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The molecular basis of the low hemolytic activity of C4 molecules from low-C4 mice with IgM-coated erythrocytes.

This study investigated the origin of the different hemolytic activity of two allotypes of murine C4, C4H (C4-high) and C4L (C4-low) in the presence of IgM-coated erythrocytes. C4H displayed a threefold higher hemolytic titer (expressed in hemolytic units/microgram protein) than C4L. No difference was found between c4H and C4L either in stability at 37 degrees C at different pH values and in the rate of C4H and C4L hydrolysis by activated Cl. The major functional difference was found in the covalent binding capacity to IgM-coated erythrocytes, with the amount of C4H bound being about threefold higher than that of C4L. A marked difference in the reactivity of the C4b fragment of C4H and C4L toward amino and hydroxyl groups was detected. Using glycine and glucose to competitively inhibit the binding of C4H and C4L, it was observed that C4L selects preferentially for the amino groups of glycine, whereas C4H reacted preferentially with the hydroxyl groups of glucose. Furthermore, the chemical modification of the red cells amino groups by ethylacetimidate, had no appreciable effect on the binding of C4H, but reduced that of C4L. Southern blot hybridization experiments using Hind III-digested liver DNA and a cDNA probe derived from the 5' end of the mRNA (clone pAT-A) indicated that the C4H allele was associated with a 5-kb Hind III fragment, whereas the C4L allele was associated with a 15-kb Hind III fragment. The possibility that a structural difference between C4H and C4L is responsible for their different reactivities is discussed.

Alleles↗

Selective inhibition of immune complex trapping by follicular dendritic cells with monoclonal antibodies against rat C3.

The role of complement component C3 in the trapping of immune complexes by follicular dendritic cells (FDC) was studied in the rat, by means of the C3-specific monoclonal antibody ED11. Immunocytochemistry revealed the presence of C3 on FDC, where it co-localized with trapped peroxidase anti-peroxidase complexes. Furthermore, C3 was detected on reticular cells occupying the T cell areas of peripheral lymphoid organs, which are not involved in the handling of immune complexes. The in vivo administration of anti-C3 abolished the trapping of immune complexes in splenic follicles, but was unable to release preexisting complexes from the FDC. Trapping of immune complexes was also prevented by treatment of rats with cobra venom factor (CoVF). While CoVF caused massive depletion of C3 from serum, ED11 treatment had no such effect. The effect of anti-C3 appeared at least in part to be due to an inhibition of complement activation by immune complexes. We also analyzed earlier stages of the trapping process, with respect to their C3 dependence. Upon systemic injection immune complexes are initially observed in the marginal zone. Administration of anti-C3 reduced this localization, indicating a role for C3 in the entry of immune complexes into the spleen. Our results confirm experiments in CoVF-treated animals and extend the evidence for a role of C3 in the follicular trapping process using anti-C3 in vivo. The mechanism of immune complex trapping and the role of complement therein is discussed.

Animals↗

Protein adsorption from human plasma is reduced on phospholipid polymers.

Protein adsorption from human plasma was investigated on phospholipid polymers, poly (2-methacryloyloxyethyl phosphorylcholine (MPC)-co-n-butyl methacrylate (BMA) or glass by radioimmunoassay and immunogold labeling techniques. In the present studies the focus was to determine the composition and distribution of proteins at the surface of these materials after contact with human blood plasma. On all materials, protein adsorption was detected and included identification of albumin, IgG, fibrinogen, fibronectin, Hageman factor (factor XII), factor VIII/von Willebrand factor, high-molecular-weight kininogen (HMWK) and the complement protein C5. The amount of protein adsorbed decreased with an increase in the MPC composition and appeared to adsorb to the surfaces in a uniform and evenly distributed manner. Therefore, we suggest that MPC moieties play an important role in suppression of protein adsorption. From these findings, it is concluded that the reduction of protein adsorption at the blood contacting surface of phospholipid polymers may result in the inhibition of thrombus formation.

Adsorption↗

The chemotactic response of granulocytes to the low molecular weight chemoattractants f-MLP, C5f, and LTB4 is dependent on chemokinetic factors.

The dependence of the low molecular weight chemoattractants (LMCs) formylmethionyl-leucylphenylalanine (f-MLP), C5f, and leukotriene B4 (LTB4) on albumin to express their chemotactic activity towards granulocytes (PMNs) was investigated in order to study the required qualities of albumin and if albumin could be replaced by any other proteins. The results demonstrated that the supporting effect of isolated albumin was dependent on the method of purification. Only isolated albumin exposed to ethanol precipitation during the purification procedure supported the chemotactic effect of LMCs. The albumin preparation that supported the effect of LMCs also mediated a chemokinetic effect on PMN migration. Albumin isolated by methods other than ethanol precipitation neither exerted a chemokinetic effect nor supported the chemotactic effect of LMCs. Heated, normal serum and isolated alpha 1-antitrypsin supported the chemotactic activity of LMCs and also mediated a chemokinetic effect on PMN migration. The present investigation suggests an important role for the chemokinetic factors, since it is indicated that their presence is necessary for the chemotactic response of PMNs to the low molecular weight chemoattractants C5f; LTB4, and f-MLP.

Albumins↗

New method for the measurement of eosinophil migration.

A new application of the Boyden chamber method for the measurement of eosinophil migration, without the need of eosinophil isolation, has been developed. A cell suspension containing a mixture of granulocytes, neutrophils to the greater part, was used. The eosinophils were identified by staining their granules with Chromotrope 2R. The method made it possible to study the migration of eosinophils from normal individuals without eosinophilia. Control experiments demonstrated that the chemotactic and chemokinetic response of eosinophils in the granulocyte mixture was in accordance with the response of isolated eosinophils from the same donor. Normal eosinophils demonstrated a significant chemotactic response to C5f, platelet-activating factor (PAF), leukotriene B4 (LTB4), and f-meth-leu-phe (f-MLP). Furthermore, PAF was demonstrated to be significantly more eosinophil chemotactic than neutrophil chemotactic.

Caseins↗

Inhibition of neutrophil and eosinophil chemotactic responses to PAF by the PAF-antagonists WEB-2086, L-652,731, and SRI-63441.

The influence of the three PAF-antagonists WEB-2086, L-652,731, and SRI-63441 on the chemotactic response of neutrophil and eosinophil granulocytes to PAF was investigated. When the PAF-antagonists were added to the cell suspension that was exposed to a gradient of PAF, WEB-2086 and SRI-63441 at the concentration of 10(-6) mol/litre inhibited (P less than .01) the neutrophil and eosinophil chemotactic response to 10(-8) and 10(-9) mol PAF per litre; at the concentration of 5 x 10(-6) mol/litre, WEB-2086 and SRI-63441 also inhibited (P less than .02) the response to 10(-7) mol PAF per litre. Under the same conditions L-652,731 at the concentration of 5 x 10(-6) mol/litre inhibited (P less than .01) the eosinophil chemotactic response to 10(-8) and 10(-9) mol PAF per litre. The inhibition of the chemotactic response to PAF by the three PAF-antagonists was specific, since the chemotactic response to C5f, f-MLP, and LTB4 was not affected by WEB-2086, L-652,731, or SRI-63441, neither was the chemokinetic migration induced by albumin.

Azepines↗

Human clusterin (CLI) maps to 8p21 in proximity to the lipoprotein lipase (LPL) gene.

Clusterin (gene symbol: CLI) is a post-translationally nicked, two-chain plasma and tissue glycoprotein of 80 kDa. It forms high-density lipoprotein complexes with apolipoprotein A-I in plasma, functions as an inhibitor of the cytolytic reaction of the terminal complement proteins C5 to C9, and is secreted by Sertoli cells in large amounts into the seminal fluid. By isolating and characterizing three partially overlapping cosmid clones, we have established the complete physical map of the clusterin gene which spans about 20 kb. The subchromosomal position of the clusterin gene (CLI) and the order of CLI and the lipoprotein lipase (LPL) gene were determined by fluorescence in situ hybridization. We show that CLI, previously assigned to chromosome 8, is located on 8p21 proximal to the LPL locus. Based on this localization we consider clusterin as a novel candidate gene determining susceptibility to atherosclerosis.

Arteriosclerosis↗

Ocular vasculitis in Behçet's disease. A pathological and immunohistochemical study.

The clinical and pathological presentation of Behçet's disease are discussed. Necrotising arteriolitis and phlebitis with thromboses are demonstrated when a rare enucleation specimen became available for examination in this condition. Immunohistochemical studies show mural IgG, IgA, and C3 deposits in episcleral and some choroidal veins. The value of the clinical use of fibrinolytic agents is discussed.

Adult↗

Phagocytosis of monocytes in cancer patients.

The phagocytic activity of monocytes directed at yeast particles was investigated in patients with untreated malignant tumors and in normal controls. Phagocytic activity was found to be significantly increased in the patients. It could be shown that the increased activity is caused by factors contained in the patient's plasma. These factors are only partly destroyed by heat inactivation, suggesting that both heat labile and heat stabile factors are contributing to the observed enhancing effect on phagocytic activity. The heat labile portion could well be the complement component C5, while the heat stabile portion is so far undefined.

Adult↗

On the lysis of paroxysmal nocturnal hemoglobinuria erythrocytes by complement: dual role of C3b.

The efficiency of cytolysis by the terminal complement proteins C5b-9 can be markedly enhanced by C3b molecules bound on the target cell membrane (Hammer et al. 1976). This enhancement was shown to be proportional to the number of C3b molecules on the cell membrane. The present experiments have shown that the hemolytic efficiency of the complement membrane attack system is two to five times greater on paroxysmal nocturnal hemoglobulinuria erythrocytes (PNHE) than on normal human E. This difference is attribute to a derivative of C3, probably C3b, on PNHE since it was abolished by anti-C3 but not by anti-C2. The efficiency of C5b-9 to lyse PNHE was only partially decreased by C3b inactivator and beta 1 H, indicating that the C3b on PNHE is not readily inactivated by its regulatory proteins. Furthermore, cells from a single severely affected patient consumed 3-fold more C5b6 than normal human E yet concommitantly measured membrane fluidity was normal. From these observations we conclude that cell-bound C3b on PNHE serves two functions: (a) it increases the hemolytic efficiency of membrane attack components of the complement system; and (b) it provides sites for assembly of the alternative pathway convertases.

Complement C3b↗