Key result
Elevated shear stress, NEM, or ligand engagement induced shedding of GPVI from human platelets, but only shear or NEM significantly increased ADAM10 enzyme activity.
Shear forces within the vasculature can regulate ADAM10 activity, indicating different mechanisms for shear- and ligand-induced shedding of GPVI from platelets.
Shear may modulate platelet reactivity in high-flow states; leaves open ADAM10-independent GPVI shedding pathways for targeted study.
The primary platelet collagen receptor, glycoprotein VI (GPVI), plays an important role in platelet activation and thrombosis. The ectodomain of human GPVI (sGPVI) is proteolytically shed from human platelets by a-disintegrin-and-metalloproteinase 10 (ADAM10). In this study, we used a novel ADAM10-sensitive fluorescence resonance energy transfer sensor to analyze ADAM10-mediated shedding of GPVI from human platelets in response to the exposure of GPVI ligands collagen-related peptide (10 μg/mL), collagen (10 μg/mL), and convulxin (0.1 μg/mL) to shear stress (1000-10000 s(-1), 5 min), or a generic activator of metalloproteinases, N-ethylmaleimide (NEM, 5 mM). Elevated shear, NEM, or ligand engagement of GPVI all induced shedding of GPVI, as detected by release of sGPVI; however, only shear or NEM significantly increased ADAM10 enzyme activity. ADAM10 activity was also detectable on the surface of thrombi formed on a collagen-coated surface under flow conditions. Our findings indicate different mechanisms regulate shear- and ligand-induced shedding and shear forces found within the vasculature can regulate ADAM10 activity.
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Facey et al. (2016) studied this question. Shear stress, NEM, or ligand engagement was evaluated on ADAM10 enzyme activity and shedding of GPVI. Elevated shear stress, NEM, or ligand engagement induced shedding of GPVI from human platelets, but only shear or NEM significantly increased ADAM10 enzyme activity.
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