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Pan-cancer analysis of TCGA data reveals notable signaling pathways
Richard Neapolitan1, Curt M Horvath2, Xia Jiang3
1Department of Preventive Medicine, Northwestern University Feinberg School of Medicine, Chicago, Il, USA. richard.neapolitan@northwestern.edu.
Background:
A signal transduction pathway (STP) is a network of intercellular information flow initiated when extracellular signaling molecules bind to cell-surface receptors. Many aberrant STPs have been associated with various cancers. To develop optimal treatments for cancer patients, it is important to discover which STPs are implicated in a cancer or cancer-subtype. The Cancer Genome Atlas (TCGA) makes available gene expression level data on cases and controls in ten different types of cancer including breast cancer, colon adenocarcinoma, glioblastoma, kidney renal papillary cell carcinoma, low grade glioma, lung adenocarcinoma, lung squamous cell carcinoma, ovarian carcinoma, rectum adenocarcinoma, and uterine corpus endometriod carcinoma. Signaling Pathway Impact Analysis (SPIA) is a software package that analyzes gene expression data to identify whether a pathway is relevant in a given condition.
Methods:
We present the results of a study that uses SPIA to investigate all 157 signaling pathways in the KEGG PATHWAY database. We analyzed each of the ten cancer types mentioned above separately, and we perform a pan-cancer analysis by grouping the data for all the cancer types.
Results:
In each analysis several pathways were found to be markedly more significant than all the other pathways. We call them notable. Research has already established a connection between many of these pathways and the corresponding cancer type. However, some of our discovered pathways appear to be new findings. Altogether there were 37 notable findings in the separate analyses, 26 of them occurred in 7 pathways. These 7 pathways included the 4 notable pathways discovered in the pan-cancer analysis. So, our results suggest that these 7 pathways account for much of the mechanisms of cancer. Furthermore, by looking at the overlap among pathways, we identified possible regions on the pathways where the aberrant activity is occurring.
Conclusions:
We obtained 37 notable findings concerning 18 pathways. Some of them appear to be new discoveries. Furthermore, we identified regions on pathways where the aberrant activity might be occurring. We conclude that our results will prove to be valuable to cancer researchers because they provide many opportunities for laboratory and clinical follow-up studies.
Insights
This study identifies key signaling pathways implicated in various cancers using gene expression data. The findings highlight 7 crucial pathways and pinpoint regions of aberrant activity for potential new cancer treatments.
Area of Science:
- Genomics and Bioinformatics
- Cancer Research
- Molecular Biology
Background:
- Signal transduction pathways (STPs) regulate intercellular communication and are frequently dysregulated in cancer.
- Identifying cancer-specific STPs is crucial for developing targeted therapies.
- The Cancer Genome Atlas (TCGA) provides extensive gene expression data across multiple cancer types.
Purpose of the Study:
- To investigate the relevance of 157 signaling pathways in ten different cancer types using gene expression data.
- To identify key signaling pathways and specific regions of aberrant activity associated with cancer.
- To provide valuable insights for cancer researchers and potential clinical applications.
Main Methods:
- Utilized the Signaling Pathway Impact Analysis (SPIA) software package.
- Analyzed gene expression data from TCGA for ten distinct cancer types.
- Performed both individual cancer type analyses and a pan-cancer analysis.
Main Results:
- Identified 37 notable findings across 18 pathways, with 7 pathways showing particular significance.
- These 7 pathways, including 4 from the pan-cancer analysis, are suggested to underlie major cancer mechanisms.
- Pinpointed specific regions within pathways exhibiting aberrant activity, potentially indicating novel therapeutic targets.
Conclusions:
- The study successfully identified significant signaling pathways and regions of aberrant activity in multiple cancers.
- Several findings represent potentially novel discoveries in cancer research.
- The results offer promising avenues for future laboratory and clinical investigations in cancer treatment.
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