumulated genetic damage, specifically the activation of proto-oncogenes and inactivation of tumor-suppressor genes.
- Key genes like ras and p53 are frequently altered in human tumors, such as colon and lung cancers.
- Point mutations in critical codons are a primary mechanism for activating proto-oncogenes and inactivating tumor suppressors.
Purpose of the Study:
- To investigate the role of genetic alterations in cancer development.
- To identify key genes and mechanisms involved in tumorigenesis.
- To understand the impact of carcinogens and radiation on genetic mutations.
Main Methods:
- Analysis of genetic damage in tumor samples.
- Identification of activated proto-oncogenes and inactivated tumor-suppressor genes.
- Investigation of mutation induction by carcinogens and radiation.
Main Results:
- Activation of ras proto-oncogenes and inactivation of p53 are common in human tumors.
- Ras gene activation is an early event in many chemically induced rodent tumors.
- Proto-oncogene amplification and chromosomal translocations are significant mechanisms in human tumor development.
Conclusions:
- Genetic alterations in proto-oncogenes and tumor-suppressor genes are fundamental to cancer evolution.
- Carcinogens and radiation can directly induce mutations in critical cancer-related genes.
- Understanding these genetic changes is crucial for cancer prevention and treatment strategies.