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Survey for Activating Oncogenic Mutation Variants in Metazoan Germline Genes
1National Cancer Institute, 9609 Medical Center Drive, 5E-132, Rockville, MD, 20850, USA. karl.krueger@nih.gov.
Abstract:
Most cancers present with mutations or amplifications in distinctive tumor promoter genes that activate principal cell-signaling cascades promoting cell proliferation, dedifferentiation, cell survival, and replicative immortality. Somatic mutations found in this these driver proto-oncogenes invariably result in constitutive activation of the encoded protein. A salient feature of the activating mutations observed throughout many thousands of clinical tumor specimens reveals these driver missense mutations are recurrent and restricted to just one or very few codons of the entire gene, suggesting they have been positively selected during the course of tumor development. The purpose of this study is to investigate whether these characteristic oncogenic driver mutations are observed in the germline genes of any metazoan species. Six well-known tumor promoter genes were chosen for this survey including BRAF, KRAS, JAK2, PIK3CA, EGFR, and IDH1/2. The sites of all driver mutations were found to occur in highly conserved regions of each gene comparing protein sequences throughout diverse phyla of metazoan species. None of the oncogenic missense mutations were found in germlines of any species of current genome and protein databases. Despite many tumors readily selecting these somatic mutations, the conclusion drawn from this study is that these variants are negatively rejected if encountered as a germline mutation. While cancer expansion ensues from dysregulated growth elicited by these mutations, this effect is likely detrimental to embryonic development and/or survival of multicellular organisms. Although all oncogenic mutations considered here are gain-of-function where five of the six increase activity of the encoded proteins, clonal advancement promotes tumor growth by these genomic changes without conferring selection advantages benefiting the organism or species.
Insights
Cancer-driving mutations in key genes like BRAF and KRAS are common in tumors but absent in animal germlines. This suggests these mutations, while promoting cancer, are detrimental to embryonic development and organism survival.
Area of Science:
- Cancer Biology
- Evolutionary Genetics
- Molecular Oncology
Background:
- Cancers often arise from mutations in proto-oncogenes, leading to uncontrolled cell growth.
- These driver mutations are frequently recurrent and somatically selected in tumor development.
Purpose of the Study:
- To investigate the presence of known oncogenic driver mutations in germline genes across metazoan species.
- To understand the evolutionary selection pressures on these mutations.
Main Methods:
- Comparative analysis of protein sequences from six key tumor promoter genes (BRAF, KRAS, JAK2, PIK3CA, EGFR, IDH1/2).
- Searched conserved regions for known oncogenic missense mutations across diverse metazoan phyla using genome and protein databases.
Main Results:
- Driver mutation sites are located in highly conserved gene regions across metazoans.
- None of the surveyed oncogenic mutations were found in any metazoan germline.
Conclusions:
- Somatic oncogenic mutations are strongly selected against in the germline.
- These mutations, while promoting cancer, likely impair embryonic development and organismal survival, indicating negative selection.
- The gain-of-function effects of these mutations do not confer organismal or species-level advantages.
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