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P Harpel

Publications and source records attributed to P Harpel.

7 recordsLinked to original sources

Autoantibodies to vascular heparan sulfate proteoglycan in systemic lupus erythematosus react with endothelial cells and inhibit the formation of thrombin-antithrombin III complexes.

Vascular heparan sulfate proteoglycan (vHSPG) is an important functional component of the microvasculature. Previous studies have demonstrated autoimmunity to vHSPG in systemic lupus erythematosus (SLE). In the current studies, we further investigated the immunospecificity of anti-vHSPG antibodies in SLE sera by enzyme-linked immunoassay (ELISA). In direct binding assays, SLE sera contained IgG antibodies reactive with native vHSPG and with heparan sulfate (HS) glycosaminoglycan in significantly higher titers than controls. Employing purified SLE IgG in liquid-phase competitive immunoinhibition ELISAs, SLE IgG anti-HS antibodies cross-reacted with heparin and DNA, but not with other glycosaminoglycans or anionic phospholipid antigens. Immunochemical studies demonstrated that the immunodominant site on HS recognized by SLE IgG contained 2-O-sulfated uronic acid. Removal of N-sulfated and 6-O-sulfated residues primarily on N-acetyl-glucosamine had no effect on antigenicity, further demonstrating that nonspecific charge interactions which are the result of sulfation do not solely account for the antigenicity of HS. SLE IgG from patients with active SLE was further affinity purified on DNA-cellulose and HS-Sepharose columns for immunospecificity studies. After affinity purification of both anti-DNA and anti-HS antibodies, significant enhancement of direct binding reactivity with HS was noted. In addition, anti-DNA and anti-HS IgG antibody reacted with the cell surface of endothelial cells by a cellular ELISA (CELISA). Immunoinhibition studies of CELISA reactivity confirmed that affinity-purified SLE IgG anti-DNA anti-HS antibody were reactive with endothelial cell surface HS antigens. Furthermore, SLE IgG anti-DNA antibody reactivity with endothelial cells was not reduced by DNase treatment of the cells, but was significantly reduced by heparitinase digestion. Since HS plays an important role in the maintenance of normal anticoagulation on the endothelial cell surface by binding antithrombin III, we investigated the inhibition of heparin-accelerated thrombin-antithrombin III complex formation by SLE IgG. Purified IgG from patients with active SLE, but not from normal controls, inhibited heparin-accelerated formation of TAT complexes. These studies demonstrate the presence of IgG autoantibodies to HS in patients with SLE. Anti-HS antibodies recognize an antigenic site also present in heparin, but not other glycosaminoglycans, bind to the endothelial cell surface, and inhibit the formation of TAT complexes. SLE IgG anti-HS antibodies recognize a sulfated uronic acid epitope containing 2-O-sulfate which is important in certain functions of HS, including antithrombin III binding. Thus, anti-HS antibodies may promote a procoagulant state at the endothelial cell surface.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Monoclonal antibodies to heparan sulfate inhibit the formation of thrombin-antithrombin III complexes.

As components of the cell surface and extracellular matrix, heparan sulfate proteoglycans play an important role in the function of most organs, including the vasculature. Autoimmunity to heparan sulfate (HS) glycosaminoglycan epitopes may play a role in tissue injury. Tight skin (TSK) mice suffer a disease resembling scleroderma, an autoimmune disease associated with alterations in the extracellular matrix of the skin and other organs, as well as vascular injury. Studies of autoimmunity to HS were performed in TSK mice employing a solid-phase radioimmunoassay for the detection of anti-HS antibody. An increase in the clonal frequency of hybridomas secreting anti-HS antibody was noted in TSK mice compared to that in control mice. Liquid-phase competitive inhibition specificity studies of IgM and IgG anti-HS monoclonal antibodies demonstrated little cross-reactivity with other glycosaminoglycans. Some cross-reactivity, albeit at lower affinity, with phosphorylated antigens including DNA, cardiolipin, and RNA polymerase were noted. Negatively charged sulfate groups and carboxyl groups played a role in the immunodominant site. Monoclonal antibodies to HS inhibited the binding of HS to antithrombin III and the formation of thrombin-antithrombin III complexes. These results demonstrate autoimmunity to HS in TSK mice. The results also indicate that HS is a high-affinity antigen of pathological significance for anti-DNA and anti-phospholipid antibodies. Thrombosis induced by polyclonal anti-phospholipid antibodies may be mediated by a subset of these antibodies with high affinity for HS. Anti-HS antibodies may promote a procoagulant state by the blockade of HS binding to antithrombin III, inhibiting the accelerated formation of thrombin-antithrombin III complexes.

Animals↗

Alpha 2-macroglobulin is a binding protein for basic fibroblast growth factor.

After incubation with human serum or plasma, 125I-basic fibroblast growth factor (bFGF) (molecular mass 18.5 kDa) exhibits molecular mass forms greater than 200 kDa as determined by nonreducing sodium dodecyl sulfate-polyacrylamide gel electrophoresis followed by autoradiography. These high molecular mass forms of bFGF are immunoprecipitable with antiserum raised against alpha 2-macroglobulin (alpha 2M). Purified alpha 2M and 125I-bFGF form a covalent complex in a specific, saturable manner. Excess unlabeled bFGF competes with 125I-bFGF for complex formation. Complex formation is complete after 4 h and is inhibited by pretreating alpha 2M with dithiothreitol, iodoacetamide, iodoacetic acid, and N-ethylmaleimide. The complex is resistant to acidic conditions and denaturants such as urea. Heparin, which binds bFGF, has no effect on complex formation. Methylamine, which blocks protease binding to alpha 2M, increases the amount of 125I-bFGF that can be bound 2-fold. Plasmin and trypsin treatment of alpha 2M has no effect on 125I-bFGF binding. The ability of growth factors to compete for binding is specific, as aFGF and TGF-beta compete for binding to alpha 2M, whereas platelet-derived growth factor does not. 125I-bFGF.alpha 2M complexes do not bind to low affinity bFGF binding sites and bind poorly to high affinity bFGF binding sites on BHK-21 cells. In addition, 125I-bFGF bound to alpha 2M has decreased ability to stimulate plasminogen activator production in bovine capillary epithelial cells.

Animals↗

Histological localization of plasminogen activator and proteolytic activity in the human stomach and duodenum.

Plasminogen activator activity has been localized in gastric and duodenal tissue using a histological technique. This activity could be separated from proteolytic activity by incorporating in-aminocaproic acid into the fibrin substrate or by heat treatment. Plasminogen activator activity was found in relation to mucosal and submucosal blood vessels in the tissues studied. Proteolytic activity was identified in the surface epithelium, the gastric antral and fundal glands, and in the antral submucosal fat. Proximal duodenal tissue contained proteolytic activity in relation to Brunner's glands.

Aminocaproates↗