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Inhibiting the formation of classical C3-convertase on the Alzheimer's beta-amyloid peptide.

Amyloid plaques are the pathological hallmark of Alzheimer Disease (AD) brains, being found primarily in the hippocampus and neocortex, where AD pathology is most evident. Complement activation is associated with amyloid plaques which are made from fibrils of aggregated amyloid peptides, 39-42 amino acids long. In vitro studies show that aggregated amyloid peptides activate complement via the classical pathway, implying that amyloid plaques themselves cause complement activation in AD brains. In order to test this hypothesis, we sought to determine if a major peptide component of amyloid plaques, A beta 1-42, supports the formation of the classical pathway C3 convertase. Using normal human serum depleted of C3, we are able to detect C3 convertase activity on aggregated A beta 1-42 in vitro. The convertase activity is associated with the binding of C1q and activation of C4 on the aggregated peptide. Inhibitors of C1 esterase and the cation chelator EGTA both block the formation of the convertase activity. Congo red, a histochemical stain for amyloid deposits and an inhibitor of amyloid aggregation, reduces C3 convertase activity on aggregated A beta 1-42, indicated by decreased C3a production. Our results provide further evidence that aggregated A beta 1-42 alone is sufficient to serve as a nidus for complement activation, and thus may be involved directly in initiating the inflammation seen in AD brains.

Alzheimer Disease↗

[Changes in the kallikrein-kinin and complement system in angiography using non-ionic contrast media].

To examine alterations of the kallikrein-kinin system and of the complement due to the bolus injection of newer non-ionic contrast agents, venous blood samples were taken before and 3 min after angiography. There were no adverse contrast reactions clinically evident. Prekallikrein, kallikrein inhibition, beta-factor XIIa inhibition, C1-esterase inhibitor, C1q, C3, ATIII, HMW-kininogen, fibrinogen and factor XII were determined. Bolus injection of the contrast medium caused an activation of the kallikrein-kinin system (p less than 0.05) with reduction of prekallikrein, kallikrein-inhibition, beta-factor XIIa inhibition and C1-esterase inhibitor. The levels of C1q and C3 were also decreased (p less than 0.05) indicating an activation of the complement. Our results demonstrate, that angiography causes a significant activation of the kallikrein-kinin as well as of the complement system in spite of the use of newer non-ionic contrast agents.

Angiography↗

Binding kinetics, structure-activity relationship, and biotransformation of the complement inhibitor compstatin.

We have previously identified a 13-residue cyclic peptide, Compstatin, that binds to complement component C3 and inhibits complement activation. Herein, we describe the binding kinetics, structure-activity relationship, and biotransformation of Compstatin. Biomolecular interaction analysis using surface-plasmon resonance showed that Compstatin bound to native C3 and its fragments C3b and C3c, but not C3d. While binding of Compstatin to native C3 was biphasic, binding to C3b and C3c followed the 1:1 Langmuir binding model; the affinities of Compstatin for C3b and C3c were 22- and 74-fold lower, respectively, than that of native C3. Analysis of Compstatin analogs synthesized for structure-function studies indicated that 1) the 11-membered ring between disulfide-linked Cys2-Cys12 constitutes a minimal structure required for optimal activity; 2) retro-inverso isomerization results in loss of inhibitory activity; and 3) some residues of the type I beta-turn segment also interact with C3. In vitro studies of Compstatin in human blood indicated that a major pathway of biotransformation was the removal of Ile1, which could be blocked by N-acetylation of the peptide. These findings indicate that acetylated Compstatin is stable against enzymatic degradation and that the type I beta-turn segment is not only critical for preservation of the conformational stability, but also involved in intermolecular recognition.

Amino Acid Sequence↗

Biochemical characterization of reperfusion pancreatitis in porcine pancreatic allografts after six hours of cold storage.

Biochemical signs of pancreatitis in plasma and pancreatic exudates were determined in 22 pigs subjected to pancreatic allograft transplantation after the graft had been in cold storage for 6 hr. Two perfusion and preservation media were used. We found signs of protease activation in the pancreatic exudate during the first hour after reperfusion. The local protease protection barrier was, however, not broken and no plasma changes indicating pancreatitis were seen during this period. On the first and second postoperative days, mild biochemical signs of pancreatitis were seen in the plasma, including a decrease in kininogen and C3 concentration as well as in plasma kallikrein inhibitory activity and the appearance of trypsin-protease inhibitor complexes. No correlation was seen between these biochemical signs of pancreatitis and graft appearance or function, indicating that the reperfusion pancreatitis seen after 6 hr of cold storage is of minor significance. No significant differences were seen between the two preservation media used (Perfadex and EuroCollins solution).

Animals↗

[Study of functional activity of components and factors of the human complement system].

Development suitable for clinical researches of hemolytic methods of determination of functional activity of the first components of a complement has allowed to show diagnostic value of testing activity of complement components in comparison with their contents as antigens. It has predetermined necessity for building modern ELISA tests-systems for quantitative determination of functional activity of complement components. Such methods built for the first time allow to determine activity of components C1q, C2, C3, C4 (and a ratio of isotypes C4A and C4B), C1-inhibitor, factors B and D. Addition of these tests-systems ELISA systems for quantitative determination of components, and in case of C1-inhibitor of presence IgG, IgA and IgM autoantibodies against C1-inhibitor frames opportunities of an evaluation complement status of the patient, hereditary predisposition to such diseases as a stomach ulcer, the glaucoma, a clamidiosis, bacteroidosis, allows to carry out differential diagnostics of angioedema. Inhibition of covalent linkage C4b or C3b various endogenic and exogenous effectors during formation C3- and C5-convertases allows to understand processes of a regulation of a homeostasis, and also the mechanism of action of drugs.

Autoantibodies↗

[Preparation and clinical assays of Cl esterase inhibitors].

Seven preparation of Cl-estrase inhibitor (Clinh) were prepared from the serum form which factor IX had been absorbed previously. Despite always the same technique and conditions of isolation the degree of Clinh recovery differed, being sometimes fairly low, and ranging from 24% to 56% in relation to the initial plasma. The preparations contained cartain amounts of other proteins from the groups of alpha- and beta-globulins, particularly coeruloplasmin and components of complement C3, C4 and C9. The concentration of these components was low in relation to the concentration of the inhibitor. Some preparations contained also low amount of albumins. The preparation (about 20 thousand Clinh units) was transfused to a patient with congenital deficiency of Cl-esterase inhibitor at the time free of symptoms. The investigation of the blood obtained 30 minutes after transfusion showed complete inhibition of C-L-esterase. Administration of the preparation to the patient at the time of acute oedema caused in 5 episodes rapid regression of oedema or inhibition of its increase, in two cases no evident positive effect was obtained.

Acute Disease↗

Distal recognition site for classical pathway convertase located in the C345C/netrin module of complement component C5.

Previous studies focused on indels in the complement C345 protein family identified a number of potential protein-protein interaction sites in components C3 and C5. Here, one of these sites in C5, near the alpha-chain C terminus, was examined by alanine-scanning mutagenesis at 16 of the 18 non-alanine residues in the sequence KEALQIKYNFSF RYIYPLD. Alanine substitutions affected activities in the highly variable manner characteristic of binding sites. Substitutions at the lysine or either phenylalanine residue in the central KYNFSF sequence had the greatest effects, yielding mutants with <20% of the normal activity. These three mutants were also resistant to the classical pathway (CP) C5 convertase, with sensitivities roughly proportional to their hemolytic activities, but had normal susceptibilities to the cobra venom factor (CVF)-dependent convertase. Synthetic peptide MGKEALQIKYNFS-NH2 was found similarly to inhibit CP but not CVF convertase activation, and the effects of alanine substitutions in this peptide largely reflected those of the equivalent mutations in C5. These results indicate that residues KYNFSF form a novel, distal binding site for the CP, but not CVF convertase. This site lies approximately 880 residues downstream of the convertase cleavage site within a module that has been independently named C345C and NTR; this module is found in diverse proteins including netrins and tissue inhibitors of metalloproteinases.

Alanine↗

Protease inhibitors in rheumatoid synovial fluid. Analyses of electrophoretic homogeneity and protease inhibitory capacity.

Paired plasma and synovial fluids from 17 patients with seropositive rheumatoid arthritis were examined for electrophoretic homogeneity/heterogeneity and enzymic inhibitory capacity of the protease inhibitors. The high degree of saturation (approximately 90%) of the polyvalent protease inhibitor alpha 2-macroglobulin in the rheumatoid synovial fluid contrasts sharply with the low saturation of alpha 1-anti-trypsin. The inhibitory reactivity of the non-complexed fraction of both of these dominating antiproteases was retained (approximately 85-90%). Thus, a selective inactivation of synovial alpha 1-antitrypsin could not be demonstrated. alpha 1-Anti-chymotrypsin revealed electrophoretic homogeneity in all synovial fluids. Electrophoretic heterogeneity of the plasmin inhibitor antiplasmin was detected in the majority of synovial fluids indicating plasmin activation. The existence of a protease-antiprotease imbalance in the rheumatoid joint was indicated by the high degree of saturation of alpha 2-macroglobulin and a cleavage of C3 in rheumatoid synovial fluids.

Arthritis, Rheumatoid↗

The survival of pig to rabbit renal xenografts during inhibition of thromboxane synthesis.

Five rabbits treated with the thromboxane synthetase inhibitor Dazoxiben and five control rabbits received pig renal xenografts. Plasma albumin, complement factor C3, TXB2, 6-keto-PGF1 alpha, and serum TXB2 and 6-keto-PGF1 alpha were determined before and 1/2 hour after transplantation. The xenograft survival was significantly decreased in the Dazoxiben treated animals compared to the placebo treated animals determined as time to total cyanosis of the graft, total urine production, and time to stop of urine production. Lack of TXB2 production during blood coagulation confirmed inhibition of platelet thromboxane synthesis. The other determined variables showed no significant differences between the treated and the placebo animals.

6-Ketoprostaglandin F1 alpha↗

Plasma exchange and immunosuppressive therapy in a paediatric patient with systemic lupus erythematosus.

A case is reported of systemic lupus erythematosus (SLE) associated with steroid-resistant nephrotic syndrome. Serial plasma exchanges (PE) combined with prednisolone treatment induced complete normalization of the immunological findings: the anti-DNA antibody, antinuclear antibody, LE cell phenomenon and circulatory immune complexes became negative. The prostacyclin (PGI2) production-supporting activity in the plasma increased to the control range; inhibitors of PGI2 production were eliminated. The creatinine clearance normalized, the urinary protein excretion decreased significantly, and the facial erythema disappeared. Continued treatment with chlorambucil + low-dose prednisolone led to a complete and stable remission of the nephrotic syndrome, and the C3 complement normalized. The low level of PGI2 production-supporting activity in the plasma may be explained by the inhibitor of PGI2 production. PE + immunosuppressive therapy might have beneficial effects on the immunological changes and PGI2 metabolism, and also on the remission of SLE-nephrotic syndrome.

Autoantibodies↗

Acquired angioedema and Helicobacter pylori infection in a child.

UNLABELLED: We describe a 10-year-old boy with acquired Helicobacter pylori infection and simultaneous angioedema which is a rare but life-threatening condition. Our patient was hospitalised with generalised angioedema and severe circulatory shock due to extreme loss of fluids and proteins into interstitial tissues (weight gain 10 kg within 2 days, extreme haemoconcentration--haemoglobin 206 g/l, haematocrit 0.570, leucocytosis 18,300 /microl, high lactate 13.8 mmol/l) and simultaneous failure of the complement system (C3 <0.16 g/l, C4 <0.13 g/l, CH50 45 U/ml, i.e. 50% of normal value, C1 inhibitor 0.21 g/l at the lower limit). All possible known causes of angioedema were excluded (infection, allergy, auto-immune disease, NSAIDs, lymphoproliferative disease) except for the simultaneous H. pylori infection which was proven serologically and histologically. Eradication therapy led to a complete remission of the H. pylori infection. An absence of angioedema and the restoration of the complement system was later observed. To the best of our knowledge, no similar case report of a child has yet been published. CONCLUSION: Helicobacter pylori infection should be considered in the development of angioedema in childhood.

Angioedema↗

Strategies developed by bacteria and virus for protection from the human complement system.

The complement system is an important part of innate immunity providing immediate protection against pathogens without a need for previous exposure. Its importance is clearly shown by the fact that patients lacking complement components suffer from fulminant and recurring infections. Complement is an explosive cascade, and in order to control it there are inhibitors present on every human cell and also circulating in blood. However, many infectious agents have developed strategies to prevent clearance and destruction by complement. Some pathogens simply hijack the host's complement inhibitors, while others are able to produce their own homologues of human inhibitors. Knowledge of these mechanisms on a molecular level may aid development of vaccines and novel therapeutic strategies that would be more specific than the use of antibiotics that, apart from causing resistance problems, also affect the normal flora, the outcome of which could be devastating. In this study the structural requirements and functional consequences of interactions between the major soluble inhibitor of complement C4b-binding protein and Neisseria gonorrhoeae, Bordetella pertussis, Streptococcus pyogenes, Escherichia coli K1, Moraxella catarrhalis and Candida albicans are described. Furthermore, a novel inhibitor produced by Kaposi's sarcoma-associated herpesvirus is identified and characterized in detail: KCP. It is shown that KCP inhibits classical C3-convertase and presents activated complement factors C4b and C3b for destruction by a serine proteinase, factor I. Using molecular modelling and site-directed mutagenesis, it was possible to localize sites on the surface of KCP required for complement inhibition and it is concluded that KCP uses molecular mechanisms identical to human inhibitors.

Awards and Prizes↗

Concomitant presence of tumor-specific cytotoxic and inhibitor lymphocytes in patients with osteogenic sarcoma.

The lack of detectable tumor-specific cytotoxicity by the peripheral blood lymphocytes of patients with cancer may be due to a lack of cytotoxic lymphocytes or the presence of suppressor lymphocytes that inhibit cytotoxic cells. Unfractionated peripheral blood lymphocytes from 12 of 28 patients with osteogenic sarcoma were cytotoxic to osteogenic sarcoma cells in vitro (P less than 0,001). When the peripheral blood lymphocytes from patients whose lymphocytes were not cytotoxic underwent fractionation, a tumor-specific cytotoxic subpopulation was isolated from 11 of 13 patients (P less than 0.0001). Lymphocytes that inhibited cytotoxic activity of autologous tumor-specific cytotoxic lymphocytes were found in four of 10 patients with osteogenic sarcoma but not in six normal controls. Inhibitor lymphocytes form rosettes with sheep erythrocytes and adhere to nylon, whereas cytotoxic lymphocytes have a receptor for C3 but no surface immunoglobulin. The lack of tumor-specific lymphocytotoxicity in some patients can be due to inhibitor lymphocytes.

Cell Fractionation↗

Failure of Bacteroides gingivalis W83 to accumulate bound C3 following opsonization with serum.

Our previous studies have demonstrated that strains of Bacteroides gingivalis are capable of proteolytic degradation and inactivation of complement proteins including the third component of complement C3. Since a crucial step in the ability of complement to control bacterial infections is the binding of C3 fragments to the bacterial surface with subsequent enhancement of phagocytosis, further examination of the importance of the proteolytic capacity of Bacteroides in interactions with complement proteins was carried out by quantitating the amount of C3 bound to two proteolytic Bacteroides gingivalis strains. Pooled normal human serum (NHS) containing 125I-C3 was incubated with strains of B. gingivalis (W83 and ATCC 33277) and the non-proteolytic pathogen A. actinomycetemcomitans strain Y4, and samples of the reaction mixtures were removed at various time intervals for determination of bound C3. B. gingivalis 33277 bound only half the number of C3 molecules as did A. actinomycetemcomitans, while B. gingivalis W83 bound very little C3. A large increase in the number of C3 molecules bound to B. gingivalis W83 was noted in assays carried out in the presence of the protease inhibitor TLCK, indicating that bacterial proteases may be responsible for the lack of binding of C3 to strain W83. TLCK treatment modestly increased the accumulation of C3 on strain 33277, but had no effect on A. actinomycetemcomitans. Analysis of 125I-C3 in supernatants from reaction mixtures of strain 33277, W83, or a proteolytic strain of B. intermedius demonstrated no qualitative differences in the C3 fragments amongst the tested strains or in the presence or absence of TLCK.(ABSTRACT TRUNCATED AT 250 WORDS)

Actinobacillus↗

Effect of some hydroxycoumarins on complement-mediated hemolysis in human serum.

Coumarin derivatives are known to possess antiinflammatory and antimetastatic properties due to their direct action on cells, predominantly on macrophages. In the present study the interactions between esculin, esculetin, fraxin, fraxetin, as well as their acetylated and methylated derivatives and non-cell system participating in inflammatory processes, comprised of serum complement proteins, were investigated in vitro. 7-Methylesculin, esculin 5Ac and esculetin 2Ac exhibited good inhibition on classical pathway (CP) activity and scoparone strongly reduced alternative pathway (AP) activity in normal human serum (NHS). Some of the hydroxycoumarins were able to enhance hemolysis. Seven derivatives were tested in C1 and C3 functional assays, as 7-methylesculin appeared to be the strongest inhibitor of both activities. Esculin (En) and scopoletin (St) altered the effect of other complement activators (heat aggregated IgG, suramin, and zymosan) when applied with them simultaneously in vitro.

Buffers↗

CR2 units of CR2 complexes are possibly associated with nucleophilic agents through reactive covalent links.

The human complement receptor type 2 (CR2/CD21), a transmembrane glycoprotein, associates with a variety of surface antigens and proteins in the cell membrane. We examined the possibilities that the CR2 units of CR2 complexes are associated through internal covalent links reactive with nucleophilic agents, e.g. H(2)O or methylamine, and that CR2-positive cells process anti-CR2 monoclonal antibodies (MoAbs). Data from immunoblotting and cytofluorimetry with CR2-binding site-specific MoAbs show that: (i) CR2-positive Raji cells release soluble CR2 isoforms into the medium when incubated in phosphate buffered saline; (ii) despite affecting the detection of one soluble CR2 isoform, methylamine treatment of soluble CR2 allows the detection of another of its isoforms; (iii) limited pre-treatment of cells with methylamine reveals a more heterogeneous CR2-positive cell population or enhances the detection of CR2; (iv) cell treatment with CR2-binding site-specific MoAbs enhances the detection of CR2 isoform(s). The data suggest that CR2 is shed mainly as a soluble CR2 complex, in which the CR2 units link covalently and react with nucleophilic agents. Raji cells may process bound fragments (145 kDa) that are recognised by and become bound by anti-CR2 MoAb.

Antibodies, Monoclonal↗