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CRP-mediated activation of complement in vivo: assessment by measuring circulating complement-C-reactive protein complexes.

The in vivo function of C-reactive protein (CRP) is unknown. Among the in vitro functions assigned to CRP is the ability to activate complement via the classical pathway. To date, there is no evidence supporting that CRP exerts this function in vivo. We here show a novel approach to assess CRP-mediated complement activation in vivo, which is based on the property that activated complement factors C3 and C4 fix to CRP during complement activation induced by this acute phase protein. We developed specific ELISAs for complexes between CRP and C4b, C4d, C3b, or C3d. We established that in vitro complement-CRP complexes were formed only during CRP-dependent activation, and not during activation by other activators, even in the presence of high CRP levels. Circulating levels of complement-CRP complexes were undetectable in normal donors, but significantly increased in nine patients following implantation of a renal allograft. Importantly, levels of complement-CRP complexes did not change in these patients upon a bolus infusion of mAb OKT3, which induces activation of the classical complement pathway, demonstrating in vivo that complement-CRP complexes are not formed during CRP-independent activation of complement, even when CRP is elevated. We conclude that measurement of complement-CRP complexes provides a suitable tool to study CRP-mediated activation of complement in vivo. Furthermore, increased levels of these complexes occur in clinical samples, indicating that CRP may induce activation of complement in vivo.

Adult↗

Soluble P-selectin moderates complement-dependent reperfusion injury of ischemic skeletal muscle.

P-selectin is an adhesion molecule expressed on activated endothelial and platelet surfaces. The function of the short consensus repeats (SCRs) of P-selectin, homologous with the SCRs of complement regulatory proteins is largely unknown. In a model of murine hindlimb ischemia where local reperfusion injury is partly mediated by IgM natural antibody and classical complement pathway activation, we hypothesized that human soluble P-selectin (sP-sel) would moderate the complement component of the inflammatory response. Infusion of sP-sel supernatant or purified (p) sP-sel prepared from activated human platelets, reduced ischemic muscle vascular permeability by 48% and 43%, respectively, following reperfusion. Hindlimb immunohistochemistry demonstrated negligible C3 staining colocalized with IgM in these groups compared with intense staining in the untreated injured mice. In vitro studies of mouse serum complement hemolytic activity showed that psP-sel inhibited the classical but not alternative complement pathway. Flow cytometry demonstrated that psP-sel inhibited C1q adherence to sensitized red blood cells. From these data we conclude that sP-sel moderates skeletal muscle reperfusion injury by inhibition of the classical complement pathway.

Animals↗

Host cell modification of lymphocytic choriomeningitis virus and Newcastle disease virus altering viral inactivation by human complement.

Complement in human serum inactivated several enveloped viruses, but for some viruses the degree of inactivation depended on their passage history. In short, human serum detected cell-induced modifications of virions. Normal human serum, lacking detectable neutralizing antibodies to the virions, inactivated lymphocytic choriomeningitis virus (LCMV) and Newcastle disease virus (NDV) when the viruses were passed through some cell lines but not others. Host cell modification was further documented with LCMV since antibody to the cell (in conjunction with a complement source) inactivated virus produced by that cell. The mechanism by which human serum inactivated LCMV passed through L cells was determined. By using serum immunochemically depleted in the classical complement pathway component C4 and/or the alternative complement pathway component factor B, as well as other methods, it was shown that LCMV was inactivated via the classical complement pathway. Absorption and immune precipitation experiments indicated that the inactivation of LCMV by complement was mediated by natural antibody directed against the host (L-929) cell. NDV grown in chick embryo cells could be unactivated by either complement pathway in the absence of the other. A requirement for antibody could not be demonstrated in the NDV system. On the basis of these data it is proposed that alterations in virulence dependent upon passage of the virus in cells or animals may be partially explained by changes in virus sensitivity to human serum inactivation.

Animals↗

Mouse peritoneal macrophages cultured serum-free deposit complement on IgM-coated sheep erythrocytes in vitro.

We conclude that the macrophages during cultivation produce the complement components of the classical pathway of complement, deposit complement components on EIgM and then phagocytose these cells via complement receptors. The conclusion is based on the following: EIgM, an activator of the classical pathway, are ingested when cultured serum-free with mouse peritoneal macrophages. We found a significantly higher binding of labelled protein to EIgM than to E kept in macrophage cultures in the presence of tritiated leucine, showing that de novo synthesis of macrophage-derived protein with affinity to EIgM takes place. A fraction of the bound protein is C3b and iC3b, since anti-mouse C3 antibodies bound to the co-cultured EIgM. Cycloheximide or anti-Mac-1 in the cultures inhibited macrophage attachment and uptake of EIgM. The phagocyte uptake of EIgM coated with complement by serum pretreatment was not inhibited by cycloheximide. This shows that the phagocytosis of the EIgM is dependent on erythrocyte-bound complement proteins made by the macrophage.

Animals↗

Dialysis leukopenia and hypoxemia in a patient without measurable complement activity.

We have studied complement activity, total leukocyte counts, PO2 and acid-base balance during a single hemodialysis with cuprophan membranes in a patient with hereditary angioedema and C3NeF-positive chronic membranoproliferative glomerulonephritis. Before, during and after the dialytic procedure plasma complement activity (total hemolytic complement, classical and alternative pathway activities) was not detectable and no C3-conversion occurred, while profound leukopenia (from 8,500 to 1,800 leukocytes/microliter) and hypoxemia (from 101.8 to 86 mmHg PO2) were found within 20 min from the initiation of hemodialysis. Similar results were obtained by studying the same parameters during two additional hemodialytic procedures. In vitro experiments showed that the patient's C3 could not be converted, either by cuprophan or zymosan, a specific and potent complement activator, even under optimal experimental conditions. Our data demonstrate that complement activation is not the only possible mechanism responsible for early leukopenia (as well as hypoxemia) during dialysis with cuprophan membranes.

Acid-Base Equilibrium↗

Mechanism of enhanced complement-dependent cytotoxicity of papain-treated lymphocytes: evidence for increased stability of classical pathway C3 convertase.

The mechanisms of enhanced antibody-mediated, complement-dependent cytotoxicity caused by proteolytic treatment of cells was studied in a model system based on HLA microlymphocytotoxicity methods. In this model, papain treatment of lymphocytes resulted in a) no change in antibody binding, b) a slight decrease in initial binding of C4, c) a marked increase in stability of cell-bound C4b, resulting in d) an increase of cell-bound C3, and e) no increase in lytic efficiency of the C5b-9 membrane attack complex. We conclude that the most important step in papain enhancement of lysis of lymphocytes is an increased stability of cell-bound C4b, possibly through decreased surface binding of C4-bp. This mechanism may be relevant to the pathologically increased lysis of cells occurring in patients with hereditary erythroblastic multinuclearity with a positive acidified-serum test (HEM-PAS).

Anemia, Dyserythropoietic, Congenital↗

Complement in tears from normal humans.

Tears from ten normal persons were used in hemolytic assays to test for activity of total hemolytic complement (tested in all ten subjects), activities of each of the nine complement components (tested in two subjects), and activity of the alternate pathway (tested in two subjects). A modified radial-immunodiffusion method was used to confirm the presence of C3 and C4 complement proteins in the tear samples from all ten subjects. Factor B protein was detected in tears from two of four normal subjects tested. In dilutions up to 1:4, hemolytic activity was observed in tears from five of the ten subjects. Samples from the remaining five subjects had CH50 activity at dilutions up to 1:2. In control tests, human serum had CH50 activity at 1:32. No lysis occurred in Veronal-buffered saline or in serum and tears heated to 56 degrees C for 30 minutes. Complement proteins C3 through C9 displayed hemolytic activity in tears from each of two subjects tested for complement components. The classic and alternate complement pathways in tears can be included among the defense mechanisms of the ocular surfaces.

Complement C3↗

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↗

A very sensitive coupled luminescent assay for cytotoxicity and complement-mediated lysis.

The demand for convenient and sensitive means of measuring cytotoxicity and complement-mediated killing is likely to be increased by the recent identification of Complement Factor H, an important regulatory protein of both the classical and alternate pathways of complement, as a tumor-associated antigen. Here we describe a simple luminometric assay capable of detecting the death of approximately 0.03 nucleated human-cell equivalent or approximately 1 rabbit-erythrocyte equivalent. The assay measures the release of glyceraldehyde-3-phosphate dehydrogenase (G3PDH) from dead or damaged cells by coupling its enzymatic activity to production of ATP, which in turn is measured by well-known methods involving firefly luciferase. This is accomplished by means of a reaction series in which the activity of G3PDH is coupled with that of phosphoglycerate kinase, the next enzyme in the glycolytic pathway. As described, the assay uses inexpensive, commercially available reagents. This coupled assay was used to demonstrate that an anti-factor-H antibody is capable of enhancing complement-mediated killing of the Raji cancer cell line by > 1000%.

Adenosine Triphosphate↗

Susceptibility of Campylobacter isolates to the bactericidal activity of human serum.

Although Campylobacter jejuni and related thermophilic organisms are more common human pathogens than are Campylobacter fetus, most bloodstream or systemic isolates are C. fetus. To understand the pathophysiology related to this observation, the authors studied susceptibility to the bactericidal activity of normal human serum of Campylobacter coli, C. jejuni, and C. fetus isolates from feces and blood. In standardized assays, 10 of 15 C. jejuni and related isolates showed 90% kill (mean, 90.6% +/- 5.9); under more stringent conditions, the relatively resistant strains were completely killed. In contrast, all C. fetus strains were highly serum resistant under both standard and stringent conditions. Killing of C. jejuni was ablated by heating serum to 56 C but restored by addition of complement. Both classical and alternative complement pathways may contribute to killing, and adsorption studies demonstrated antibody dependence. Serum resistance may permit systemic infection by C. fetus, whereas complement- and antibody-mediated serum sensitivity of C. jejuni may account for the relative infrequency of systemic invasion.

Antibodies, Bacterial↗

Opsonic requirements of Helicobacter pylori.

The opsonic requirements of Helicobacter pylori were investigated in a series of experiments with human polymorphonuclear leucocytes (PMNL). Pre-incubation of H. pylori with pooled normal human serum (NHS) in concentrations of 5-20% significantly increased the uptake of radiolabelled bacteria by PMNL. Treatment of the bacteria with NHS 30% caused the release of radiolabel and this effect was abolished by heating serum to 56 degrees C, suggesting that H. pylori is serum-sensitive and that complement is involved. Opsonisation of H. pylori with NHS concentrations of 10-30% significantly increased PMNL chemiluminescence. Removal of specific antibody had no effect. Removal of either the classical or alternative complement pathways produced no significant change in PMNL chemiluminescence, indicating that either pathway is sufficient for opsonisation on its own. The results confirm that complement is the most efficient opsonin for H. pylori.

Analysis of Variance↗

Pneumococcal intracellular killing is abolished by polysaccharide despite serum complement activity.

Normal human serum absorbed at 0 degrees C with pneumococcal serotype 1, 12, or 25 lost the ability to support polymorphonuclear leukocyte intracellular killing of some pneumococcal serotypes even if immunoglobulin was provided. The absorbed serum contained no organisms but had residual polysaccharide when measured by counterimmunoelectrophoresis against type-specific antisera. The influence of pneumococcal polysaccharide (PPS) on serum support of intracellular polymorphonuclear leukocyte killing was evaluated. Normal human serum was mixed with PPS serotype 1, 12, or 25 at 0 degrees C for up to 120 min and then used as the opsonic source in standard phagocytic killing assays with serotype 1, 12, or 25. Immediately after mixing, each serum combined with PPS serotype 1, 12, or 25 supported killing of all serotypes tested. With increasing time at 0 degrees C with serotype 1 PPS, serum exhibited a marked progressive decline in killing of serotype 25, a similar but less marked impairment in killing of serotype 12, and essentially no impairment for serotype 1. Serum treated with type 25 PPS did not support killing of type 25, but allowed normal killing of types 1 and 12. Incubation with type 12 PPS impaired opsonization of types 12 and 25, but not 1. Addition of PPS-specific antisera did not restore killing. Residual serum hemolytic activity of classic and alternative complement pathways was not reduced below opsonizing levels after 120 min at 0 degrees C. Furthermore, PPS treatment of normal human serum did not alter the attachment or ingestion of 14C-labeled pneumococci by polymorphonuclear leukocytes. Some serotypes of PPS reacted slowly with serum at 0 degrees C, diminishing its ability to support intracellular killing of pneumococci despite serum hemolytic complement activity. Phagocytosis was not inhibited. Specific antibody did not overcome inactivation. Different requirements for the inactivated factor among serotypes may be a characteristic related to organism virulence.

Blood Bactericidal Activity↗

Multi-ancestry genome-wide meta-analysis of 56,241 individuals identifies known and novel cross-population and ancestry-specific associations as novel risk loci for Alzheimer's disease.

BACKGROUND: Limited ancestral diversity has impaired our ability to detect risk variants more prevalent in ancestry groups of predominantly non-European ancestral background in genome-wide association studies (GWAS). We construct and analyze a multi-ancestry GWAS dataset in the Alzheimer's Disease Genetics Consortium (ADGC) to test for novel shared and population-specific late-onset Alzheimer's disease (LOAD) susceptibility loci and evaluate underlying genetic architecture in 37,382 non-Hispanic White (NHW), 6728 African American, 8899 Hispanic (HIS), and 3232 East Asian individuals, performing within ancestry fixed-effects meta-analysis followed by a cross-ancestry random-effects meta-analysis. RESULTS: We identify 13 loci with cross-population associations including known loci at/near CR1, BIN1, TREM2, CD2AP, PTK2B, CLU, SHARPIN, MS4A6A, PICALM, ABCA7, APOE, and two novel loci not previously reported at 11p12 (LRRC4C) and 12q24.13 (LHX5-AS1). We additionally identify three population-specific loci with genome-wide significance at/near PTPRK and GRB14 in HIS and KIAA0825 in NHW. Pathway analysis implicates multiple amyloid regulation pathways and the classical complement pathway. Genes at/near our novel loci have known roles in neuronal development (LRRC4C, LHX5-AS1, and PTPRK) and insulin receptor activity regulation (GRB14). CONCLUSIONS: Using cross-population GWAS meta-analyses, we identify novel LOAD susceptibility loci in/near LRRC4C and LHX5-AS1, both with known roles in neuronal development, as well as several novel population-unique loci. Reflecting the power of diverse ancestry in GWAS, we detect the SHARPIN locus with only 13.7% of the sample size of the NHW GWAS study (n&#x2009;= 409,589) in which this locus was first observed. Continued expansion into larger multi-ancestry studies will provide even more power for further elucidating the genomics of late-onset Alzheimer's disease.

Humans↗

Bactericidal activity of a monoclonal antibody against a recombinant 40-kDa outer membrane protein of Porphyromonas gingivalis.

BACKGROUND: We have cloned the gene for a 40-kDa outer membrane protein (40-kDa OMP) from Porphyromonas gingivalis 381. The recombinant (r)40-kDa OMP has become the subject of considerable interest because of its potential role in the development of a vaccine useful for passive immunization. To develop such a vaccine, it is essential to fully understand the functions of anti-r40-kDa OMP antibody in the host defense against P. gingivalis. To that end, we developed a panel of monoclonal antibodies by immunizing mice with purified r40-kDa OMP. The objective of this study was to determine the bactericidal activity on P. gingivalis by the IgG1 monoclonal antibody Pg-ompA2. METHODS: Bacterial growth measurement, a complement-mediated anti-P. gingivalis assay based on [3H]thymidine uptake, and a 14C-release assay were performed to test the bactericidal activity of Pg-ompA2 to P. gingivalis. RESULTS: In the presence of complement, Pg-ompA2 was lethal to P. gingivalis 381 as well as to the more virulent P. gingivalis strains, including ATCC 53977 and W83. Using component-deficient complement, we determined that Pg-ompA2 killed P. gingivalis by activating both the classical and alternative complement pathways. CONCLUSIONS: Pg-ompA2 has an in vitro complement-mediated bactericidal activity to P. gingivalis. Pg-ompA2 may contribute to the development of a local immunotherapy that can be applied in the gingival crevice of a patient with P. gingivalis-related periodontitis, or be a vaccine candidate.

Animals↗

Characterization of complement activity in turkeys: evidence for classical and alternative complement pathways.

Complement activity in turkey serum was examined by using inhibitors or activators of mammalian complement. Hemolytic test systems using sheep red blood cells sensitized with specific antibody (SSRBC) and horse red blood cells (HRBC) were developed to measure residual complement activity of turkey sera treated with the various inhibitors or activators. Lysis of SSRBC was blocked by treatment with 6-mM EDTA, 10-mM ethylene glycol-bis-beta aminoethylether N,N,N',N' tetraacetic acid (EGTA), and carrageenan. In contrast, lysis of HRBC was blocked by 6-mM EDTA, but not by 10-mM EGTA or carrageenan. Addition of magnesium to EGTA-chelated serum facilitated the lysis of HRBC but not the lysis of SSRBC. Treatment of serum with zymosan at 1 mg/mL and inulin at 5 mg/mL depleted hemolytic activity against both SSRBC and HRBC, suggesting depletion of components common to both pathways. Differences in the hemolytic activities of sera against SSRBC and HRBC after treatment with the various complement inhibitors and activators demonstrate the presence of two complement pathways in turkeys.

Animals↗

Consumption of C3 via the classical and alternative complement pathways by sera and synovial fluids from patients with rheumatoid arthritis.

Five sera and four synovial fluids from patients with rheumatoid arthritis were found to contain substances which consumed hemolytic C3 in normal human serum (NHS) and in normal guinea pig serum (NGPS). These fluids were then tested for ability to activate the alternative pathway by incubating them with NHS containing MgEGTA and C4 deficient GPS. All sera and two synovial fluids depleted C3 in these reagents, indicating direct activation by the alternative pathway. Density gradient ultracentrifugation demonstrated C3 fixing activity in some specimens in the greater than 19s regions. These substances may also activate complement similarly in vivo and participate in the development of inflammatory processes associated with this disease.

Adult↗

Antibody complement-dependent bacteriolysis in experimentally induced pasteurellosis in mice.

Affinity-purified bovine immunoglobulin isotypes were bacteriolytic for Pasteurella haemolytica biotype A, serotype 1 (PHA-1). This bacteriolysis was specific and complement-dependent. The IgM and IgG1 were the most active isotypes in the classic complement cascade. These isotypes also induced bacteriolysis through the alternative complement cascade. The comparative bacteriolytic activities of IgG1 and IgM were equal within each cascade; however, the bacteriolytic activities of IgG1 and IgM were lower in the alternative cascade than in the classical cascade. The IgG2 was more bacteriolytic than IgA in the classic and alternative complement pathways. Bovine immunoglobulins passively protected C57BL/6 mice from experimentally induced pasteurellosis. There were no major differences in the protection among hyperimmune sera, purified IgM, or purified IgG. Mice were protected from PHA-1 by approximately 1.9 micrograms of IgG and 1.2 or 0.1 micrograms of IgM. Elimination of murine complement with cobra venom factor 3 reduced PHA-1 clearance in passively immunized C57BL/6 mice. The protective effect of IgM mediated resistance was highly dependent on an intact complement system. The intact complement cascade was associated with enhanced clearance of PHA-1 from the liver. Although PHA-1 was susceptible to antibody complement-mediated bacteriolysis in vitro, the dependence on an intact complement cascade was not absolute in experimentally induced murine septicemic pasteurellosis.

Animals↗