Experimental Hematology
Volume 36, Issue 12 , Pages 1616-1624, December 2008

Increased soluble urokinase plasminogen activator receptor (suPAR) is associated with thrombosis and inhibition of plasmin generation in paroxysmal nocturnal hemoglobinuria (PNH) patients

  • Elaine M. Sloand

      Affiliations

    • National Heart Lung and Blood Institute, Hematology Branch, Bethesda, Md., USA
    • Corresponding Author InformationOffprint requests to: Elaine M. Sloand, M.D., National Heart Lung and Blood Institute, Hematology Branch (MS 2490), Bethesda, MD 20892-1260
  • ,
  • Loretta Pfannes

      Affiliations

    • National Heart Lung and Blood Institute, Hematology Branch, Bethesda, Md., USA
  • ,
  • Phillip Scheinberg

      Affiliations

    • National Heart Lung and Blood Institute, Hematology Branch, Bethesda, Md., USA
  • ,
  • Kenneth More

      Affiliations

    • Bethesda Naval Hospital, Bethesda, Md., USA
  • ,
  • Colin O. Wu

      Affiliations

    • Office of Biostatistics Research, Division of Prevention and Population Sciences, National Heart Lung and Blood Institute, Bethesda, Md., USA
  • ,
  • McDonald Horne

      Affiliations

    • Pathology Section, Office of Research Services, Office of the Director, National Institutes of Health, Bethesda, Md., USA
  • ,
  • Neal S. Young

      Affiliations

    • National Heart Lung and Blood Institute, Hematology Branch, Bethesda, Md., USA

Received 21 December 2007; received in revised form 12 June 2008; accepted 17 June 2008. published online 28 October 2008.

Paroxysmal nocturnal hemoglobinuria (PNH) is an acquired genetic disorder of the bone marrow that produces intravascular hemolysis, proclivity to venous thrombosis, and hematopoietic failure. Mutation in the PIG-A gene of a hematopoietic stem cell abrogates synthesis of glycosylphosphoinositol (GPI) anchors and expression of all GPI-anchored proteins on the surface of progeny erythrocytes, leukocytes, and platelets. Urokinase plasminogen activator receptor (uPAR), a GPI-linked protein expressed on neutrophils, mediates endogenous thrombolysis through a urokinase-dependent mechanism. Here we show that membrane GPI-anchored uPAR is decreased or absent on granulocytes and platelets of patients with PNH, while soluble uPAR (suPAR) levels are increased in patients’ plasma. Serum suPAR concentrations correlated with the number of GPI-negative neutrophils and were highest in patients who later develop thrombosis. In vitro, suPAR is released from PNH hematopoietic cells and from platelets upon activation, suggesting that these cells are the probable source of plasma suPAR in the absence of GPI anchor synthesis and trafficking of uPAR to the cell membrane. In vitro, the addition of recombinant suPAR results in a dose-dependent decrease in the activity of single-chain urokinase. We hypothesized that suPAR, prevents the interaction of urokinase with membrane-anchored uPAR on residual normal cells.

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PII: S0301-472X(08)00417-7

doi:10.1016/j.exphem.2008.06.016

Experimental Hematology
Volume 36, Issue 12 , Pages 1616-1624, December 2008