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The C-terminal CGHC motif of protein disulfide isomerase supports thrombosis
Junsong Zhou, … , Mortimer Poncz, David W. Essex
Junsong Zhou, … , Mortimer Poncz, David W. Essex
Published December 1, 2015; First published November 3, 2015
Citation Information: J Clin Invest. 2015;125(12):4391-4406. https://doi.org/10.1172/JCI80319.
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Categories: Research Article Hematology

The C-terminal CGHC motif of protein disulfide isomerase supports thrombosis

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Abstract

Protein disulfide isomerase (PDI) has two distinct CGHC redox-active sites; however, the contribution of these sites during different physiologic reactions, including thrombosis, is unknown. Here, we evaluated the role of PDI and redox-active sites of PDI in thrombosis by generating mice with blood cells and vessel wall cells lacking PDI (Mx1-Cre Pdifl/fl mice) and transgenic mice harboring PDI that lacks a functional C-terminal CGHC motif [PDI(ss-oo) mice]. Both mouse models showed decreased fibrin deposition and platelet accumulation in laser-induced cremaster arteriole injury, and PDI(ss-oo) mice had attenuated platelet accumulation in FeCl3-induced mesenteric arterial injury. These defects were rescued by infusion of recombinant PDI containing only a functional C-terminal CGHC motif [PDI(oo-ss)]. PDI infusion restored fibrin formation, but not platelet accumulation, in eptifibatide-treated wild-type mice, suggesting a direct role of PDI in coagulation. In vitro aggregation of platelets from PDI(ss-oo) mice and PDI-null platelets was reduced; however, this defect was rescued by recombinant PDI(oo-ss). In human platelets, recombinant PDI(ss-oo) inhibited aggregation, while recombinant PDI(oo-ss) potentiated aggregation. Platelet secretion assays demonstrated that the C-terminal CGHC motif of PDI is important for P-selectin expression and ATP secretion through a non-αIIbβ3 substrate. In summary, our results indicate that the C-terminal CGHC motif of PDI is important for platelet function and coagulation.

Authors

Junsong Zhou, Yi Wu, Lu Wang, Lubica Rauova, Vincent M. Hayes, Mortimer Poncz, David W. Essex

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