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Biomedical subjects

S Meri

Publications and source records attributed to S Meri.

At least 19 recordsLinked to original sources

Activation of the alternative pathway of complement by monoclonal lambda light chains in membranoproliferative glomerulonephritis.

Immunopathological evidence suggests that activation of the alternative pathway of complement (AP) is involved in membranoproliferative glomerulonephritis (MPGN) and in immunoglobulin A nephropathy. In this report we describe an AP dysfunction-associated factor that was isolated from the serum and urine of a patient with hypocomplementemic MPGN. Extensive glomerular deposits of C3, properdin, and of the terminal complement components were observed in the kidney of the patient. In her serum the AP hemolytic activity was virtually absent. When mixed with fresh normal serum, the patient's serum induced a 96% C3 conversion during a 30-min incubation at +37 degrees C. This activity was found to be due to a circulating factor that by immunochemical characterization proved to be a 46-kD monoclonal immunoglobulin lambda light (L) chain dimer (lambda L). Purified lambda L, but not control lambda or kappa L chains from patients with L chain disease, activated the AP in a dose- and ionic strength-dependent manner. Functionally, lambda L was differentiated from C3 nephritic factor (an autoantibody against the AP C3 convertase, C3bBb) by its inability to bind to and stabilize the C3bBb enzyme. Instead, lambda L was observed to interact directly with the AP control factor H. Thus, lambda L represents a novel type of immunoglobulin-related AP-activating factor with the capacity to initiate alternative complement pathway activation in the fluid phase.

Antibodies, Monoclonal

Loss of expression of protectin (CD59) is associated with complement membrane attack complex deposition in myocardial infarction.

BACKGROUND: Protectin (CD59) is a recently discovered inhibitor of the complement membrane attack complex (MAC). In the present study we investigated expression of protectin in human heart and examined the relationship between MAC deposition and protectin in myocardial infarction. EXPERIMENTAL DESIGN: Myocardial tissue specimens were obtained at autopsy from patients who had died of myocardial infarction (n = 10) or other causes (n = 5). MAC and protectin were detected by indirect immunofluorescence microscopy analysis in the heart sections by using antibodies against individual components of MAC, MAC neoantigens and protectin. Myocardial protectin was purified by affinity chromatography and compared with the previously characterized erythrocyte and urinary protectins by sodium dodecyl sulfate-polyacrylamide gel electrophoresis analysis, N-terminal amino acid sequencing, and testing its ability to bind to the terminal complement complex. The possible glycophosphoinositol-type anchorage of protectin in the heart was examined by treating myocardial sections with glycophosphoinositol-specific phospholipase C. RESULTS: Immunoblotting and immunofluorescence analysis showed expression of protectin in the sarcolemmal membranes of normal myocardium. Protectin purified from normal human heart tissue had the same molecular weight and N-terminal amino acid sequence as CD59 purified from urine. In sucrose density ultracentrifugation analysis it was observed to bind efficiently to the SC5b-8 complex. In normal myocardium the expression of CD59 was sensitive to treatment with glycophosphoinositol-specific phospholipase C. The expression of CD59 was lost or clearly diminished in infarcted lesions aged 1-14 days. Loss of CD59 expression was accompanied by concomitant deposition of the MAC within the CD59-negative lesions. In border areas between an infarcted lesion and normal tissue, CD59 often appeared in small vesicles, suggesting shedding as a possible mechanism for its removal. CONCLUSIONS: Glycophosphoinositol-anchored CD59 is expressed in the sarcolemmal membranes of normal heart but lost from infarcted myocardium. Acquired loss of resistance to autologous complement and subsequent complement attack may thus be involved in the pathophysiology of myocardial infarction.

Aged

Level of plasma prekallikrein and its inhibitors in reactors and nonreactors during intravenous enhancement with contrast media.

Complex contact activation systems may play a major role in the side effects of i.v. contrast media (CM). This is why quantitative measurements of several factors (plasma prekallikrein, hematocrit (hct), alpha-2-macroglobulin, alpha-1-antitrypsin, and C1-esterase inhibitor) were determined prior to and following the injection of CM during body CT examination in 5 patient groups, each (n = 10) receiving one of 5 different CM, including ioxaglate, meglumine iodamide, metrizamide, iohexol, and meglumine diatrizoate. The initial plasma prekallikrein level was available from 45 patients and was statistically lower in reactors (mean 90.6 mumol TAMe/ml/h; n = 13) than in nonreactors (mean 107 mumol TAMe/ml/h; n = 32) (p = 0.006), but there was no statistically significant difference in the decrease of plasma prekallikrein before and at 5 min after the injection for those 2 groups. The initial plasma C1-esterase inhibitor level was lower in reactors, while the plasma alpha-2-macroglobulin level was higher in that group than in nonreactors. The results indicate that the measurement of plasma prekallikrein combined with plasma C1-esterase inhibitor and alpha-2-macroglobulin measurement could be useful when predicting which patients are prone to CM reactions.

Blood Proteins

Localization of the heparin-binding site on complement factor H.

Factor H is a regulator of complement activation and, in this capacity, it prevents activation of the alternative pathway on host cells and tissues when it recognizes markers on these surfaces. This report describes the binding characteristics and location of the site on factor H that is responsible for host recognition. Factor H was found to bind a variety of polyanions, including heparin, heparan sulfate, dextran sulfate, and clusters of sialic acid. In heparin-agarose binding assays it exhibited an affinity for heparin only 2-fold weaker than that of antithrombin III. Factor H exhibited little or no affinity for polyaspartic acid or bacterial colominic acid (polysialic acid). Factor H (Mr 150,000 with approximate dimensions of 30 x 600 A) is composed of 20 highly homologous domains (SCRs) that are arranged as beads on a string. Polyanions were found to block a tryptic cleavage site in domain 15, and a photoaffinity-tagged heparin probe labeled the region between domains 12 and 15. Affinity chromatography of tryptic fragments on heparin-Sepharose confirmed that this region contained the heparin-binding site. CNBr cleavage at Met787 located between SCRs 13 and 14 split the photoaffinity-tagged region. Sequence analysis strongly suggests that domain 13 contains the primary site of polyanion binding. Factor H expresses its complement regulatory function through a site located in domains 4-6 where C3b binds. Thus, the polyanion-binding site that regulates the affinity of factor H for C3b appears to reside more than 200 A away from the C3b-binding site.

Amino Acid Sequence

The complement-inhibiting protein, protectin (CD59 antigen), is present and functionally active on glomerular epithelial cells.

Protectin (CD59 antigen) is a 20-kD phosphatidyl-inositol-linked membrane protein that inhibits formation of the membrane attack complex (MAC) of complement on homologous cells. Although the antigen has been identified in a number of human tissues, until recently a functional role had been demonstrated only in circulating cells. Using immunofluorescence techniques we have shown the presence of protectin on human glomerular epithelial cells (GEC) in culture and on GEC, tubular epithelial cells and endothelial cells in frozen sections of normal human renal cortex. In addition, we present evidence that this protein functions in protection of GEC from homologous complement: cultured cells incubated with the Fab2 fragment of a monoclonal anti-protein antibody were markedly more susceptible to killing by homologous serum than were cells in the absence of Fab2 anti-protectin. These findings suggest that this protein may be important in the maintenance of glomerular integrity in vivo, and may be of relevance in certain renal diseases.

Animals

Acute-phase proteins during hemodialysis: correlations with serum interleukin-1 beta levels and different dialysis membranes.

The effects of hemodialysis (HD) on the levels of serum amyloid A (SAA), C-reactive protein (CRP) and interleukin-1 beta (IL-1 beta) were studied in 8 patients. Bicarbonate dialysate was used exclusively, and three different membranes, Cuprophan (CU), cellulose acetate (CA), and polymethylmetachrylate (PMMA) were compared. The SAA levels increased significantly with each membrane. With CU, they rose from 4.0 +/- 2.0 (mg/l, mean +/- SEM) to 9.6 +/- 2.8 at 60 min and to 15.0 +/- 4.9 at 240 min. The values with CA were 3.8 +/- 2.1, 15.3 +/- 5.6, and 23.8 +/- 3.9; and with PMMA 2.4 +/- 1.3, 12.1 +/- 5.6, and 12.1 +/- 5.9, respectively. The alterations of SAA neither correlated with the weight loss nor the increase of serum albumin during dialysis. The CRP values showed insignificant changes. The IL-1 beta levels rose with CU from 87 +/-18 (ng/l) to 155 +/- 33 at 60 min and to 172 +/- 47 at 240 min. With CA, the values were 67 +/- 14, 198 +/- 46, and 121 +/- 23, and with PMMA 63 +/- 13, 246 +/- 93, and 211 +/- 86, respectively. These results did not correlate with the effects of the membranes on complement activation. It is concluded that the release of cytokines during HD apparently leads to a rapid synthesis of acute-phase proteins as a sign of inflammation. Thus, SAA may be used as one indicator of the biocompatibility of HD treatment.

Adult

Distribution of protectin (CD59), a complement membrane attack inhibitor, in normal human tissues.

Protectin (CD59) is a recently discovered 18-20 kDa glycoprotein that effectively inhibits lysis by the membrane attack complex of the homologous complement system. This glycoprotein is widely distributed on the membranes of human blood cells (erythrocytes and leukocytes). By using immunofluorescence microscopy, protectin was observed in vascular endothelia throughout the body and in extravascular tissues. Cells expressing protectin were also found in ductal epithelia of pancreatic, biliary, and salivary systems, bronchi, and kidney collecting ducts. Furthermore, protectin was expressed in the epidermis and in the syncytiotrophoblast of placenta. The expression of protectin in endothelia, in various epithelial cells, and in placenta presumably protects autologous tissues and the fetoplacental unit from complement-mediated damage.

Antigens, CD

Human protectin (CD59), an 18-20-kD homologous complement restriction factor, does not restrict perforin-mediated lysis.

Human protectin (CD59) is an 18-20-kD membrane glycoprotein that restricts lysis of human erythrocytes and leukocytes by homologous complement. By directly incorporating protectin into membranes of heterologous cells we observed that protectin did not prevent perforin-mediated killing, whereas complement killing was effectively restricted. Further, no significant enhancement of cell-mediated killing or target killing by purified perforin was observed with anti-protectin antibodies. Thus, in contrast with complement lysis, restriction of lysis by protectin does not apply to cell-mediated killing.

Animals

A mechanism of activation of the alternative complement pathway by the classical pathway: protection of C3b from inactivation by covalent attachment to C4b.

In this work we studied the role of the classical pathway complement component C4b in the activation of the alternative pathway. It was found that nascent C3b attaches with high efficiency to C4b and that C3b in C4bC3b complexes is protected from inactivation by factors H and I. Activation of C3 by factors B and D in the presence of Mg2+ ions and excess C4b led to 35% incorporation of nascent C3b into C4bC3b complexes in the fluid phase. In comparison, when human IgG was tested as an acceptor under similar conditions, only 12% of generated C3b was incorporated into IgGC3b complexes. The half-life time of dissociation of C3b from purified C4bC3b complexes was approximately 2.3 h at 37 degrees C. C4b in these complexes protected C3b from inactivation as effectively as any known alternative pathway activator. Thus, C3b bound to C4b was tenfold more stable than free C3b or C3b bound to a nonactivating surface. In comparison, the protection provided by attachment to human IgG was only 67% of that of C4b. The results provide an explanation for observations of alternative pathway recruitment following classical pathway activation and for the stability of the classical pathway C5 convertase on surfaces which do not provide protection for C3b from factors H and I.

Complement C3-C5 Convertases

Discrimination between activators and nonactivators of the alternative pathway of complement: regulation via a sialic acid/polyanion binding site on factor H.

The alternative complement pathway is capable of discriminating human cells and tissues from a wide variety of potential pathogens. It has been recently demonstrated that attachment of complement component C3b to activator-derived molecules (e.g., small polysaccharides) restricts inactivation of C3b by factors H and I in a manner similar to activator surfaces. It is now shown that restriction is reversed by certain soluble polyanions (e.g., sialoglycopeptides, heparin, or dextran sulfate) that mimic the effects of sialic acid and glycosaminoglycans on human cells and tissues. Fluid-phase polyanions enhanced binding of factor H to C3b attached to activating particles, indicating that the effect resulted from increased affinity between C3b and factor H. The enhancement was specific for activator-bound C3b since no enhancement was observed on nonactivating particles. While several polyanions could cause this effect, some polyanions could not, indicating specificity. The active polyanions also inhibited lysis of cells via the alternative pathway. The binding site for sialic acid appears to reside on factor H, since factor H bound to heparin-agarose and to sialic acid-bearing fetuinagarose, whereas C3b bound to neither under the same conditions. These observations suggest that occupation of a specific site on factor H by polyanions induces an increase in the C3b-H affinity, resulting in discrimination of host cells and tissues from alternative pathway-activating foreign cells.

Animals

Acute schistosomiasis mansoni in Finnish hunters visiting Africa: need for appropriate diagnostic serology.

Three symptomatic and 3 asymptomatic patients with acute schistosomiasis mansoni are described. The index case presented with fever and eosinophilia 4-6 weeks after swimming in the Pipi River of the Central African Republic, suggesting acute schistosomiasis (Katayama fever). A fortunate early diagnosis led to early treatment of these schistosomiasis patients. Diagnosis was obtained based on the finding of one Schistosoma mansoni egg in the index case and positive serology in all cases. A commercially available passive haemagglutination test for serum bilharzia antibodies was negative in all cases prior to, and 2 weeks after treatment. However, antibodies against gut-associated antigens (GAA) of adult S. mansoni worms could be demonstrated using the indirect immunofluorescence technique. These cases illustrate the importance of using appropriate diagnostic assays for the early demonstration of infection by schistosomes in previously unexposed "nonimmune" patients with atypical symptoms and in asymptomatic individuals at risk even after brief exposure to schistosome-containing water in endemic countries. Careful (and repeated) stool examination and appropriate serological tests are the keys to prompt diagnosis of S. mansoni infection.

Adult

Human protectin (CD59), an 18,000-20,000 MW complement lysis restricting factor, inhibits C5b-8 catalysed insertion of C9 into lipid bilayers.

Human cells are relatively resistant to lysis by the homologous complement system. Here we describe the mechanism of action of a recently discovered and widely distributed 18,000-20,000 molecular weight (MW) membrane glycoprotein (CD59), which appears to act as a major protective element against complement-mediated lysis (hence called protectin). When incorporated into heterologous erythrocyte membranes, protectin efficiently prevented cell lysis by human serum. Neutralization with antibody of the naturally occurring protectin on human erythrocytes or on nucleated K562 cells increased their susceptibility to lysis by homologous complement. During complement activation, protectin became incorporated into the membrane attack complex (MAC). By interacting with newly exposed regions in the C5b-8 complex and in aggregating C9 it limited the number of C9 molecules associating with the C5b-8 complex to a C8:C9 ratio of 1:1.5 instead of a normal average of 1:3.5. The results demonstrate directly that protectin is a powerful inhibitor of complement cytolysis and acts by inhibiting the C5b-8 catalysed insertion of C9 into the lipid bilayer.

Antigens, Differentiation

High frequencies of B8, DR3 and C4A null alleles and immunological disorders in a family of four generations.

In a Finnish family covering four generations many members had immunological symptoms or disorders (mostly skin or joint oriented) with the presence of the B8 antigen positive Major Histocompatibility Complex (MHC) haplotype. Immunological parameters including the presence of autoantibodies, quantitative analysis of the complement components C4, Factor B (BF) and C3 and the serum capacity to inhibit immune precipitation were investigated in relation to the genetic MHC markers. The results showed the importance of the high frequency of the C4A null alleles to these disorders.

Adolescent

Value of C-reactive protein in reflecting the magnitude of complement activation in children undergoing open heart surgery.

The kinetics of C-reactive protein (CRP) were studied prospectively in 30 children (aged 21 days - 16 years) undergoing open heart surgery. CRP was related to the kinetics of total haemolytic complement, complement C3a and postoperative complications. Two (7%) patients died and ten (33%) had postoperative complications. The patients with complications were younger (p less than 0.035), underwent longer perfusions (p less than 0.001) and had longer aortic cross-clamping times (p less than 0.003). The mean peak CRP level after surgery (108 mg/l) was reached, on the average, in 43 h. No statistical difference in CRP concentrations was found between the complication and non-complication groups. Extensive complement activation was seen in every patient. CRP did not reflect the magnitude of complement activation induced by cardiopulmonary bypass. The patient sample was too small to draw reliable conclusions about the value of CRP in detecting postoperative complications after open heart surgery in children.

Adolescent

Plasmin and fibronectin degradation in chronic secretory otitis media.

Mucoid effusions from 39 children with secretory otitis media, altogether 42 specimens, were analyzed for proteolytic activity using radial caseinolysis procedures, for fibronectin using a solid-phase enzyme immunoassay, and for fibronectin fragmentation using immunoblotting. All samples contained proteolytic activity, tentatively identified as plasmin on the basis of comigration with purified human plasmin in zymographic analysis. In 19 specimens the plasmin level exceeded 1 microgram/mg of protein; the highest value recorded was 18.7 micrograms/mg. Low levels of net plasminogen activator activity were found in 12 specimens and identified as urokinase according to comigration with the urokinase standard in zymography. Fibronectin was detected in all but one of the 42 specimens; in seven specimens the levels exceeded those in normal plasma, calculated per milligram of total protein. Extensive fragmentation of fibronectin was found in 19 specimens, correlating with high plasmin levels. The results are indicative of an ongoing proteolytic process in secretory otitis media and suggest that plasmin-caused degradation of the fibronectin-containing basement membrane and subsequent formation of granulation tissue may be involved in the development of adhesive middle ears.

Child

Complement activation and HLA-B27.

The efficiency of complement activation was studied in sera from HLA-B27 positive and negative subjects (27 with previous yersinia arthritis and 35 controls). Activation of complement with zymosan induced higher mean levels of the anaphylatoxin C3a in HLA-B27 positive sera (mean (SD) 7.40 (1.66) mg/l) than in HLA-B27 negative sera (6.41 (1.79) mg/l). Similarly, higher levels of C3d,g, another C3 breakdown fragment, were obtained in HLA-B27 positive sera after Escherichia coli 0111:B4 lipopolysaccharide treatment (17.6 (3.7)% v 15.0 (3.8)%). The differences occurred irrespective of previous arthritis, complement C4 or Bf phenotype, or variation in background complement levels. The findings suggest that an increased responsiveness to complement activators may contribute to the pathogenesis of HLA-B27 associated inflammatory diseases.

Adult

Complement activation during cardiopulmonary bypass in children.

Complement activation was evaluated prospectively in serial serum and plasma samples from 30 children, who underwent cardiopulmonary bypass operations. Each patient showed a decrease in total hemolytic C levels and increase in C3 activation product (C3a desArg and C3bi/c) levels. In 11 of the 30 patients surgery was associated with a complication: death (2), respiratory failure (RF, 9), septicaemia (4), postpericardiotomy syndrome (PPS, 1) and pancreatitis (1). Patients suffering from RF were younger, underwent longer perfusions and had somewhat more extensive changes in the C system, although no direct correlation between high C3a desArg levels and RF existed. Instead, the increase in C3a desArg was in linear correlation with the perfusion time. Most complications during the latter postoperative period were associated with distinct episodes of lower grade C activation.

Cardiopulmonary Bypass