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Pioglitazone Alters the Proteomes of Normal Bladder Epithelial Cells but Shows No Tumorigenic Effects
Muhammad Shahid1, Minhyung Kim1, Austin Yeon1
1Departments of Surgery and Biomedical Sciences, Cedars-Sinai Medical Center, Los Angeles, CA, USA.
Purpose:
Pioglitazone, an antihyperglycemic drug, is widely used in diabetes mellitus patients with insulin resistance. Although pioglitazone is known to have a potential link to bladder cancer (BC), there have been contradictory results. This present study is designed to understand the regulatory mechanisms that drive the effects of pioglitazone on the bladder epithelial cells.
Methods:
Labeled liquid chromatography-tandem mass spectrometry-based proteomics profiling characterized the global proteomes of normal human bladder epithelial cells treated with or without pioglitazone.
Results:
This approach detected approximately 5,769 proteins in total. Of those 5,769 proteins, 124 were identified as being differentially expressed due to pioglitazone treatment. Further analysis identified 95 upregulated and 29 downregulated proteins (absolute log2 fold change >0.58 and P-value<0.05). The following functional gene enrichment analysis suggested that pioglitazone may be altering a few select biological processes, such as gene/chromatin silencing, by downregulating BMI1 (B lymphoma Mo-MLV insertion region 1 homolog), a polycomb complex protein. Further cell-based assays showed that cell adhesion molecules, epithelial-mesenchymal transition markers, and major signaling pathways were significantly downregulated by pioglitazone treatment.
Conclusion:
These experimental results revealed the proteomic and biological alterations that occur in normal bladder cells in response to pioglitazone. These findings provided a landscape how bladder proteome is influenced by pioglitazone, which suggests the potential adverse effects of diabetes drugs and their links to bladder dysfunctions.
Insights
Pioglitazone, a diabetes drug, alters bladder cell proteins, potentially affecting cell adhesion and gene silencing. This research explores its impact on bladder epithelial cells, suggesting links to dysfunction.
Area of Science:
- Proteomics
- Molecular Biology
- Oncology
Background:
- Pioglitazone is an antihyperglycemic agent for diabetes with insulin resistance.
- Contradictory findings exist regarding pioglitazone's association with bladder cancer (BC).
Purpose of the Study:
- Investigate the regulatory mechanisms of pioglitazone's effects on bladder epithelial cells.
- Clarify the molecular pathways influenced by pioglitazone in the bladder.
Main Methods:
- Utilized liquid chromatography-tandem mass spectrometry-based proteomics.
- Analyzed global proteomes of human bladder epithelial cells with and without pioglitazone treatment.
Main Results:
- Identified 124 differentially expressed proteins (95 upregulated, 29 downregulated) out of 5,769 total proteins.
- Pioglitazone downregulated BMI1, suggesting effects on gene/chromatin silencing.
- Observed significant downregulation of cell adhesion molecules, epithelial-mesenchymal transition markers, and key signaling pathways.
Conclusions:
- Revealed proteomic and biological changes in bladder cells due to pioglitazone.
- Provided insights into pioglitazone's influence on the bladder proteome.
- Suggested potential adverse effects of pioglitazone on bladder function and health.
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