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Published on: September 20, 2011
Diverging signaling events control the pathway of GPVI down-regulation in vivo
Tamer Rabie1, David Varga-Szabo, Markus Bender
1University of Würzburg, Rudolf Virchow Center, Deutsche Forschungsgemeinschaft Research Center for Experimental Biomedicine, Würzburg, Germany.
Abstract:
Coronary artery thrombosis is often initiated by platelet activation on collagen-rich subendothelial layers in the disrupted atherosclerotic plaque. The activating platelet collagen receptor glycoprotein VI (GPVI) noncovalently associates with the Fc receptor gamma-chain (FcRgamma), which signals through its immunoreceptor-tyrosine-based activation motif (ITAM) via the adaptor LAT leading to the activation of phospholipase Cgamma2 (PLCgamma2). GPVI is a promising antithrombotic target as anti-GPVI antibodies induce the irreversible loss of the receptor from circulating platelets by yet undefined mechanisms in humans and mice and long-term antithrombotic protection in the latter. However, the treatment is associated with transient but severe thrombocytopenia and reduced platelet reactivity to thrombin questioning its clinical usefulness. Here we show that GPVI down-regulation occurs through 2 distinct pathways, namely ectodomain shedding or internalization/intracellular clearing, and that both processes are abrogated in mice carrying a point mutation in the FcRgamma-associated ITAM. In mice lacking LAT or PLCgamma2, GPVI shedding is abolished, but the receptor is irreversibly down-regulated through internalization/intracellular clearing. This route of GPVI loss is not associated with thrombocytopenia or altered thrombin responses. These results reveal the existence of 2 distinct signaling pathways downstream of the FcRgamma-ITAM and show that it is possible to uncouple GPVI down-regulation from undesired side effects with obvious therapeutic implications.
Insights
Platelet receptor glycoprotein VI (GPVI) loss during anti-thrombotic therapy occurs via two distinct pathways. Targeting one pathway may reduce side effects like thrombocytopenia, improving antithrombotic treatments.
Area of Science:
- Cardiovascular Biology
- Immunology
- Hematology
Background:
- Platelet activation via glycoprotein VI (GPVI) on collagen initiates coronary artery thrombosis.
- Anti-GPVI antibodies offer antithrombotic protection but cause severe thrombocytopenia and reduced platelet reactivity.
- The mechanisms of GPVI loss and associated side effects are not fully understood.
Purpose of the Study:
- To elucidate the distinct pathways of GPVI down-regulation.
- To investigate the role of Fc receptor gamma-chain (FcRgamma) ITAM, LAT, and phospholipase Cgamma2 (PLCgamma2) in GPVI regulation.
- To determine if GPVI down-regulation can be uncoupled from adverse effects.
Main Methods:
- Utilized mouse models with specific genetic mutations (FcRgamma ITAM point mutation, LAT deficiency, PLCgamma2 deficiency).
- Analyzed GPVI ectodomain shedding and internalization/intracellular clearing.
- Assessed platelet reactivity to thrombin and platelet counts.
Main Results:
- GPVI down-regulation occurs through ectodomain shedding or internalization/intracellular clearing.
- Both pathways are blocked by FcRgamma ITAM mutation.
- In LAT or PLCgamma2 deficient mice, shedding is blocked, but internalization/clearing still occurs, without thrombocytopenia or altered thrombin response.
Conclusions:
- Two distinct FcRgamma-ITAM signaling pathways regulate GPVI down-regulation.
- Targeting the internalization/intracellular clearing pathway may allow GPVI-mediated antithrombotic effects without thrombocytopenia.
- This finding has significant implications for developing safer antithrombotic therapies.
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