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Focus Formation: A Cell-based Assay to Determine the Oncogenic Potential of a Gene
Published on: December 31, 2014
Cellular processes of v-Src transformation revealed by gene profiling of primary cells--implications for human cancer
Bart M Maślikowski1, Benjamin D Néel, Ying Wu
1Department of Biology, McMaster University, 1280 Main street West, Hamilton, ON, L8S 4K1, Canada.
Background:
Cell transformation by the Src tyrosine kinase is characterized by extensive changes in gene expression. In this study, we took advantage of several strains of the Rous sarcoma virus (RSV) to characterize the patterns of v-Src-dependent gene expression in two different primary cell types, namely chicken embryo fibroblasts (CEF) and chicken neuroretinal (CNR) cells. We identified a common set of v-Src regulated genes and assessed if their expression is associated with disease-free survival using several independent human tumor data sets.
Methods:
CEF and CNR cells were infected with transforming, non-transforming, and temperature sensitive mutants of RSV to identify the patterns of gene expression in response to v-Src-transformation. Microarray analysis was used to measure changes in gene expression and to define a common set of v-Src regulated genes (CSR genes) in CEF and CNR cells. A clustering enrichment regime using the CSR genes and two independent breast tumor data-sets was used to identify a 42-gene aggressive tumor gene signature. The aggressive gene signature was tested for its prognostic value by conducting survival analyses on six additional tumor data sets.
Results:
The analysis of CEF and CNR cells revealed that cell transformation by v-Src alters the expression of 6% of the protein coding genes of the genome. A common set of 175 v-Src regulated genes (CSR genes) was regulated in both CEF and CNR cells. Within the CSR gene set, a group of 42 v-Src inducible genes was associated with reduced disease- and metastasis-free survival in several independent patient cohorts with breast or lung cancer. Gene classes represented within this group include DNA replication, cell cycle, the DNA damage and stress responses, and blood vessel morphogenesis.
Conclusion:
By studying the v-Src-dependent changes in gene expression in two types of primary cells, we identified a set of 42 inducible genes associated with poor prognosis in breast and lung cancer. The identification of these genes provides a set of biomarkers of aggressive tumor behavior and a framework for the study of cancer cells characterized by elevated Src kinase activity.
Insights
Src tyrosine kinase (v-Src) transformation alters gene expression, identifying 42 genes linked to poor prognosis in breast and lung cancers. These genes serve as biomarkers for aggressive tumor behavior and elevated Src kinase activity.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Cell transformation by Src tyrosine kinase (v-Src) induces significant gene expression changes.
- This study investigates v-Src-dependent gene expression patterns in chicken embryo fibroblasts (CEF) and chicken neuroretinal (CNR) cells.
- The research aims to identify genes associated with disease-free survival in human tumors.
Purpose of the Study:
- To characterize v-Src-dependent gene expression patterns in CEF and CNR cells.
- To identify a common set of v-Src regulated genes (CSR genes).
- To assess the prognostic value of these genes in human tumor data sets.
Main Methods:
- Infection of CEF and CNR cells with various Rous sarcoma virus (RSV) strains.
- Microarray analysis to identify gene expression changes and CSR genes.
- Clustering enrichment and survival analyses on human tumor data sets to identify and validate an aggressive tumor gene signature.
Main Results:
- v-Src transformation alters approximately 6% of protein-coding genes.
- A common set of 175 v-Src regulated genes (CSR genes) was identified in both cell types.
- A subset of 42 v-Src inducible genes within the CSR set is associated with reduced disease-free and metastasis-free survival in breast and lung cancer patients.
Conclusions:
- Identified 42 inducible genes associated with poor prognosis in breast and lung cancer.
- These genes serve as potential biomarkers for aggressive tumor behavior.
- Provides a framework for studying cancer cells with elevated Src kinase activity.
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