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Identification of Src transformation fingerprint in human colon cancer
Renae L Malek1, Rosalyn B Irby, Qingbin M Guo
1Department of Functional Genomics, The Institute for Genomic Research, 9712 Medical Center Dr, Rockville, Maryland, MD 20850, USA.
Abstract:
We used a classical rodent model of transformation to understand the transcriptional processes, and hence the molecular and cellular events a given cell undergoes when progressing from a normal to a transformed phenotype. Src activation is evident in 80% of human colon cancer, yet the myriad of cellular processes effected at the level of gene expression has yet to be fully documented. We identified a Src 'transformation fingerprint' within the gene expression profiles of Src-transformed rat 3Y1 fibroblasts demonstrating a progression in transformation characteristics. To evaluate the role of this gene set in human cancer development and progression, we extracted the orthologous genes present on the Affymetrix Hu95A GeneChip (12k named genes) and compared expression profiles between the Src-induced rodent cell line model of transformation and staged colon tumors where Src is known to be activated. A similar gene expression pattern between the cell line model and staged colon tumors for components of the cell cycle, cytoskeletal associated proteins, transcription factors and lysosomal proteins suggests the need for co-regulation of several cellular processes in the progression of cancer. Genes not previously implicated in tumorigenesis were detected, as well as a set of 14 novel, highly conserved genes with here-to-fore unknown function. These studies define a set of transformation associated genes whose up-regulation has implications for understanding Src mediated transformation and strengthens the role of Src in the development and progression of human colon cancer. Supportive Supplemental Data can be viewed at http://pga.tigr.org/PGApubs.shtml.
Insights
This study identifies a Src transformation fingerprint in gene expression profiles, revealing co-regulated cellular processes in cancer development. These findings strengthen the role of Src in colon cancer progression.
Area of Science:
- Molecular biology
- Cancer research
- Genomics
Background:
- Src activation is implicated in 80% of human colon cancers.
- The specific gene expression changes during Src-mediated transformation are not fully understood.
- Understanding these changes is crucial for comprehending cancer development and progression.
Purpose of the Study:
- To identify a "transformation fingerprint" of gene expression in a rodent model of Src-induced transformation.
- To evaluate the relevance of this gene set in human colon cancer development.
- To uncover novel genes and cellular processes involved in tumorigenesis.
Main Methods:
- Utilized a classical rodent model (rat 3Y1 fibroblasts) for Src-induced transformation.
- Analyzed gene expression profiles to identify a Src transformation fingerprint.
- Compared gene expression patterns between the rodent model and human colon tumors using Affymetrix Hu95A GeneChip.
Main Results:
- Identified a Src transformation fingerprint in the rodent cell line.
- Observed similar gene expression patterns in cell lines and human colon tumors, particularly for cell cycle, cytoskeletal, transcription factor, and lysosomal genes.
- Detected previously unknown genes implicated in tumorigenesis, including 14 novel conserved genes.
Conclusions:
- Co-regulation of multiple cellular processes is essential for cancer progression.
- The identified gene set provides insights into Src-mediated transformation.
- This study reinforces the role of Src in human colon cancer development and progression.