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Analysis of the different types of leukocyte membrane complement receptors and their interaction with the complement system.

The specificity, distribution, and structure of 8 different types of leukocytes membrane complement (C) receptors (CR1, CR2, CR3, and receptors for C1q, beta 1H, C3e, C3a, and C5a) are discussed. Recent data are reviewed on the synthesis of C components by macrophages and B lymphocytes, and how these components may function in the activation of these two cell type by the C system. Commonly used C receptor assay procedures are evaluated in terms of both specificity and sensitivity. Specific assay procedures are recommended for measuring CR1 (C4b-C3b receptor), CR2 (C3d receptor), CR3 (C3bi receptor), and the beta 1H receptor. Assays include both rosette and fluorescence procedures for detection of C receptors on either mouse or human leukocytes. Primary systems have been selected for optimal sensitivity and specificity, and where possible, acceptable alternative systems that are less sensitive or specific are suggested for laboratories lacking facilities for C purification.

Animals↗

Measurement of the ratio of the eighth and ninth components of human complement on complement-lysed membranes.

The mole ratio of the eighth (C8) and ninth (C9) components of human complement on membranes carrying the cytolytic C5b-9 complex was measured by direct binding assays. Erythrocytes from two different species were used as the membrane system. Antibody-treated sheep erythrocytes carrying a relatively small number of precursive membrane-bound C5b-7 complexes were prepared by exposure to human C8-depleted serum. These complexes were subsequently converted to C5b-8 by addition of saturating amounts of C8. Parallel binding assays using 125I-C8 were used to determine the exact amount bound and thus the number of C5b-8 complexes per cell. These cells were subsequently incubated with excess 125I-C9 and the amount bound relative to C8 on the membrane was measured. Results indicated the C8:C9 ratio remained constant at approximately 1:4 as the number of complexes varied from 40 to 310 per cell. Similar results were obtained regardless of whether C8 and C9 were added sequentially or simultaneously to cells bearing C5b-7. For comparison, experiments were also performed using membranes that contained a high number of complexes. Here, rabbit erythrocytes which carried approximately 25 000 C5b-7 per cell were incubated with limited amounts of C8 to form C5b-8 complexes on the membrane surface, the exact number of which was measured by 125I-C8 binding assays. When erythrocytes prepared in this manner were incubated with excess 125I-C9, the ratio of C8:C9 on the membrane was found to be essentially constant at approximately 1:3 as the number of these complexes varied from 50 to 4000 per cell.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Relationships between the haemolytic activities of the human complement system and complement components.

The relationships between the haemolytic activities of complement and its components were studied. The activities studied included CH50 (classical pathway), AP50 (alternative pathway), CV50 (early part of alternative pathway) and C(3--9)H50 ((the late part of both pathways). The components included C3, C4, C5, C9, B and D. There was a good correlation between CH50 and AP50. AP50 had a good correlation with B and CV50. There was no correlation between AP50 and C(3--9)H50, and none between C(3--9)H50 and C5 or C9. AP50 may primarily represent changes in the early part of the alternative pathway. C(3--9)H50 is not influenced by respective changes in the amounts of C5 or C9. Since cell lesion is now considered to be caused by a unit of C5b to C9, a change in each component of C5 to C9 may not influence haemolytic activity.

Adult↗

Human IgG subclass pattern of inducing complement-mediated cytolysis depends on antigen concentration and to a lesser extent on epitope patchiness, antibody affinity and complement concentration.

The relative complement-mediated lytic capability of the IgG subclass isotypes was studied using a matched set of mouse-human chimeric anti-(4-hydroxy-3-nitrophenyl)acetyl (NP) antibodies. The subclass pattern was shown to be highly dependent on variations in antigen concentration and to lesser extent on variation in epitope patchiness, antibody binding affinity and complement concentration. In general, the IgG3 subclass was most effective in inducing cytolysis at the different conditions used and only at high antigen concentration did the IgG1 subclass mediated more efficient cytolysis than IgG3. The IgG2 isotype required a relative high antigen concentration to be cytolytic while the IgG4 isotype was not cytolytic at any of the conditions tested. These individual characters of each of the IgG subclasses makes it conceivable that a subtle system of immunoregulation exists among the subclasses.

Antibody Affinity↗

Complementation analysis of fibroblasts from peroxisomal fatty acid oxidation deficient patients shows high frequency of bifunctional enzyme deficiency plus intragenic complementation: unequivocal evidence for differential defects in the same enzyme protein.

In the last few years many patients have been reported with a defect in peroxisomal fatty acid beta-oxidation of unknown origin. Using a combined approach based on direct activity measurements of straight-chain acyl-CoA oxidase and complementation analysis after somatic cell fusion of fibroblasts, we have now classified 13 patients into 4 distinct groups representing different gene defects. Remarkably, we found intragenic complementation in group 2 so that group 2 is in fact made up of 3 distinct subgroups. The underlying basis for this peculiar phenomenon probably has to do with the fact that bifunctional protein harbors two catalytic activities including enoyl-CoA hydratase and 3-hydroxyacyl-CoA dehydrogenase. In group 2A enoyl-CoA hydratase and 3-hydroxyacyl-CoA dehydrogenase are defective whereas in group 2B and 2C either the hydratase or 3-hydroxyacyl-CoA dehydrogenase component of the bifunctional protein is deficient.

3-Hydroxyacyl CoA Dehydrogenases↗

Nonsense mutation in exon 4 of human complement C9 gene is the major cause of Japanese complement C9 deficiency.

Deficiency of the ninth component of human complement (C9) is the most common complement deficiency in Japan but is rare in other countries. We studied the molecular basis of C9 deficiency in four Japanese C9-deficient patients who had suffered from meningococcal meningitis. Direct sequencing of amplified C9 cDNA and DNA revealed a nonsense substitution (CGA-->TGA) at codon 95 in exon 4 in the four C9-deficient individuals. An allele-specific polymerase chain reaction system designed to detect exclusively only one of the normal and mutant alleles indicated that all the four patients were homozygous for the mutation in exon 4 and that the parents of patient 2 were heterozygous. The common mutation at codon 95 in exon 4 might be responsible for most Japanese C9 deficiency.

Adolescent↗

The effect of limited fragmentation of porcine 19 S IgM on agglutination and complement fixation. Evidence that at least two intact subunits are required for complement fixation by IgM antibody.antigen complexes.

Limited fragmentation of pig IgM anti-Salmonella with pepsin gave a 12 S product which agglutinated Salmonella almost as efficiently as the original IgM but the complement fixing ability of the complexes was substantially lowered. The 12 S product was shown to consist of molecular entities having intact Fc regions with an average of 3 or 4 intact Fab arms still attached. Our results appeared to show that removal of Fab arms by pepsin was a random process and on this basis a mathematical model was set up. From this model it was possible to calculate the frequencies of molecular entities which would give rise to the observed average of 3 or 4 Fab arms. The most likely explanation of our results is that complexes need to be formed by molecules having at least two intact subunits before efficient complement fixation takes place.

Animals↗

Methylprednisolone inhibits granulocytopenia induced by infusion of complement-activated serum but not of complement-activated plasma in rabbits.

The effect of methylprednisolone was examined on complement-induced granulocytopenia in vivo following infusion of zymosan-activated autologous plasma or serum into rabbits. Methylprednisolone only inhibited granulocytopenia and thrombocytopenia when zymosan-activated serum or fibrinogen-depleted plasma were infused. It was ineffective at preventing granulocytopenia in animals infused with zymosan-activated plasma. Only zymosan-activated plasma contained fibrin monomers which could directly cause granulocytopenia independently of the generation of C5a. Hence, during complement activation in whole blood in vivo, little or no effect of methylprednisolone should be expected in preventing granulocytopenia.

Agranulocytosis↗

Treatment of cancer ascites by intraperitoneal administration of a streptococcal preparation OK-432 with fresh human complement--role of complement-derived chemotactic factor to neutrophils.

The role of complement in the polymorphonuclear leukocyte (PMN)-mediated tumor cell destruction in cancer ascites was investigated in relation to a streptococcal preparation OK-432, a so-called biological response modifier. Incubation of OK-432 with fresh human serum at 37 degrees C for 60 min resulted in the generation of C3a and C5a chemotactic factors. Intraperitoneal (i.p.) injection of the mixture to a patient with cancer ascites revealed an accumulation of PMNs in the ascitic fluid for a longer period with a rapid reduction of the ascitic fluid, than an intraperitoneal injection of OK-432 alone examined in the same patient. PMNs were found to invade clusters of the tumor cells and then form rosettes followed by the destruction of tumor cells. These findings induced by OK-432 continued over 10 days in the presence of fresh serum, while diminished within 3-4 days when OK-432 alone was injected. When fresh human plasma or fresh frozen plasma was used instead of serum and i.p. injected with OK-432 avoiding preincubation, the same cytological and clinical changes were observed in other patients. These data strongly indicate that OK-432 activates human complement either in vitro or in the peritoneal cavity, and induces PMNs to accumulate in the ascitic fluid. Although the mechanism of killing of tumor cells by PMNs is obscure, addition of human serum or plasma to i.p. use of OK-432 seems to be valuable for the management of patients with malignant ascites.

Ascites↗

Telomerase activity in hybrids between telomerase-negative and telomerase-positive immortal human cells is repressed in the different complementation groups but not in the same complementation group of immortality.

The expression of telomerase is essential for cells to be immortalized, and most immortal cell lines possessed telomerase activity. Using the cell fusion technique, it has been shown that mortal and telomerase-negative phenotypes of normal cells are dominant over immortal and telomerase-positive phenotypes, suggesting that the normal cells possessed dominant repressor-type activity for telomerase expression. Several telomerase-negative immortal human cell lines were reported, in which telomerase-independent mechanisms was supposed to maintain telomere length. We aimed at seeing whether the telomerase-negative phenotype of these immortal cells is dominant over telomerase-positive phenotype of other immortal cells in correlation with cellular mortality. Results showed that, when telomerase-positive and -negative immortal parental cell lines belonging to the different complementation groups were fused, telomerase-negative mortal hybrid clones arose, i.e. telomerase-negative phenotype was dominant as well as mortal phenotype. However, when immortal hybrid cells arose from telomerase-positive and -negative immortal parents belonging to either the same or different complementation groups, they were all telomerase-positive, i.e. telomerase-negative phenotype appeared to be recessive. Telomerase-negative immortal hybrid was never established from any combinations between telomerase-negative and -positive immortal parental cells.

Base Sequence↗

The ability of IgA to inhibit complement consumption by complement-fixing antigens and antigen-antibody complexes.

The polymeric and monomeric (7S) forms of the nitrophenyl-specific MOPC-315 murine IgA myeloma protein were examined for their capacity to inhibit the consumption of guinea-pig complement (C) by the C-activating protein DNP46BSA and by antigen-antibody (Ag-Ab) complexes. On a molar basis, 13S IgA was slightly (2-3 fold) more efficient than 7S IgA in inhibiting C consumption by DNP-BSA. When mixed with IgG antibodies prior to incubation with a non-complement-fixing antigen (TNP-KLH), 13S IgA was considerably more effective than 7S IgA in preventing the formation of Ag-Ab complexes able to fix C. The degree of inhibition observed was related to the concentration of C used in the assay, being greater at lower C concentrations.

Animals↗

Polymerization of the ninth component of complement (C9): formation of poly(C9) with a tubular ultrastructure resembling the membrane attack complex of complement.

The ninth component of complement (C9) has a marked propensity to polymerize. C9 polymers [poly(C9)] formed spontaneously in Veronal-buffered saline upon incubation of purified C9 for 64 hr at 37 degrees C or within 2 hr at 46--56 degrees C. Poly(C9) formed at 37 degrees C was visualized by electron microscopy as a tubular structure with an internal diameter of 110 A and a length of 160 A. Its ultrastructure suggested a dodecameric composition and resembled that of the membrane attack complex of complement. The wider end of the tubular structure was formed by an approximately 30-A-thick torus with inner and outer diameters of 110 A and 220 A, respectively. Because the dimensions of C9 within poly(C9) were 160 x 55 A (maximal) and 20 A (minimal) and because monomeric C9 has dimensions of approximately 80 x 55 A, it is proposed that monomeric C9 unfolds during polymerization into tubules. Polymerization also occurred upon treatment of C9 for 1 hr at 37 degrees C with 0.6 M guanidine . HCl, 0.1 M octyl glucoside, or 1.5% sodium deoxycholate. Guanidine . HCl-induced C9 polymers consisted of elongated highly curved strands 55--80 A wide, suggesting that these polymers were formed by globular C9 that had not unfolded.

Cell Membrane Permeability↗

Functional complementation of xeroderma pigmentosum complementation group E by replication protein A in an in vitro system.

Xeroderma pigmentosum (XP) is caused by a defect in nucleotide excision repair. Patients in the complementation group E (XP-E) have the mildest form of the disease and the highest level of residual repair activity. About 20% of the cell strains derived from XP-E patients lack a damaged DNA-binding protein (DDB) activity that binds to ultraviolet-induced (6-4) photoproducts with high affinity. We report here that cell-free extracts prepared from XP-E cell strains that either lacked or contained DDB activity were severely defective in excising DNA damage including (6-4) photoproducts. However, this excision activity defect was not restored by addition of purified DDB that, in fact, inhibited removal of (6-4) photoproducts by the human excision nuclease reconstituted from purified proteins. Extensive purification of correcting activity from HeLa cells revealed that the correcting activity is inseparable from the human replication/repair protein A [RPA (also known as human single stranded DNA binding protein, HSSB)]. Indeed, supplementing XP-E extracts with recombinant human RPA purified from Escherichia coli restored excision activity. However, no mutation was found in the genes encoding the three subunits of RPA in an XP-E (DDB-) cell line. It is concluded that RPA functionally complements XP-E extracts in vitro, but it is not genetically altered in XP-E patients.

Base Sequence↗

Deficiency of the sixth component of complement in rabbits with an inherited complement defect.

A strain of rabbits with an inherited complement deficiency was shown to lack the sixth component of the hemolytic complement system. A method was elaborated for the partial purification of this component from normal rabbit serum. Upon injection of partially purified rabbit C'6 into C'6-deficient animals, an antibody was obtained which specifically inhibited the hemolytic activity of C'6. The data suggest that C'6-deficient serum either lacks the C'6 molecule or contains it in a chemically modified and inactive form.

Animals↗

The role of complement in the pathogenesis of postpartum thyroiditis: ultrasound echogenicity and the degree of complement-induced thyroid damage.

Postpartum thyroiditis (PPT) is a transient autoimmune thyroiditis occurring during the postpartum year that is characterized by circulating antithyroid antibodies, abnormal thyroid ultrasound echotexture, and episodes of hyperthyroidism, hypothyroidism, or both. In this study we examined the relationship between lymphocytic thyroiditis, as indicated by echotexture changes, and complement-activating thyroid autoantibodies. Thyroid ultrasound echotexture, thyroid function, and bioactive (complement-activating) thyroid peroxidase (TPO) antibodies have been measured in a group of 63 TPO antibody-positive women during the postpartum year. When the maximum bioactive TPO antibody activity recorded was compared with echogenicity and thyroid status, there was a correlation between hypoechogenicity, elevated antibody activity, and abnormal thyroid status (r = 0.72, p < 0.001). However, 7 cases showed severe ultrasound changes in the absence of any thyroid dysfunction (3 of these cases showed normal bioactive antibody activity), while 4 (all hyperthyroid PPT) showed thyroid dysfunction in the absence of any ultrasound changes. Within the euthyroid ultrasound normal group, bioactive TPO antibody activity remained low throughout the postpartum year. Antibody activity in the hypoechogenic euthyroid women was significantly elevated (p < 0.001) compared with the echo normal group, but was indistinguishable from the activity curve obtained in women whose PPT included a hypothyroid phase. The determination of echotexture by thyroid ultrasonography gives a useful, noninvasive measure of the degree of thyroiditis in these women. However, as a significant number of cases with severe changes in echotexture remained euthyroid, we conclude that the development of thyroid dysfunction is not an inevitable consequence of lymphocytic thyroiditis during the postpartum and suggests that other factors must also be involved in progression to overt thyroid dysfunction.

Autoantibodies↗

Interallelic complementation at the suppressor of forked locus of Drosophila reveals complementation between suppressor of forked proteins mutated in different regions.

The Su(f) protein of Drosophila melanogaster shares extensive homologies with proteins from yeast (RNA14) and man (77 kD subunit of cleavage stimulation factor) that are required for 3' end processing of mRNA. These homologies suggest that su(f) is involved in mRNA 3' end formation and that some aspects of this process are conserved throughout eukaryotes. We have investigated the genetic and molecular complexity of the su(f) locus. The su(f) gene is transcribed to produce three RNAs and could encode two proteins. Using constructs that contain different parts of the locus, we show that only the larger predicted gene product of 84 kD is required for the wild-type function of su(f). Some lethal alleles of su(f) complement to produce viable combinations. The structures of complementing and noncomplementing su(f) alleles indicate that 84-kD Su(f) proteins mutated in different domains can act in combination for partial su(f) function. Our results suggest protein-protein interaction between or within wild-type Su(f) molecules.

Alleles↗

Immunohistochemical demonstration of age-related deposition of vitronectin (S-protein of complement) and terminal complement complex on dermal elastic fibers.

Immunoreactivity of vitronectin was investigated in 100 skin specimens from different body regions in 87 individuals of different ages using monoclonal and polyclonal anti-vitronectin antibodies in an avidin-biotin-peroxidase complex technique. Vitronectin immunoreactivity was found in conjunction with dermal elastic fibers in all subjects older than 13 years. No vitronectin immunostaining was detected in subjects younger than six years, suggesting deposition of vitronectin during late childhood or early adolescence. Using an immunogold staining procedure, vitronectin immunoreactivity was ultrastructurally localized to the periphery of elastic fibers. The blood level of vitronectin in 20 healthy newborns was 67% of the adult level, suggesting active biosynthesis already in the fetus. To investigate whether vitronectin is deposited as part of the SC5b-9 complex or as uncomplexed protein, the immunoreactivity of vitronectin was compared with that of C9, using monoclonal and polyclonal antibodies against the C9 neoantigen. Distinct C9 neoantigen immunoreactivity was demonstrated in association with dermal elastic fibers in human skin in adults but only in subjects older than 30 years. The intensity of C9 neoantigen immunoreactivity appeared to increase with age and was found to be stronger in sun-exposed skin than in sun-protected skin. These findings indicate that uncomplexed vitronectin is deposited during childhood or early adolescence and that terminal complement complexes (C5b-9 and/or SC5b-9) are deposited on elastic fibers later on in life. Hypothetically, the tissue form of vitronectin may be involved in the prevention of tissue damage in proximity to local complement activation. In addition, it may be physiologically important as substratum for cells, stimulating cell migration and anchorage.

Adolescent↗

Roles of complement and complement receptor type 3 in phagocytosis of Listeria monocytogenes by inflammatory mouse peritoneal macrophages.

Listeria monocytogenes is a facultative intracellular bacterium that is phagocytosed by and can proliferate within cells of the mononuclear phagocyte system. However, the receptors used by macrophages to internalize this organism have not been identified. In the experiments described here, the contributions of serum complement component C3 and macrophage complement receptor type 3 (CR3) to opsonization and phagocytosis of L. monocytogenes by mouse inflammatory peritoneal macrophages were studied. An assay which allowed the distinction of adherent versus internalized bacteria was used to show that following mixing of L. monocytogenes with inflammatory macrophages, greater than 95% of the bacteria bound were internalized by these phagocytes. When immunofluorescent antibodies to C3 and immunoglobulin were used, C3 but not immunoglobulin was detected on L. monocytogenes following incubation in normal serum or ethylene glycol-bis(beta-aminoethyl ether)-N,N'-tetracetic acid-Mg(2+)-chelated serum. When macrophages were incubated with 5% serum and L. monocytogenes in a standard assay, approximately 80% of the phagocytosis was inhibited by heat-inactivated serum or by the addition of F(ab')2 anti-C3 antibody. The role of macrophage CR3 was demonstrated by the ability of anti-CR3 monoclonal antibody M1/70 to decrease phagocytosis to the same levels as those seen with heat-inactivated serum. These experiments indicated that in the presence of normal serum, L. monocytogenes is phagocytosed by inflammatory macrophages primarily because CR3 on these cells binds to C3 deposited on the bacterial surface.

Animals↗