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How many tumor suppressor genes are involved in human lung carcinogenesis?
1Biology Division, National Cancer Center Research Institute, 1-1, Tsukiji 5-chome, Chuo-ku, Tokyo 104-0045, Japan.
Abstract:
To date, only a limited number of tumor suppressor genes have been identified as being inactivated in lung cancer. The p53 and RB genes are frequently inactivated by genetic alterations such as chromosomal deletions and loss-of-function mutations, while the p16 gene is inactivated not only by genetic alterations but also by transcriptional silencing due to hypermethylation. Recently, it was shown that the FHIT gene encompassing the chromosomal fragile site, FRA3B, is also inactivated in a large proportion of lung cancers. Several lines of evidence indicate the presence of additional tumor suppressor genes involved in lung carcinogenesis. Lung cancer cells often show deletions at multiple chromosomal regions, and deletion mapping studies have defined more than 30 regions dispersed on 21 different chromosome arms as candidate tumor suppressor loci. Several chromosomal regions hypermethylated in lung cancer cells and a number of chromosomal fragile sites have been mapped to the regions deleted in lung cancer. These chromosomal loci can harbor unknown tumor suppressor genes inactivated in lung cancer. Studies on the inherited susceptibility to lung cancer in mice have also indicated the presence of additional tumor suppressor genes for lung cancer. Further analyses of these loci should elucidate how many tumor suppressor genes are involved in human lung carcinogenesis. Molecular and functional analyses of those genes will make it possible to fully understand the molecular mechanism of lung carcinogenesis.
Insights
Researchers are discovering more tumor suppressor genes crucial for preventing lung cancer. Identifying these genes and understanding their inactivation mechanisms is key to understanding lung cancer development.
Area of Science:
- Oncology
- Cancer Genetics
- Molecular Biology
Background:
- Lung cancer development involves the inactivation of tumor suppressor genes.
- Known inactivated genes include p53, RB, p16, and FHIT, through genetic alterations or epigenetic silencing.
- Evidence suggests additional tumor suppressor genes are involved in lung carcinogenesis.
Purpose of the Study:
- To investigate the presence and role of additional tumor suppressor genes in lung cancer.
- To identify novel tumor suppressor loci through deletion mapping and analysis of chromosomal abnormalities.
- To understand the molecular mechanisms underlying lung carcinogenesis.
Main Methods:
- Deletion mapping of lung cancer cells to identify candidate tumor suppressor loci.
- Analysis of chromosomal regions exhibiting hypermethylation or fragile sites.
- Comparative studies with inherited susceptibility to lung cancer in mice.
Main Results:
- Over 30 candidate tumor suppressor loci have been identified across 21 chromosome arms.
- Several deleted regions in lung cancer cells overlap with hypermethylated regions and fragile sites.
- Evidence from mouse models suggests additional tumor suppressor genes contribute to lung cancer susceptibility.
Conclusions:
- Multiple unknown tumor suppressor genes are likely inactivated during lung carcinogenesis.
- Further molecular and functional analyses are needed to identify these genes and elucidate their role.
- Understanding these genes is critical for a comprehensive grasp of lung cancer development.