Staphylococcal Extracellular Adherence Protein Induces Platelet Activation by Stimulation of Thiol Isomerases

Author:

Bertling Anne1,Niemann Silke1,Hussain Muzaffar1,Holbrook Lisa1,Stanley Ronald G.1,Brodde Martin F.1,Pohl Silke1,Schifferdecker Tina1,Roth Joachim1,Jurk Kerstin1,Müller Anja1,Lahav Judith1,Peters Georg1,Heilmann Christine1,Gibbins Jonathan M.1,Kehrel Beate E.1

Affiliation:

1. From the Department of Anesthesiology and Intensive Care, Experimental and Clinical Hemostasis, University of Muenster (A.B., S.N., M.F.B., S.P., T.S., K.J., A.M., B.E.K.); Interdisciplinary Center for Clinical Research (IZKF) Muenster (A.B., C.H., B.E.K.); Institute of Medical Microbiology, University of Muenster, Muenster, Germany (M.H., G.P., C.H.); Institute for Cardiovascular and Metabolic Research, University of Reading, Reading, United Kingdom (L.H., R.G.S., J.M.G.); Department of Veterinary...

Abstract

Objective— Staphylococcus aureus can induce platelet aggregation. The rapidity and degree of this correlates with the severity of disseminated intravascular coagulation, and depends on platelet peptidoglycans. Surface-located thiol isomerases play an important role in platelet activation. The staphylococcal extracellular adherence protein (Eap) functions as an adhesin for host plasma proteins. Therefore we tested the effect of Eap on platelets. Methods and Results— We found a strong stimulation of the platelet-surface thiol isomerases protein disulfide isomerase and endoplasmic reticulum stress proteins 57 and 72 by Eap. Eap induced thiol isomerase-dependent glycoprotein IIb/IIIa activation, granule secretion, and platelet aggregation. Treatment of platelets with thiol blockers, bacitracin, and anti–protein disulfide isomerase antibody inhibited Eap-induced platelet activation. The effect of Eap on platelets and protein disulfide isomerase activity was completely blocked by glycosaminoglycans. Inhibition by the hydrophobic probe bis(1-anilinonaphthalene 8-sulfonate) suggested the involvement of hydrophobic sites in protein disulfide isomerase and platelet activation by Eap. Conclusion— In the present study, we found an additional and yet unknown mechanism of platelet activation by a bacterial adhesin, involving stimulation of thiol isomerases. The thiol isomerase stimulatory and prothrombotic features of a microbial secreted protein are probably not restricted to S aureus and Eap. Because many microorganisms are coated with amyloidogenic proteins, it is likely that the observed mechanism is a more general one.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Cardiology and Cardiovascular Medicine

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