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Identification of novel molecular targets for endometrial cancer using a drill-down LC-MS/MS approach with iTRAQ
Sébastien N Voisin1, Olga Krakovska, Ajay Matta
1Department of Chemistry and Centre for Research in Mass Spectrometry, York University, Toronto, Ontario, Canada.
Background:
The number of patients with endometrial carcinoma (EmCa) with advanced stage or high histological grade is increasing and prognosis has not improved for over the last decade. There is an urgent need for the discovery of novel molecular targets for diagnosis, prognosis and treatment of EmCa, which will have the potential to improve the clinical strategy and outcome of this disease.
Methodology And Results:
We used a "drill-down" proteomics approach to facilitate the identification of novel molecular targets for diagnosis, prognosis and/or therapeutic intervention for EmCa. Based on peptide ions identified and their retention times in the first LC-MS/MS analysis, an exclusion list was generated for subsequent iterations. A total of 1529 proteins have been identified below the Proteinpilot® 5% error threshold from the seven sets of iTRAQ experiments performed. On average, the second iteration added 78% new peptides to those identified after the first run, while the third iteration added 36% additional peptides. Of the 1529 proteins identified, only 40 satisfied our criteria for significant differential expression in EmCa in comparison to normal proliferative tissues. These proteins included metabolic enzymes (pyruvate kinase M2 and lactate dehydrogenase A); calcium binding proteins (S100A6, calcyphosine and calumenin), and proteins involved in regulating inflammation, proliferation and invasion (annexin A1, interleukin enhancer-binding factor 3, alpha-1-antitrypsin, macrophage capping protein and cathepsin B). Network analyses revealed regulation of these molecular targets by c-myc, Her2/neu and TNF alpha, suggesting intervention with these pathways may be a promising strategy for the development of novel molecular targeted therapies for EmCa.
Conclusions:
Our analyses revealed the significance of drill-down proteomics approach in combination with iTRAQ to overcome some of the limitations of current proteomics strategies. This study led to the identification of a number of novel molecular targets having therapeutic potential for targeted molecular therapies for endometrial carcinoma.
Insights
Researchers identified novel molecular targets for endometrial carcinoma (EmCa) using a drill-down proteomics approach. This advance offers potential for improved diagnosis, prognosis, and targeted therapies for EmCa patients.
Area of Science:
- Proteomics
- Molecular Biology
- Oncology
Background:
- Increasing incidence and poor prognosis of advanced endometrial carcinoma (EmCa).
- Urgent need for novel molecular targets for EmCa diagnosis, prognosis, and treatment.
- Current therapeutic strategies for EmCa require improvement.
Purpose of the Study:
- To identify novel molecular targets for endometrial carcinoma (EmCa) using an advanced proteomics strategy.
- To explore potential diagnostic, prognostic, and therapeutic applications of identified targets.
- To overcome limitations of existing proteomics methods for EmCa research.
Main Methods:
- Employed a "drill-down" proteomics approach combined with iTRAQ (isobaric tags for relative and absolute quantitation) experiments.
- Utilized LC-MS/MS (liquid chromatography-tandem mass spectrometry) for protein identification and quantification.
- Generated exclusion lists based on peptide ion data for iterative analysis, enhancing peptide identification.
Main Results:
- Identified 1529 proteins, with iterative analysis significantly increasing peptide identification.
- Discovered 40 differentially expressed proteins in EmCa compared to normal tissues.
- Key identified proteins include metabolic enzymes (e.g., pyruvate kinase M2), calcium-binding proteins, and regulators of inflammation and invasion; network analysis implicated c-myc, Her2/neu, and TNF alpha.
Conclusions:
- The drill-down proteomics approach combined with iTRAQ is effective in identifying novel molecular targets for EmCa.
- Identified proteins demonstrate therapeutic potential for targeted molecular therapies in endometrial carcinoma.
- This strategy advances proteomics capabilities for cancer research and clinical application.
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