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Activation of the alternative pathway of complement by monoclonal lambda light chains in membranoproliferative glomerulonephritis.

Immunopathological evidence suggests that activation of the alternative pathway of complement (AP) is involved in membranoproliferative glomerulonephritis (MPGN) and in immunoglobulin A nephropathy. In this report we describe an AP dysfunction-associated factor that was isolated from the serum and urine of a patient with hypocomplementemic MPGN. Extensive glomerular deposits of C3, properdin, and of the terminal complement components were observed in the kidney of the patient. In her serum the AP hemolytic activity was virtually absent. When mixed with fresh normal serum, the patient's serum induced a 96% C3 conversion during a 30-min incubation at +37 degrees C. This activity was found to be due to a circulating factor that by immunochemical characterization proved to be a 46-kD monoclonal immunoglobulin lambda light (L) chain dimer (lambda L). Purified lambda L, but not control lambda or kappa L chains from patients with L chain disease, activated the AP in a dose- and ionic strength-dependent manner. Functionally, lambda L was differentiated from C3 nephritic factor (an autoantibody against the AP C3 convertase, C3bBb) by its inability to bind to and stabilize the C3bBb enzyme. Instead, lambda L was observed to interact directly with the AP control factor H. Thus, lambda L represents a novel type of immunoglobulin-related AP-activating factor with the capacity to initiate alternative complement pathway activation in the fluid phase.

Antibodies, Monoclonal↗

The complement system in host defense and inflammation.

In this discussion I have reviewed the major role of complement in host defense and inflammation. In addition, I have discussed dificiency states. Although these are rare, their clinical signs and symptoms can be predicted, at least in part, on the basis of our current understanding of the biological activities of complement and the various pathways of complement activation. This is not to say that complement plays no role in a wide variety of other illnesses. However, when complement plays a role in an illness, often this is not because it is functioning in an aberrant fashion. The usual situation is that complement is being activated and is serving its normal function in causing inflammation and damage to tissues under abnormal circumstances. Thus, for example, circulating antigen complexes may be deposited in the kidney, activate complement, and mediate tissue inflammation. In this case, complement is functioning normally but is being activated under abnormal circumstances. The same type of analysis can be made for many diseases of many different organ systems. At present, we have no drugs that are effective in humans in controlling the activation of complement and complement-mediated inflammation. We have not yet even established whether local variations in the activity of complement may affect the course of a clinical infection, but there is certainly strongly suggestive evidence to support this idea. It should be clear that under certain circumstances complement may well be a major factor in controlling the course of an infection. The near future should bring a vast expansion in our understanding of how complement contributes to specific clinical illnesses and to the defense of the host against specific microorganisms.

Angioedema↗

Cleavage of C3 by neutral proteases from granulocytes in pleural empyema.

The possibility of direct inactivation of C3 by granular enzymes from polymorphonuclear leukocytes (PMNLs) in pleural empyema was examined. As a group, pleural empyema from 10 patients with purulent effusions and a positive bacteriologic culture cleaved significantly more 125I-labeled C3 bound to Sepharose (18.4% +/- 7.3%) than did 19 sterile pleural effusions (2.4% +/- 0.9%; P less than 0.001) and sonicates from bacterial strains commonly found in empyema (1.4% +/- 0.2%). Granular enzymes from 7 X 10(6) PMNLs cleaved 78.5% of 125I-labeled C3 bound to Sepharose. When proteolysis of 125I-labeled C3 after incubation with pleural empyema or PMNL granular enzymes was examined with polyacrylamide gel electrophoresis, breakdown products were similar. Granulocyte elastase-like activity was detected in four samples of pleural empyema. Granulocyte elastase inhibitors, as well as 10% human serum, effectively suppressed cleavage of C3 and elastase-like activity. In pleural empyemas, granula enzymes from PMNLs, especially elastase, apparently contribute to low complement-mediated opsonic activity by direct inactivation of C3.

Adult↗

Host defense against opportunist microorganisms following trauma. I. Studies to determine the association between changes in humoral components of host defense and septicemia in burned patients.

Total hemolytic complement (CH(50)), conversion of C3 by inulin, and immunochemical levels of Clq, C4, C2, C3, C5, factor B, C3b inactivator (KAF), and properdin were measured in the sera of 15 patients with severe thermal injury during nine weeks postburn. Five of the 15 patients had multiple episodes of septicemia as documented by positive blood cultures and clinical findings. Decrease in CH(50), Clq, C4, C2, C3, and C5 occurred prior to and during septic episodes in these patients. Although conversion of C3 by inulin was often reduced during septic episodes, levels of factor B and KAF were generally normal or elevated. In only one patient did consumption of complement occurring during septicemia decrease the opsonic capacity of the patient's sera for the patient's infecting microorganism, an isolate of E. coli; sera from the same patient opsonized her infecting strain of S. aureus normally. The microorganisms isolated from the other septic patients, which were opsonized normally by the patients' sera despite complement consumption, were also with one exception strains of Staphylococci. In the nonseptic burned patients, decrease in properdin and C3 conversion by inulin, and increase in C3, factor B and KAF were demonstrated as we have previously reported. The results indicate that the classical complement pathway was activated during septicemia in burned patients and that activation of this pathway occurred preferentially due to inhibition of the alternative pathway. In addition, the data show that complement consumption may reduce the opsonic capacity of a patient's sera for certain microorganisms and not for others.

Adolescent↗

Host defense against opportunist microorganisms following trauma. II. Changes in complement and immunoglobulins in patients with abdominal trauma and in septic patients without trauma.

Total hemolytic complement (CH50), conversion of C3 by inulin and cobra venom factor (CoVF), and immunochemical levels of Clq, C4, C2, C3, C5, factor B, properdin, C3b inactivator (KAF), and immunoglobulins (Igs) G, A, and M were measured in the sera of ten patients with abdominal trauma and ten medical patients with septicemia without trauma. Reduction in C3 conversion by CoVF and decrease in the levels of properdin and KAF were demonstrated in the trauma sera. CH50 and the level of C5 were also decreased. Conversion of C3 by inulin and levels of factor B, Clq, C4, C2, and C3 were found to be normal in the patients' sera. Complement levels and activities were found to be normal in the sera of the septic non-trauma patients. A decrease in serum IgM was observed in both patient groups; levels of IgG and IgA were normal. These results indicated that abnormalities of immunoglobulin and of the alternative and classical complement pathways were associated with nonburn trauma. Moreover, the data suggested that consumption of the classical complement pathway associated with septicemia in the thermally injured patient resulted from synergism between the trauma and infection rather than from septicemia per se.

Abdominal Injuries↗

Genetic polymorphism of complement factor H in cattle.

Bovine factor H was found to be polymorphic by the combined techniques of SDS-polyacrylamide electrophoresis of bovine plasma and immunoblotting. Three phenotypes (S, SF, F) were identified in a sample population of 149 cattle. Variant S and F differed by an apparent molecular weight of 5000 daltons. Family studies demonstrated Mendelian segregation of variants S and F. The data indicate that these genetic variants of bovine factor H are encoded by two codominant alleles at a single autosomal locus.

Alleles↗

Peptide inhibitors of C3 breakdown.

We have investigated the development of substrate-based inhibitors of complement enzymes. Sequences around the scissile Arg77-Ser78 bond of C3 have been synthesized and tested as inhibitors of C3 convertase. The best inhibition was found with the tetrapeptide Ac-Arg-Ser-Asn-Leu-OH (H-576); extending this sequence in either direction reduced inhibitory activity. Preliminary experiments with peptides in which the scissile bond--CO--NH--was replaced with non-hydrolysable moieties such as--CO--CH2--(H-497) and--CH2--NH--(H-336) failed to show enhanced inhibition. One of the longer chain inhibitors H-416 containing DArg77-Ser78 was unexpectedly found to potentiate iC3 cleavage by factors I and H but did not inhibit the intact alternative pathway. The same peptide also bound to factor H. It is concluded that the binding requirements of the C3 convertase are more sophisticated than can be satisfactorily imitated simply by linear sequences around the scissile bond of C3.

Complement Activating Enzymes↗

Regulation of the binding of C3-coated particles to human lymphocytes by human complement component H.

Human complement component H was found to modify greatly the binding of C3-coated particles to lymphocytes. We used an experimental model in which lymphocytes were mixed successively with various amounts of H and C3b-coated erythrocytes. At least three mechanisms were postulated to interpret the phenomenon: (i) release of endogenous I by lymphocytes triggered by H through specific binding sites, (ii) cleavage of iC3b by I, promoted by complement receptor type one, and (iii) inhibition of immune adherence by H. Such qualitative and quantitative changes in C3-coated particle recognition by the binding sites might mediate important functions of lymphocytes.

Binding, Competitive↗

Phagocytosis by human monocytes of particles activating the alternative pathway of complement.

The phagocytosis of particles activating the alternative pathway of complement by human monocytes cultured under serum-free conditions was studied. In contrast to native zymosan particles, which were easily ingested, rabbit erythrocytes and agarose beads had to be coated with C3b or C3bi to be engulfed by the monocytes. The binding and ingestion by monocytes of particles coated with C3bi were greater than for the same particles coated with the equivalent amount of C3b. The binding and uptake of rabbit erythrocytes and agarose beads were proportional to the amount of C3b or C3bi on the particles. In contrast to the complement activator particles, C3b- and C3bi-coated sheep erythrocytes, which are non-activators, were not ingested by the monocytes, although attachment to the monocytes took place. The presence of methylamine or cobra venom factor, which are complement inhibitors, strongly reduced the ingestion of native zymosan by the monocytes, whereas the uptake of C3b- or C3bi-coated zymosan particles were only weakly affected. This suggests that the binding of native zymosan to monocytes is sensitive to interference from a cell-derived alternative pathway C3 convertase (C3bBb). Binding and uptake of activators by human monocytes via complement receptor(s) are discussed.

Animals↗

A family with complement factor I deficiency.

A family with inherited factor I deficiency is described. The proband was a 19-year-old Caucasian female with one episode of meningococcal meningitis and one episode of suspected septicaemia of unknown cause. Two obligate and two probable heterozygotes with factor I levels below the lower limit of the reference range were identified. None of these exhibited increased susceptibility to infectious diseases. The inheritance was autosomal codominant. In addition, molecular heterogeneity of factor H in plasma from the proband but not from any other family members was demonstrated by crossed immunoelectrophoresis. The migration of factor H component of fast electrophoretic mobility was retarded by antibodies to C3c and C3d, suggesting the presence of a fluid-phase complex between factor H and excess C3b generated by the uncontrolled activity of the amplification loop.

Adult↗

Characterization of a monoclonal antibody MoAb bH6 reacting with a neoepitope of human C3 expressed on C3b, iC3b, and C3c.

Activation products of the complement cascade contain neoepitopes that are not present in the individual native components. Monoclonal antibodies detecting neoepitopes have been used for direct quantification of activation at different steps in the cascade. These methods are suggested to be more sensitive and reliable than conventional complement activation tests, which are hampered by precipitation or fractionation procedures. The present study describes production screening and characterization of a monoclonal antibody (MoAb) bH6. MoAb bH6 exhibited a significantly higher binding capacity to ELISA plates coated with zymosan-activated human serum than to plates coated with EDTA plasma. When fixed to the enzyme-linked immunosorbent assay (ELISA) plates, MoAb bH6 retained material from zymosan-activated serum that only reacted with anti-C3 antibodies. Crossed immunoelectrophoresis performed on zymosan-activated serum demonstrated that MoAb bH6 co-precipitated with anti-C3c antibodies. In experiments using highly purified cell-bound fragments MoAb bH6 showed reactivity with C3b and iC3b, but not with C3d. MoAb bH6 reacted in ELISA with purified C3c, but not with C3dg, both as capture antibody and in tests with the fragments absorbed to the solid phase. Thus, MoAb bH6 is highly specific for a neoepitope of human C3 expressed on the cleavage fragments of C3b, iC3b, and C3c.

Antibodies, Monoclonal↗

Reduced erythrocyte CR1 (CD 35) receptor function and complement opsonization in factor I-deficient patients is restored by plasma infusion.

Erythrocytes (E) from three factor I-deficient patients were investigated for surface-bound complement factors and CR1 (CD 35) expression and function. The E were coated with C4b, C3b, and factor H. Following plasma infusion or in vitro incubation of the patients' E with normal human serum (NHS) or purified factor I, cell-bound C4b and C3b could no longer be detected. The E now expressed C3d, and factor H was unaffected, indicating that factor H was bound to the C3d part of the C3b molecules, providing the co-factor for effective cleavage of E-bound C3b when purified factor I was added. The binding of monoclonal anti-CR1 antibodies (M710) to the patients' E was markedly reduced compared with control E, and was not normalized by treatment with NHS, probably because covalently bound C3d/factor H interfered with the binding of M710. By contrast, the reduced ability of the patients' E-CR1 to bind complement-opsonized immune complexes (IC) was normalized after plasma infusion. This shows that the impaired CR1 function was acquired and emphasizes the importance of performing functional CR1 assays. Complement opsonization of IC for binding to normal E was severely compromised in the patients' sera due to consumption of factor B and C3. After plasma infusion the opsonization capacity of the patients' sera was restored. Thus, two mechanisms of importance for normal clearance of IC were compromised in factor I-deficient patients: (1) the opsonization of IC for binding to E-CR1, and (2) the capacity of E-CR1 to bind opsonized complexes. Both dysfunctions were temporarily corrected by plasma infusion.

Adult↗

Human complement factor H. Tissue specificity in the expression of three different mRNA species.

Using cDNA clones H-19 and H-46, we have shown previously that three different mRNA species (4.3 kb, 1.8 kb and 1.4 kb) for complement factor H are expressed constitutively in human liver. Here we report data suggesting that the expression of these different factor-H mRNA species is regulated by tissue-specific control mechanisms. Total RNA and poly(A)-enriched RNA from various human tissues (heart, lung, temporal cortex, kidney, spleen, bone marrow and muscle) various cell lines (HepG2, HepG3, HepG4, Hep3B, H-4, Jurkat, Molt4, H-9, KHos24Os, A-431, U937, Mono Mac 6 and Raji) and from primary cultures of peripheral blood monocytes, fibroblasts and human umbilical vein endothelial cells (HUVEC) were investigated for the expression of factor-H mRNA. In RNA preparations from extrahepatic tissue, factor-H mRNA was only detected in biopsies from the lung. Using 20 micrograms total RNA isolated from all 13 cell lines it was not possible to detect any factor-H mRNA, while mRNA for factor H was expressed in monocytes, HUVEC and fibroblasts. When expressed in extrahepatic tissues, only the 4.3-kb and the 1.8-kb mRNA species were detected, while the 1.4-kb mRNA is expressed abundantly in liver. Interferon-gamma did not induce the expression of factor-H mRNA in any of the cell lines tested. On the other hand, tumour necrosis factor-alpha induced the expression of the 4.3-kb mRNA species in U937 cells. In HUVEC and fibroblasts the relative quantities of the 4.3-kb and the 1.8-kb mRNA species and the regulatory effects of interferon-gamma, interleukin-1, dexamethasone and retinoic acid on their expression showed significant tissue specificity.

Blotting, Northern↗

Complement factors in fetal and maternal blood and amniotic fluid during the second trimester of normal pregnancy.

Complement factors (C3, C4, C5; Factors B, H and I) were measured in maternal and fetal serum and amniotic fluid obtained from 55 women with singleton pregnancy undergoing diagnostic fetoscopy at 15 to 28 weeks gestation. Maternal serum levels were consistently 10 times higher than fetal levels which in turn were 10 times higher than levels in amniotic fluid. Spearman rank correlation analysis at weeks 20 to 22 (n = 20) revealed a statistically significant correlation between maternal and fetal levels of C3 and Factors B and I, and between maternal and amniotic fluid levels of Factors B and I. A significant increase in fetal levels of C3, C4 and Factor H, and in amniotic fluid levels of C3 and Factor B was seen in relation to advancing gestational age. These differences were not seen in maternal serum during the short interval of pregnancy studied. These data confirm earlier assumptions of fetal synthesis of complement factors, and provide normal reference ranges of complement factors in fetal blood and amniotic fluid.

Amniotic Fluid↗

Synthesis of two components of human complement, beta 1H and C3bINA, during fetal life.

The levels of beta 1H and C3bINA were estimated in sera from human fetuses, cord and maternal samples. Both components of complement were detected in fetuses more than 12 weeks old. The serum concentrations tended to increase with the gestational age. The mean levels of beta 1H and C3bINA in cord sera were near 54 and 61% of the mean values in sera from normal adults. Elevated levels of beta 1H were observed in maternal sera at the end of the gestational period. When the levels of beta 1H and C3bINA were compared with those of two other components of complement, it was confirmed that the mean levels of C9 were low in fetal and newborn sera, while the serum concentrations of both C9 and Factor B were elevated in maternal samples. Newly synthesised beta 1H was detected in the culture fluids of fetal liver and peritoneal cells, as judged by the incorporation of labelled aminoacids and the autoradiography of he specific immunoprecipitates in agar gel.

Complement C3b Inactivator Proteins↗

The mouse factor H allotypes with multiple amino acid replacement, H.1 and H.2 show indistinguishable co-factor activity for factor I.

The authors report the functional analysis of the purified mouse factor H allotypes H.1 and H.2, which were clearly distinguished from each other by an immunodiffusion test. Both allotypes acted as a co-factor for factor I in cleaving mouse C3b and we found no significant difference between their activities. The results strongly suggest that the function of mouse factor H for the co-factor activity has been well conserved between two allotypes.

Alleles↗

Role of complement in the expression of delayed-type hypersensitivity in rats: studies with cobra venom factor.

The hypothesis was tested that delayed-type hypersensitivity (DTH) to the complement-activating bacterium Listeria monocytogenes is initiated by complement-derived mediators that attract sensitized lymphocytes to reaction sites. To this end DTH and acquired resistance to L. monocytogenes were measured in rats injected with cobra venom factor, a potent inactivator of C3. Treatment with cobra venom factor reduced the hemolytic power of serum to less than 0.5% of the control value. Such decomplemented animals expressed both DTH and antimicrobial resistance, although expression of DTH was reduced (ca. 50%) when compared with complement-sufficient controls. The observed depression of DTH in cobra venom factor-treated rats was associated with a reduction in the number of recently activated lymphocytes (lymphoblasts) and macrophages that accumulated in DTH reaction sites. The above findings are explained, in part, by inhibition of inflammation during the early postinduction period. Supporting evidence came from measurements of labeled lymphoblast sequestration in saline injection sites and the slower accumulation of macrophages in nitrocellulose filters that were implanted subcutaneously in complement-depleted rats. The ability of cobra venom factor-treated rats to express DTH and protect themselves against a Listeria challenge seems to exclude C3-dependent factors as essential mediators in the attraction of antigen-reactive lymphocytes to reaction sites.

Complement Activation↗