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A Robust Discovery Platform for the Identification of Novel Mediators of Melanoma Metastasis
Published on: March 8, 2022
An evidence-based knowledgebase of metastasis suppressors to identify key pathways relevant to cancer metastasis
1School of Engineering, Faculty of Science, Health, Education and Engineering, University of the Sunshine Coast, Maroochydore DC, Queensland, 4558, Australia.
Abstract:
Metastasis suppressor genes (MS genes) are genes that play important roles in inhibiting the process of cancer metastasis without preventing growth of the primary tumor. Identification of these genes and understanding their functions are critical for investigation of cancer metastasis. Recent studies on cancer metastasis have identified many new susceptibility MS genes. However, the comprehensive illustration of diverse cellular processes regulated by metastasis suppressors during the metastasis cascade is lacking. Thus, the relationship between MS genes and cancer risk is still unclear. To unveil the cellular complexity of MS genes, we have constructed MSGene (http://MSGene.bioinfo-minzhao.org/), the first literature-based gene resource for exploring human MS genes. In total, we manually curated 194 experimentally verified MS genes and mapped to 1448 homologous genes from 17 model species. Follow-up functional analyses associated 194 human MS genes with epithelium/tissue morphogenesis and epithelia cell proliferation. In addition, pathway analysis highlights the prominent role of MS genes in activation of platelets and coagulation system in tumor metastatic cascade. Moreover, global mutation pattern of MS genes across multiple cancers may reveal common cancer metastasis mechanisms. All these results illustrate the importance of MSGene to our understanding on cell development and cancer metastasis.
Insights
Metastasis suppressor genes (MS genes) inhibit cancer spread. The new MSGene database catalogs these genes, aiding research into cancer metastasis and cell development.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Metastasis suppressor genes (MS genes) inhibit cancer metastasis but not primary tumor growth.
- Understanding MS gene function is crucial for cancer metastasis research.
- Existing knowledge lacks comprehensive illustration of cellular processes regulated by MS genes.
Purpose of the Study:
- To construct MSGene, the first literature-based resource for human MS genes.
- To unveil the cellular complexity and functions of MS genes.
- To explore the relationship between MS genes and cancer risk.
Main Methods:
- Manual curation of 194 experimentally verified human MS genes.
- Mapping MS genes to 1448 homologous genes across 17 model species.
- Functional and pathway analyses of MS genes, including mutation patterns.
Main Results:
- MSGene database established, cataloging 194 human MS genes and their homologs.
- MS genes are associated with epithelium/tissue morphogenesis and cell proliferation.
- Pathway analysis revealed MS gene roles in platelet activation and coagulation during metastasis.
Conclusions:
- MSGene provides a valuable resource for studying human MS genes.
- MS genes are implicated in fundamental cellular processes relevant to metastasis.
- Further research on MS genes may reveal common cancer metastasis mechanisms and inform cancer risk assessment.
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