c-Cbl regulates MICA- but not ULBP2-induced NKG2D down-modulation in human NK cells
Rosa Molfetta1, Linda Quatrini, Cristina Capuano
1Department of Molecular Medicine, "Sapienza" University of Rome, Rome, Italy.
Abstract:
The NKG2D activating receptor on human NK cells mediates "altered self" recognition, as its ligands (NKG2DLs) are upregulated on target cells in a variety of stress conditions. Evidence collected in the past years shows that, even though expression of NKG2DLs acts as a danger signal that renders tumor cells susceptible to cytotoxicity, chronic exposure to soluble or membrane-bound NKG2DLs can lead to down-modulation of receptor expression and impairment of NKG2D-mediated cell functions. Here, we evaluated whether different cell-bound NKG2DLs, namely MICA and ULBP2, are equivalently able to induce NKG2D down-modulation on human NK cells. We found that although both ligands reduce NKG2D surface expression, MICA promotes a stronger receptor down-modulation than ULBP2, leading to a severe impairment of NKG2D-dependent NK-cell cytotoxicity. We also provide evidence that the ubiquitin pathway and c-Cbl direct MICA-induced but not ULBP2-induced NKG2D internalization and degradation, thus identifying a molecular mechanism to explain the differential effects of MICA and ULBP2 on NKG2D expression. A better understanding of the molecular mechanisms employed by the different NKG2DLs to control NKG2D surface expression could be useful for the development of anti-tumor strategies to restore a normal level of NKG2D receptors on human NK cells.
Insights
MICA and ULBP2 ligands differentially regulate NKG2D receptor expression on NK cells. MICA causes greater NKG2D down-modulation and impaired cytotoxicity than ULBP2, via distinct molecular pathways.
Area of Science:
- Immunology
- Cellular Biology
- Cancer Research
Background:
- The NKG2D receptor on human NK cells recognizes
Purpose of the Study:
- Investigate differential effects of MICA and ULBP2 ligands on NKG2D receptor expression and function.
- Elucidate molecular mechanisms underlying ligand-induced NKG2D down-modulation.
Main Methods:
- Flow cytometry to assess NKG2D surface expression.
- Cytotoxicity assays to measure NK cell killing.
- Western blotting and ubiquitination assays to study protein degradation pathways.
Main Results:
- Both MICA and ULBP2 down-modulate NKG2D surface expression on human NK cells.
- MICA induces significantly stronger NKG2D down-modulation and impairs NK cell cytotoxicity more severely than ULBP2.
- MICA-induced NKG2D internalization and degradation are dependent on the ubiquitin pathway and c-Cbl, unlike ULBP2-induced effects.
Conclusions:
- MICA and ULBP2 exhibit distinct mechanisms in regulating NKG2D expression and function.
- Understanding these differential pathways is crucial for developing targeted anti-tumor strategies to restore NKG2D-mediated NK cell immunity.
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