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M G Colomb

Publications and source records attributed to M G Colomb.

At least 37 records · Page 2Linked to original sources

[Antiphospholipid and anti beta 2-glycoprotein I antibodies].

Recent studies have shown that beta 2glycoprotein I (beta 2GPI), a plasma inhibitor of coagulation with affinity for anionic phospholipids, is frequently required for the formation of the epitopes recognized by some anti-phospholipid antibodies. Six murine monoclonal antibodies directed against human beta 2GPI were compared with anti-beta 2GPI antibodies associated with systemic lupus erythematosus and primary anti-phospholipid syndrome. The beta 2GPI-dependent binding properties to neutral and anionic phospholipids were studied, as well as the target epitopes on the beta 2GPI molecule and the effect of various beta 2GPI treatments to get rid of contaminating phospholipids or to block the beta 2GPI-phospholipid interaction. The results are in favour of a direct binding of patient's antibodies to beta 2GPI, in the absence of phospholipids. Anti-beta 2GPI monoclonal antibodies, two of which inhibited beta 2GPI recognition by the antibodies from patients, possessed lupus-like anticoagulant properties, thereby constituting an interesting model for a subset (beta 2GPI-dependent) of anti-phospholipid antibodies.

Antibodies, Antiphospholipid↗

Platelet activating properties of murine monoclonal antibodies to beta 2-glycoprotein I.

Previously developed murine monoclonal antibodies (MAbs) to human beta 2-glycoprotein I (beta 2 GPI), a plasma protein required for the binding of anti-phospholipid antibodies, were studied for anti-platelet reactivity and influence on platelet function. The six MAbs (IgG1 isotype) tested interacted with both intact and fixed platelets in a beta 2 GPI-dependent manner. Carbamylated beta 2 GPI was still recognized by MAbs but was unable to mediate platelet-antibody binding. MAbs induced aggregation and secretion responses of platelets in platelet-rich plasma (PRP) and whole blood, provided subthreshold concentrations of weak agonists (i.e. ADP or adrenaline) were added. When aggregation in PRP was evaluated by a counting technique instead of turbidometrically, the sole addition of MAbs led to a rapid fall in single platelets. Triggering gel-filtered platelets with MAbs together with beta 2 GPI, but not its carbamylated form, led to platelet activation after a lag time, as monitored by aggregometry, measurements of ATP and beta-thromboglobulin secretion and calcium mobilization. F(ab')2 fragments of one of the MAbs failed to activate platelets but inhibited the responses to the whole antibody. This process thus depends on MAbs binding to platelets through both Fab and Fc domains, as confirmed by the suppression of platelet responses upon pretreatment with the anti-Fc gamma RII MAb IV.3. Aggregation and secretion induced by MAbs plus beta 2 GPI did not require exogenous fibrinogen and were variably inhibited in the presence of acetyl salicylic acid, apyrase or Ca2+, depending on the concentrations used for the two proteins.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenosine Diphosphate↗

Disulfide linkage between C3b and tetanus toxin on tetanus toxin-specific EBV-transformed B cells.

EBV-transformed B cells specific for tetanus toxin were found to bind C3b in excess over the expected figures based on the number of complement receptors CR1. This was confirmed by analysis of cell extracts by SDS-PAGE giving evidence for C3b-membrane protein complexes that were disrupted upon reduction. Alkylation of C3b-free cysteine abolished formation of these complexes and only a noncovalent binding of C3b to CR1 was observed, which could be inhibited by mAb to CR1. When C3b was incubated with the same cells coated with tetanus toxin bound to their specific membrane Ig, preferential formation of disulfide-bonded complexes between tetanus toxin and C3b was observed. These observations correspond to a novel capacity of C3b to interact covalently through its cysteine 1010 with free SH groups of protein acceptors. One hypothesis is that the disulfide bond formation is catalyzed by a thioredoxin-like protein secreted and expressed on the membrane of EBV-transformed B cells. In the context of Ag processing and presentation by B cells, disulfide binding of chaperone C3b to Ag is likely to persist during transcytosis and to play a significant role in the modulation of the processing.

B-Lymphocytes↗

Associated complement C3b. Towards an understanding of its intracellular modifications.

Covalent Superose microspheres-bound C3b was used as a model system to simplify the analysis of antigen-bound C3b modifications during antigen processing. The model was set up using purified C3 and Superose-bound trypsin. C3b was covalently bound to Superose through an ester link, as indicated by lability to hydroxylamine treatment at alkaline pH. C3b-Superose was incubated with L subcellular fraction, enriched in endosomes/lysosomes, purified from U937 cell line. Two types of limited activities on the C3b-Superose model system were detected: (i) a proteolytic activity cleaving C3b into mainly a C3c-like fragment which was released and a C3d-like fragment of apparent M(r) 32 kDa which remained bound to Superose through the original ester link; (ii) an esterolytic activity cleaving the ester bond and releasing C3b. Inhibition experiments pointed to the involvement of serine, aspartyl and cysteine proteases. Cathepsin B appeared most probably as one of the major proteases of L fraction catalysing the proteolysis of the C3b-bound. Kinetic studies were in favour of a good stability on the ester bond, supporting an effective role of C3b as a chaperone during the extracellular and intracellular travel of C3b-bound antigen.

Cathepsin B↗

Involvement of the Zn-binding region of tetanus toxin in B and T recognition. Influence of Zn fixation.

Tetanus toxin contains a metal-binding site for zinc, located in its light chain. The sequence accounting for Zn fixation is part of a predicted amphipathic helical secondary structure and corresponds to a putative T cell epitope according to Rothbard and Taylor (EMBO J. 7, 93-100, 1988). In this paper, we analyse the antigenic properties of two synthetic peptides (233-248 = P12 and 225-243 = P13) containing the Zn binding sequence. Our results show that peptide P13 contains a B and T epitope. The B epitope seems to be immuno-dominant whether the T epitope is at least DR2 restricted. Zn binding on P13 leads to a decrease in its recognition by both antibodies and T lymphocytes.

Amino Acid Sequence↗

Major involvement of cathepsin B in the intracellular proteolytic processing of exogenous IgGs in U937 cells.

Monoclonal antibodies used for diagnostic and therapeutic purposes behave as antigens when injected into patients. They are recognized by T cells in a processed form and in a major histocompatibility complex class II restricted fashion. Monoclonal murine IgG2a were used as a model to analyse the early phase of antigen processing in U937 cells. IgG2a prebound to cell surface Fc receptors were rapidly internalized in the cells. During internalization, they were proteolysed with a time-dependent intracellular accumulation of 26, 25, 24, 22 and 14 kDa fragments. Comparison of in vitro IgG2a proteolysis by U937 subcellular fractions or by purified cathepsin B and their intracellular processing indicated that a major cathepsin B like protease is responsible for IgG2a intracellular processing in endo-lysosomal compartments of U937 cells.

Cathepsin B↗

Activation of the human complement alternative pathway by Listeria monocytogenes: evidence for direct binding and proteolysis of the C3 component on bacteria.

The capacity of the intracellular pathogen Listeria monocytogenes to activate the alternative pathway of human complement was examined. Incubation of L. monocytogenes with human serum in optimal conditions (20% Mg2+EGTA [ethylene glycol-bis(beta-aminoethyl ether)-N,N,N',N'-tetraacetic acid]-chelated serum) consumed (31.3 +/- 3.9)% of C3 hemolytic activity and led to similar amounts of C3 deposition among the 27 strains tested, except for a rough mutant and the penicillin-induced L forms of strain EGD, which bound reduced amounts of C3. The same results were obtained with strains belonging to related species (L. innocua, L. seeligeri, L. welshimeri, and L. ivanovii). Direct evidence is provided that L. monocytogenes induces the deposition of C3b and its cleavage products iC3b and C3d through ester and amide linkages, as demonstrated by the analysis of the released products of radiolabelled purified C3 after treatment with hydroxylamine. Our results clearly demonstrate that L. monocytogenes activates the alternative pathway of human complement, suggesting that bacteria in the blood or in tissues of infected patients are opsonized and targeted to C3 receptor-bearing cells such as macrophages.

Cell Membrane↗

Identification and partial characterization of a low affinity metal-binding site in the light chain of tetanus toxin.

Tetanus toxin was shown to contain a metal-binding site for zinc and copper. Equilibrium dialysis binding experiments using 65Zn indicated an association constant of 9-15 microM, with one zinc-binding site/toxin molecule. The zinc-binding site was localized to the toxin light chain as determined by binding of 65Zn to the light chain but not to the heavy chain after separation by sodium dodecyl sulfate-polyacrylamide gel electrophoresis and transfer to Immobilon membranes. Copper was an efficient inhibitor of 65Zn binding to tetanus toxin and caused two peptide bond cleavages in the toxin light chain in the presence of ascorbate. These metal-catalyzed oxidative cleavages were inhibited by the presence of zinc. Partial characterization of metal-catalyzed oxidative modifications of a peptide based on a putative metal-binding site (HELIH) in the toxin light chain was used to map the metal-binding site in the protein.

Amino Acid Sequence↗

Lupus-like anticoagulant properties of murine monoclonal antibodies to beta 2-glycoprotein I.

The lipid-binding inhibitor of coagulation, beta 2-glycoprotein I (beta 2GPI), has been shown to form the antigen to which some autoantibodies against anionic phospholipids (aPL) are directed. Six murine monoclonal antibodies (MAbs) of the IgG1 isotype were raised against human beta 2GPI and could be subdivided into three groups on the basis of mutual competition experiments. MAbs 9G1 and 8C3 (group A) markedly inhibited the binding of immunoglobulins from aPL-positive sera to beta 2GPI-coated wells. Using a lipid-based solid-phase radioimmunoassay, the MAbs interacted with both anionic phospholipids and phosphatidylethanolamine, but not phosphatidylcholine, in a beta 2GPI-dependent manner. A cross-reaction between beta 2GPI from several (including bovine) species was seen with one of the MAbs (9G1). All six MAbs induced dose-dependent prolongation of the DAPTT, DRVVT, KCT and TTI clotting times of human plasma, whereas 9G1 was the sole antibody to be inhibitory with plasma from bovine origin. Synergistic inhibitory effects were observed with MAbs used in pairs provided that they did not compete with each other for beta 2GPI binding. The anticoagulant activity of the MAbs was fully neutralized by the addition of freeze-thawed platelets. The MAbs described here resemble lupus anticoagulants in several respects which makes them valuable to study the involvement of beta 2GPI in the autoimmune thrombotic pathophysiology.

Animals↗

Measurement of anti-phospholipid antibodies by ELISA using beta 2-glycoprotein I as an antigen.

The requirement of plasma cofactor beta 2-glycoprotein I for binding autoantibodies against anionic phospholipids has been reported. We describe the development of an enzyme-linked immunosorbent assay (ELISA) for anti-phospholipid antibodies using highly purified beta 2-glycoprotein I for coating microtitre plates. Intra- and interassay coefficients of variation, determined with serum pools of low, medium and high positivity, ranged between 3% and 18%. 54 sera from patients with systemic lupus erythematosus and related autoimmune disorders were analyzed by this assay; the results correlated well to those obtained in an ELISA using anionic phospholipids on the solid phase (r = 0.85, P less than 0.001). The two ELISA systems showed similar sensitivities although 8/31 positive sera scored negative in the beta 2-glycoprotein I ELISA. The latter group of eight sera showed significantly higher anti-phosphatidylcholine/anti-phosphatidylserine binding ratios than the group of 23 sera which scored positive in both assays. This new assay should permit accurate measurement of most of the clinically relevant anti-phospholipid antibodies and avoid inconsistencies likely to arise from secondary interactions that characterize lipid-based ELISA.

Amino Acid Sequence↗

Proteolysis of C3 on U937 cell plasma membranes. Purification of cathepsin G.

Covalent binding of C3 fragments to U937 cell membranes involved a cell surface-associated proteolytic activity. Two proteases able to cleave C3 were purified from U937 plasma membranes. Purification involved solubilization of the membranes and ion exchange chromatography. One of the purified proteases was identified as elastase, based upon a substrate specificity for benzyloxycarbonylalanine-o-nitrophenyl ester and complete inhibition by elastatinal and methoxysuccinyl-alanyl-alanyl-prolyl-valyl-chloromethyl-ketone. The other protease (m.w. 28,000) is cathepsin G, as deduced from the amino acid composition, the amino-terminal sequence, and the substrate specificity for succinyl-alanyl-alanyl-phenylalanine-p-nitroanilide. These two lysosomal proteases are present on the U937 cell surface, as confirmed by immunofluorescence analysis. Plasma membrane elastase and cathepsin G from U937 cells cleave C3 into C3a- and C3b-like fragments; further incubation leads to C3c- and C3dg-like fragments, as judged from SDS-PAGE analysis of the digests. Sequencing of the C3b-like fragment purified by reverse phase chromatography indicates that initial cleavage of C3 by purified cathepsin G occurs at two positions in the amino-terminal part of the alpha-chain, at a Arg-Ser bond located between residues 748 and 749 and at a Leu-Asp bond between residues 751 and 752. These proteases are, thus, able to generate, on the U937 surface, active fragments of C3, which are likely to be involved in cell-protein and cell-cell interactions.

Amino Acid Sequence↗

Proteolytic fragmentation of tetanus toxin by subcellular fractions of JY, a B lymphoblastoid cell line.

Proteolysis of 125I-labelled tetanus toxin by subcellular fractions from an Epstein-Barr-virus-transformed B lymphoblastoid cell line, JY, was investigated. Fractions enriched in lysosomes and plasma membranes cleaved the toxin molecule at several sites, with a pH optimum of 5.5. N-Terminal sequence analysis of Mr-81,000, -45,000 and -35,000 proteolytic fragments indicated cleavage of the Asp-460-Leu-461, Asp-872-Glu-873 and Ile-1013-Thr-1014 peptide bonds, all sites located within the heavy chain of the toxin molecule. Additional sites near the C-terminus of the heavy chain, giving rise to low-Mr peptides, were implicated. The toxin light chain was more resistant to proteolysis. A similar pattern of fragmentation was observed with tetanus toxin biosynthetically radiolabelled with 14C-labelled amino acids, showing that the proteolysis was not an artifact caused by iodination. The proteolytic activity was inhibited by the serine proteinase inhibitor di-isopropyl phosphorofluoridate, thiol-blocking proteinase inhibitors N-ethylmaleimide and iodoacetamide, and by EDTA. These results represent a preliminary characterization of the processing in vitro of tetanus toxin by an antigen-presenting cell line.

B-Lymphocytes↗

Covalent binding of non-proteolysed C3 to Jurkat T cells.

Purified C3 binds covalently to Jurkat T cells upon incubation at neutral pH. This binding does not appear to involve proteolysis of C3; it leads to high-molecular-weight associations, preferentially through ester linkages, which are disrupted upon incubation with hydroxylamine at alkaline pH. Part of the association also appears to involve disulfide links between C3 and Jurkat cells. Similarly, plasma membranes purified from these cells bind C3 with no evidence for proteolysis of C3. Binding of C3 appears to be "catalysed" by Jurkat cells, and is not due to the well-known spontaneous hydrolysis of C3. Binding of C3 involves hydrolysis of its thioester bond, as titratable--SH groups are available in soluble C3 after incubation of purified C3 with Jurkat plasma membranes; loss of C3 haemolytic activity confirms this finding. These observations give evidence for the binding of C3b-like C3 to Jurkat cells, conferring on these cells the potential to interact with other complement receptor-bearing cells such as B cells.

Antigens, Differentiation, B-Lymphocyte↗

Formation of covalent C3b-tetanus toxin complexes: a tool for the in vitro study of antigen presentation.

A novel method is described for the formation and purification of covalent complexes between the complement component C3b and an antigen (tetanus toxin, TT), using purified proteins in fluid phase. C3b is generated in situ by tryptic cleavage of C3 after co-precipitation of C3 and TT in the presence of polyethylene glycol. Various parameters were analysed to optimize complex formation; under conditions which minimized the formation of covalent C3b multimers, 30% and 8% respectively of C3b and TT were incorporated into covalent one-to-one complexes which were purified using gel filtration chromatography. The linkage was localized between the alpha' chain of C3b and either the H or L chain of TT; it required the in situ formation of C3b and was partially destroyed by 1 M hydroxylamine. Spontaneous dissociation of the complex could be partly avoided by HgCl2, a thiol reagent which inhibits the esterase-like activity of bound C3b. These findings suggest the involvement of the reactive carbonyl of nascent C3b with hydroxyl groups of TT. Such C3b-TT complexes provide a defined tool to analyse the influence of antigen-bound C3b on antigen addressing and intracellular processing by antigen-presenting cells.

Animals↗

Autoimmune haemolytic anaemia due to anti-phospholipid antibodies.

The clinical course and laboratory findings of a patient with autoimmune haemolytic anaemia due to anti-phospholipid antibodies and secondary to a systemic lupus erythematosus-like syndrome are described. IgG and IgM with anti-phospholipid activity coexisted in both sera and acid eluates prepared from the patient's red cells, as demonstrated by ELISA using a panel of anionic and neutral phospholipids. The anti-erythrocyte binding activity of eluted autoantibodies, determined by a radioactive antiglobulin technique, was totally inhibited by absorption with phospholipid micelles. The patient's serum also contained an IgM warm haemolysin detectable with enzyme-treated cells only, as well as anti-C, -E and -S alloantibodies.

Anemia, Hemolytic, Autoimmune↗

Reactivity patterns of anti-phospholipid antibodies in systemic lupus erythematosus sera in relation to erythrocyte binding and complement activation.

We studied 51 sera from patients with systemic lupus erythematosus to determine the relationship of their anti-phospholipid activity to their anti-erythrocyte and complement activation properties. Forty-nine per cent of the sera had anti-phospholipid activity as demonstrated by ELISA using a panel of anionic phospholipids, and most of these also bound to neutral phospholipids, albeit to a lesser extent. A cellular radioimmunoassay was used for the detection of immunoglobulin and C3 binding to normal erythrocytes (intact, enzyme-treated or glutaraldehyde-fixed) following incubation with patient sera. The levels of IgG anti-phospholipid correlated with hypocomplementaemia and with immunoglobulin binding (paralleled by a deposition of C3 fragments) to the three types of erythrocytes, although most strongly to fixed cells. Immunoglobulin binding to intact erythrocytes correlated primarily with reactivity against neutral phospholipids. The specificity for phospholipid epitopes of immunoglobulin adsorbed onto erythrocytes was confirmed by acid elution followed by testing in ELISA. These data suggest that some anti-phospholipid antibody subsets may bind to erythrocytes in vivo, thus accounting for the observed association of these antibodies with positive direct antiglobulin tests.

Antibodies, Antinuclear↗

[Evaluation of the bactericidal effect of the membrane attack complex of serum complement].

The bactericidal activity of serum complement and particularly of the membrane attack complex (MAC-C5b-C9) was studied on E. coli C600 with a simple functional test. The test evaluates the in vitro kinetics of the bactericidal effect and the subsequent counting of surviving germs. Homozygous deficiency of a particular membrane attack complex protein was easily detected from a total loss of bactericidal activity. These results were confirmed on Neisseriae meningitidis A and C, but in this case a more complex protocol was required. Deficits of proteins of the membrane attack complex sequence of complement are often found in sera of patients suffering from recurrent Neisseriae infections. This simple test, adapted to family studies, appears, thus, as a valuable basis for a detection of relatives at risk.

Blood Bactericidal Activity↗

Secretion, cleavage and binding of complement component C3 by the human monocytic cell line U937.

Secretion of complement component C3 by U937 cells was studied. Preliminary evidence for a cell-associated proteolytic activity specific for C3 is given, as well as for a covalent-like binding of C3 fragments to the cell membranes. Secretion of C3, in the presence of 10 ng of phorbol 12-myristate 13-acetate/ml, is 120-140 ng/10(6) cells per 24 h on the third day after addition of the activator. As shown by SDS/polyacrylamide-gel electrophoresis, the intracellular pro-C3 (200 kDa) and the extracellular secreted C3 (alpha-chain 110 kDa and beta-chain 75 kDa) are identical with the forms of C3 previously characterized from human serum. Incubation of U937 cells in the presence of exogenous radiolabelled C3 shows that membrane-bound proteinase(s), not related to the classical-pathway or the alternative-pathway C3 convertases, is (are) able to cleave C3; this cleavage leads to the binding of the resulting C3 fragments to the cell membrane through reaction of membrane acceptors with the carbonyl group of C3 revealed after disruption of the intramolecular thioester bond. The proteolysis appears to be fairly specific to C3, as C4, which also possesses an intramolecular thioester bond, is not cleaved and does not bind to the cells. p-Nitrophenyl p'-guanidinobenzoate (1 mM) and di-isopropyl phosphorofluoridate (2 mM) are potent inhibitors of the proteolysis, whereas soya-bean trypsin inhibitor (1 mM), leupeptin (0.1 mg/ml) and 1,10-phenanthroline (1 mM) were ineffective. Immunological characterization of the cell-bound C3 fragments with monoclonal antibodies shows an evolution of the proteolysis of the fragments from iC3b to C3dg epitopes. Extraction of membrane-bound fragments by detergent, followed by SDS/polyacrylamide-gel electrophoresis, shows two fragments, of 43 kDa and 46 kDa, with C3dg-like characteristics.

Cell Line↗