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Discovery of Driver Genes in Colorectal HT29-derived Cancer Stem-Like Tumorspheres
Published on: July 22, 2020
Altered gene expression profiles define pathways in colorectal cancer cell lines affected by celecoxib
Naheed Fatima1, Ming Yi, Sadia Ajaz
1Division of Cancer Prevention, National Cancer Institute, Bethesda, Maryland, USA.
Abstract:
It is well established that celecoxib, a selective inhibitor of cyclooxygenase-2 (COX-2) and a tested chemopreventive agent, has several COX-2-independent activities. In an attempt to better understand COX-2-independent molecular mechanisms underlying the chemopreventive activity of celecoxib, we did global transcription profiling of celecoxib-treated COX-2-positive and COX-2-deficient colorectal cancer cell lines. Celecoxib treatment resulted in significantly altered expression levels of over 1,000 to 3,000 transcripts in these cell lines, respectively. A pathway/functional analysis of celecoxib-affected transcripts, using Gene Ontology and Biocarta Pathways and exploring biological association networks, revealed that celecoxib modulates expression of numerous genes involved in a variety of cellular processes, including metabolism, cell proliferation, apoptotic signaling, cell cycle check points, lymphocyte activation, and signaling pathways. Among these processes, cell proliferation and apoptotic signaling consistently ranked as the highest-scoring Gene Ontology terms and Biocarta Pathways in both COX-2 expresser and nonexpresser cell lines. Altered expression of many of the genes by celecoxib was confirmed by quantitative PCR and at the protein level by Western blotting. Many novel genes emerged from our analysis of global transcription patterns that were not previously reported to be affected by celecoxib. In the future, in-depth work on selected genes will determine if these genes may serve as potential molecular targets for more effective chemopreventive strategies.
Insights
Celecoxib, a COX-2 inhibitor, impacts gene expression independently of COX-2. This study reveals novel molecular targets for chemoprevention by analyzing gene transcription changes in colorectal cancer cells.
Area of Science:
- Molecular Biology
- Cancer Research
- Pharmacology
Background:
- Celecoxib is a selective cyclooxygenase-2 (COX-2) inhibitor with known chemopreventive properties.
- Several COX-2-independent activities of celecoxib have been reported, suggesting complex mechanisms of action.
Purpose of the Study:
- To elucidate the COX-2-independent molecular mechanisms of celecoxib's chemopreventive activity.
- To identify novel genes and pathways modulated by celecoxib through global transcription profiling.
Main Methods:
- Global transcription profiling of celecoxib-treated colorectal cancer cell lines (COX-2-positive and COX-2-deficient).
- Pathway and functional analysis using Gene Ontology, Biocarta Pathways, and biological association networks.
- Validation of gene expression changes using quantitative PCR and Western blotting.
Main Results:
- Celecoxib significantly altered the expression of over 1,000-3,000 transcripts in a COX-2-dependent and independent manner.
- Key cellular processes modulated include metabolism, cell proliferation, apoptotic signaling, and cell cycle checkpoints.
- Cell proliferation and apoptotic signaling were consistently the most affected pathways, regardless of COX-2 expression.
Conclusions:
- Celecoxib modulates a wide range of genes and pathways, many independent of COX-2.
- Novel genes affected by celecoxib were identified, offering potential new targets for chemoprevention.
- Further research into these novel targets could lead to more effective chemopreventive strategies.
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