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Published on: October 27, 2020
The CD73 is induced by TGF-β1 triggered by nutrient deprivation and highly expressed in dedifferentiated human
Caterina Giraulo1, Roberta Turiello2, Lavinia Orlando3
1Department of Pharmacy, University of Salerno, Fisciano, SA, Italy.
Abstract:
CD73 is the key enzyme in the generation of extracellular adenosine, a mediator involved in tumor progression, tumor immune escape and resistance to anti-cancer therapeutics. Microenvironmental conditions influence the expression of CD73 in tumor cells. However how CD73 expression and activity is regulated in a stress condition of lower nutrient availability are largely unknown. Our results indicate that serum starvation leads to a marked up-regulation of CD73 expression on A375 melanoma cells in a time-dependent manner. The cell-surface expression of CD73 is associated with an increased release of TGF-β1 by starved cells. Blockade of TGF-β1 receptors or TGFβ/SMAD3 signaling pathway significantly reduce the expression of CD73 induced by starvation. Treatment of cells with rTGF-β1 up-regulates the expression of CD73 in a concentration-dependent manner, confirming the role of this pathway in regulating CD73 in melanoma A375 cells. The increased expression of CD73 is associated with enhanced AMPase activity, which is selectively reduced by inhibitors of CD73 activity, APCP and PSB-12489. Pharmacological blockade of CD73 significantly inhibits invasion of melanoma cells in a transwell system. Furthermore, using multiplex immunofluorescence imaging we found that, within human melanoma metastases, tumor cells at the dedifferentiated stage show the highest CD73 protein expression. In summary, our data provide new insights into the mechanism regulating the expression/activity of CD73 in melanoma cells in a condition of lower availability of nutrients, which is a common feature of the tumor microenvironment. Within human metastatic melanoma tissues elevated protein expression of CD73 is associated with an invasive-like phenotype.
Insights
Serum starvation up-regulates CD73 expression in melanoma cells via TGF-β1 signaling. This enhances CD73 activity and promotes melanoma cell invasion, particularly in dedifferentiated tumor cells.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- CD73 generates extracellular adenosine, crucial for tumor progression and immune evasion.
- Regulation of CD73 under nutrient stress is largely unknown.
- Melanoma cells' response to microenvironmental changes impacts therapeutic resistance.
Purpose of the Study:
- Investigate CD73 regulation in melanoma cells under nutrient deprivation.
- Elucidate the role of TGF-β1 signaling in CD73 expression.
- Assess the functional impact of CD73 modulation on melanoma cell invasion.
Main Methods:
- Serum starvation of A375 melanoma cells.
- Analysis of CD73 expression and AMPase activity.
- TGF-β1 signaling pathway blockade and activation.
- In vitro cell invasion assays and multiplex immunofluorescence imaging.
Main Results:
- Serum starvation time-dependently up-regulated CD73 expression and AMPase activity.
- TGF-β1 signaling pathway mediates starvation-induced CD73 up-regulation.
- CD73 blockade significantly inhibited melanoma cell invasion.
- Elevated CD73 expression correlated with dedifferentiated, invasive melanoma cells in metastases.
Conclusions:
- Nutrient availability and TGF-β1 signaling are key regulators of CD73 in melanoma.
- Targeting CD73 may represent a therapeutic strategy against invasive melanoma.
- CD73 expression is a potential biomarker for aggressive melanoma phenotypes.
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