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Determination of Lipid Raft Partitioning of Fluorescently-tagged Probes in Living Cells by Fluorescence Correlation Spectroscopy FCS
Published on: April 6, 2012
Multiple steps determine CD73 shedding from RPE: lipid raft localization, ARA1 interaction, and MMP-9 up-regulation
Wei Zhang1, Shumin Zhou2, Guoping Liu3
1Department of Strabismus, Tianjin Eye Disease Hospital, Tianjin, 300020, China.
Abstract:
Physiologically, retinal pigment epithelium (RPE) expresses high levels of CD73 in their membrane, converting AMP to immune suppressive adenosine, mediates an anti-inflammatory effect. However, after being exposed to inflammatory factors, RPE rapidly becomes CD73-negative cells, which render RPE's immune suppressive function and accelerate local inflammation. Here, we investigated the mechanism leading to the loss of membrane CD73 in RPE. We found the controversy that when membrane CD73 was significantly diminished in inflammatory RPE, Cd73 mRNA levels were not changed at all. It was further verified that, matrix metalloproteinase-9 (MMP-9) mediated the shedding of CD73 from the cell membrane of inflammatory RPE by catalyzing its K547/F548 site. However, MMP-9 could not catalyze uncomplexed CD73, the interaction of CD73 with adenosine receptor A1 subtype (ARA1) is necessary for being catalyzed by MMP-9. After being treated by LPS and TNF-α, the formation of CD73/ARA1 complex in RPE was verified by co-immunoprecipitation and FRET-based assays. It was also revealed that CD73 need to be localized in lipid rafts to be capable of interacting with ARA1, since CD73/ARA1 interaction and CD73 shedding were completely blocked by the addition of lipid raft synthesis inhibitor. As a conclusion, multiple steps are involved in CD73 shedding in RPE, including up-regulation of MMP-9 activity, localization of CD73 in lipid rafts, and the formation of CD73/ARA1 complex. Lipid rafts committed CD73 with high mobility, shuttled CD73 to ARA1 to form a complex, which was capable of being recognized and catalyzed by MMP-9.
Insights
Inflammation causes retinal pigment epithelium (RPE) to lose membrane CD73, impairing immune suppression. Matrix metalloproteinase-9 (MMP-9) sheds CD73 by catalyzing a complex with adenosine receptor A1 (ARA1) within lipid rafts.
Area of Science:
- Immunology
- Cell Biology
- Ophthalmology
Background:
- Retinal pigment epithelium (RPE) normally expresses CD73, converting AMP to adenosine for immune suppression.
- Inflammatory conditions cause RPE to lose CD73, diminishing its immune suppressive function and promoting inflammation.
Purpose of the Study:
- To investigate the mechanism behind the loss of membrane CD73 in RPE under inflammatory conditions.
- To identify the factors and pathways involved in CD73 shedding from RPE cell membranes.
Main Methods:
- Investigated CD73 mRNA levels versus membrane expression in inflammatory RPE.
- Utilized co-immunoprecipitation and FRET assays to verify CD73/adenosine receptor A1 (ARA1) complex formation.
- Employed lipid raft synthesis inhibitors to assess the role of lipid rafts in CD73 shedding.
Main Results:
- CD73 membrane levels decreased significantly in inflammatory RPE, while Cd73 mRNA levels remained unchanged.
- Matrix metalloproteinase-9 (MMP-9) was identified as the enzyme responsible for shedding CD73 from the RPE membrane.
- CD73 shedding by MMP-9 requires its complexation with ARA1 and localization within lipid rafts.
Conclusions:
- CD73 shedding in RPE involves MMP-9 activity, CD73 localization in lipid rafts, and CD73/ARA1 complex formation.
- Lipid rafts facilitate CD73 mobility, enabling interaction with ARA1 and subsequent MMP-9-mediated shedding.
- Understanding this mechanism is crucial for addressing RPE immune dysfunction in inflammatory eye diseases.
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