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C5 fragments: are they important in polymorphonuclear leucocyte diapedesis?

In the present study the coisogenic C5-sufficient B10.D2/nSn and C5-deficient B10.D2/oSn mice were used to determine the importance of the C5 molecule in the polymorphonuclear leucocyte accumulation in inflammatory sites. Peritoneal exudates were induced by carrageenin, glycogen, zymosan, endotoxin lipopolysaccharides (LPS) and via a passive immediate hypersensitivity reaction. It was found that the temporal profile of PMN accumulation induced by all inflammatory stimuli tested, except by high doses of LPS, is similar in C5-sufficient and C5-deficient strains of mice.

Animals↗

Identification of complement activation sites in human immunodeficiency virus type-1 glycoprotein gp120.

Recombinant glycoprotein 120 (rgp120) of human immunodeficiency virus type-1 (HIV-1) activates the human complement system in the absence of anti-gp120 antibodies. HIV-1 glycoprotein gp120 can dissociate from the viral envelope either spontaneously or after binding of HIV-1 to the CD4 molecule. As a consequence, gp120 can circulate in the patient's serum and attach to the surface of uninfected CD4+ T cells. Complement activation by cell-bound HIV-1 glycoprotein gp120 with subsequent opsonization may represent a mechanism for the elimination of uninfected CD4+ cells by the reticuloendothelial system, thereby enhancing the progression of HIV disease. In the current study, the complement proteins C4,C3,C5,C9, and properdin were found to bind to a synthetic peptide covering positions 233-251 of the gp120BRU sequence on incubation with normal human serum. Complement activation by the peptide was comparable with that induced by aggregated IgG, complete rgp120, and the previously described complement-activating gp41-peptide 609-623. Activation occurred via the classical pathway and was abrogated in the presence of EDTA, Mg2+/EGTA, or C4-deficient human serum. Peptides partly overlapping the sequence 233-251 activated complement to a lesser extent. The complement-activating capacity of the gp120 sequence 233-251 was not restricted to the HIV-1BRU isolate, because a peptide from the corresponding sequence of the HIV-1MN strain was also capable of activating complement. An additional strong complement-activating site was identified in the gp120 sequence 321-360 of the HIV-1MN strain. These data indicate that distinct sites in gp120 are able to activate human serum complement via the classical pathway in the absence of anti-gp120 and independent of glycosylation.

Amino Acid Sequence↗

Interference of propamidine with binding of the fifth component of complement to surface-fixed C3b, and with C5 activation.

The effects of propamidine and their dose dependency, on utilization of the third and fifth complement components in immune haemolysis have been compared. While C3 utilization is not disturbed that of C5 is markedly inhibited by propamidine in concentrations as low as 0.5 mM. Both, binding of C5 to surface-fixed C3b and cleavage of C5 by convertases C42 and C3bBb, are also inhibited in the presence of propamidine. Since neither C3 cleavage by these enzymes nor even C5 cleavage by the cobra venom factor-supported convertase CFVBb is significantly reduced a general convertase-inhibiting effect of propamidine is ruled out. Rather the effect on utilization of C5 is the result of interference with binding of C5 is the result of interference with binding of C5 to C3b and hence impairment of its accessibility to the convertases. These findings thus further support the role of surface fixed C3b in C5 activation proposed earlier.

Amidines↗

Genetic and immunological analyses of patients with increased serum butyrylcholinesterase activity and its C5 variant form.

Recent evidence has denied genetic abnormality as a mechanism of the C5 variant of butyrylcholinesterase (BChE) and proposed the binding of an unknown protein with the C4 component. The present study aimed to evaluate whether the coding sequences and non-translated sequences of the BChE gene at exons 1 to 4, 3q are structurally different in subjects having elevated BChE with and without the C5 variant phenotype. We also attempted to identify the unknown protein associated with the C5 variant and measured the BChE-specific activity in the C5 variant with an enzyme-linked immunosorbent assay (ELISA) using anti-BChE monoclonal antibody. We investigated five subjects, four of whom had elevated plasma BChE (three C5-positive [C5(+)] and one C5-negative [C5(-)]) and one control with a normal plasma BChE level. Direct DNA sequencing of the BChE gene revealed no relevant genetic mutations and no abnormal migrations in the genes of all five subjects. Precipitation of the patients' sera with anti-human immunoglobulin A (IgA), -IgG, -IgM, anti-human albumin antibodies had no effect on the BChE activity. The measured BChE activity in C5(+) was 30 to 54% higher than the activity calculated from BChE protein content. The present results suggest that the C5(+) phenotype is not associated with any genetic abnormality in the CHE1 locus, and BChE-specific activity is enhanced in the C5(+) variant. However, the exact nature of the unknown protein related to the C5(+) phenotype remains unclear.

Adult↗

Further studies on the C5-derived chemotactic factor for tumor cells.

A factor has been studied that is chemotactic in vitro for Walker carcinosarcoma and Novikoff hepatoma cells of rats and for murine mastocytoma cells, but not for neutrophils. This chemotactic factor is generated by the incubation of normal serum with a crude extract from tumor cells. The generation of the tumor cell chemotactic factor is time and temperature dependent and results in greater than 30% reduction of serum complement activity. The tumor cell chemotatic factor appears to be a small cleavage product of the fifth complement component (C5) which binds to serum globulin. This has been shown by the use of agammaglobulinemic serum. By the use of isolated C5 fragments there is direct evidence that the tumor cell chemotactic factor is structurally derived from a larger C5 leukotactic fragment. The study of tumor cell chemotaxis, particularly the involvement of the complement system in this phenomenon, may suggest a novel approach to the investigation of the mechanism of metastasis in the malignant process.

Agammaglobulinemia↗

Identification and characterization of the complement C5a anaphylatoxin receptor on human astrocytes.

The C fragment C5a exerts its important physiologic and pathologic effects through interaction with a specific C5a receptor (C5aR) which is highly expressed on polymorphonuclear leukocytes and some other leukocytes. The presence of this receptor on epithelia and endothelia has recently been documented, raising the possibility that these other cells might also respond to locally generated C5a. C has been implicated in several brain disorders, notably demyelination and neurodegeneration, and cells within brain can synthesize a complete C system. It is thus of interest to examine the mechanisms by which C damages or activates brain cells. To this end we have examined the expression on human fetal astrocytes and astrocyte-derived cell lines of receptors for C fragments. We here report that human astrocytes and cell lines express a receptor for C5a (48 to 72 x 10(3) copies/cell), which is indistinguishable at the protein or mRNA level from that in leukocytes. The astrocyte C5aR was recognized by five different specific Abs, which revealed by Western blotting a protein of 40 to 45 kDa in primary human astrocytes and astrocyte cell lines. Expression was confirmed by RT-PCR using multiple primers. Neither inflammatory cytokines nor PMA caused up-regulation of the receptor on astrocytes. The receptor was functional in that addition of C5a (1 nM to 100 nM) or, at high doses (100 nM), C5adesArg, triggered a calcium transient in astrocytes. We propose that C5aR expression on astrocytes plays an important role in control of inflammation in brain and may be a central component of C-mediated brain injury.

Amino Acid Sequence↗

C5 gene influences the development of murine myasthenia gravis.

The influence of the C5 gene and C5 deficiency on murine experimental autoimmune myasthenia gravis (EAMG) susceptibility was evaluated. Two co-isogenic strains, B10.D2/nSn (C5 sufficient) and B10.D2/oSn (C5 deficient), which are genetically identical except for the C5 gene locus, were immunized with acetylcholine receptors (AChR) in CFA to induce myasthenia gravis. Both strains had equivalent concentration of serum autoantibodies to muscle AChR and antibodies bound to muscle AChR. C5-sufficient B10.D2/nSn, but not C5-deficient B10.D2/oSn, demonstrated increased incidence of clinical disease and death and lost significant amounts of muscle AChR. Therefore, C5 deficiency in B10.D2/oSn prevented EAMG. C5 gene, which codes for C component C5, may influence EAMG pathogenesis through activation of the terminal lytic C sequence (C5 to C9) required for muscle AChR destruction, which is the primary pathology.

Animals↗

Identity of C3- and C5-receptors on lymphoid cells.

Tannic acid-treated SRBC, incubated with increasing concentrations of C5 (Etan-C5) can be attached to C3 receptor-carrying (Raji) cells. This binding is dependent on the amount of C5 on Etan-C5 and can be inhibited by pretreatment on the Raji cells with either C5 or C3. Similar inhibition by soluble C3 and C5, respectively, is obtained for the interaction between Raji cells and Etan-C3. In addition, the immune adherence reaction between Ehum and EAC1423b could be blocked by previous treatment of Ehum with C5 or C3. These results suggest the presence of binding sites for C5 on lymphoid cells and their identity with C3 receptors.

Binding Sites↗

Early complement components in Alzheimer's disease brains.

Activation products of the early complement components C1, C4 and C3 can be found colocalized with diffuse and fibrillar beta-amyloid (beta/A4) deposits in Alzheimer's disease (AD) brains. Immunohistochemically, C1-esterase inhibitor (C1-Inh) and the C1 subcomponents C1s and C1r can not, or only occasionally, be detected in plaques or in astrocytes. The present finding that C1q, C1s and C1-Inh mRNA are present in both AD and control brains suggests that the variable immunohistochemical staining results for C1r, C1s and C1-Inh are due to a rapid consumption, and that the inability to detect C1s, C1r or C1-Inh is probably due to the dissociation of C1s-C1-Inh and C1r-C1-Inh complexes from the activator-bound C1q into the fluid phase. Employing monoclonal antibodies specific for different forms of C1-Inh, no complexed C1-Inh could be found, whereas inactivated C1-Inh seems to be present in astrocytes surrounding beta/A4 plaques in AD brains. These findings, together with our finding (using reverse transcriptase-polymerase chain reaction) that C1-Inh is locally produced in the brain, suggest that in the brain complement activation at the C1 level is regulated by C1-Inh. Immunohistochemically, no evidence for the presence of the late complement components C5, C7 and C9, or of the membrane attack complex (MAC), was found in beta/A4 plaques. In contrast to the mRNA encoding the early components, that of the late complement components appears to be hardly detectable (C7) or absent (C9). Thus, without blood-brain-barrier impairment, the late complement components are probably present at too low a concentration to allow the formation of the MAC, which is generally believed to be responsible for at least some of the neurodegenerative effects observed in AD. Therefore, the present findings support the idea that in AD, complement does not function as an inflammatory mediator through MAC formation, but through the action of early component activation products.

Aged↗

Deficiency in C3b receptors on neutrophils of patients with chronic granulomatous disease and hyperimmunoglobulin-E recurrent infection (Job's) syndrome.

C3b receptor (CR1) expression by neutrophils (PMNs) and erythrocytes (Es) from patients with chronic granulomatous disease (CGD) or with hyper-IgE, frequent infection (Job's) syndrome was compared with that of control subjects. The control subjects consisted of one group of patients with infections and a second group of normal, healthy individuals. Three quantitative assays were used: rosette formation with C3b-coated cellular intermediates (EAC43b), binding of radiolabeled monoclonal anti-CR1 ([125I]anti-CR1) to PMN surfaces, and binding of the antibody to nonidet P-40 (NP-40) extracts of PMNs and Es in an immunoradiometric assay. Rosette formation by the PMNs of five male CGD patients was about 50% of that of paired normal control subjects, whereas the rosette formation of three female CGD patients was similar to that of the control subjects. Surface binding of [125I]anti-CR1 to PMNs of 10 CGD patients was about half that of the normal subjects (mean percent binding was 2.33% for the CGD patients vs. 3.86% for the normal subjects, giving a difference of -1.53 +/- 0.22%, P less than 0.001 by the paired-sample t test). The degree of PMN binding was similarly low for both the male and the female CGD patients. Conversely, the binding of anti-CR1 to the PMNs of 11 infected control patients appeared to be similar to that of the normal subjects (4.51% for the patient vs. 4.21% for the paired normal subjects). The infected control group originally included four Job's syndrome patients, and when this subgroup was analyzed separately, their PMNs were shown to bind significantly less anti-CR1 than did the PMNs of the normal subjects (P less than 0.01 by the paired-sample t test). In contrast, the other infected control patients showed higher-than-normal levels of anti-CR1 binding (P less than 0.05). When compared to that of the normal subjects, the total CR1 quantitated in PMN extracts was also lower than normal in CGD patients (P less than 0.01 and in the PMN extracts of eight Job's syndrome patients tested (P less than 0.01). The PMNs of the other infected control subjects were not significantly different from those of the normal subjects in total CR1 expression. Extracts of Es from Job's syndrome patients also had fewer than normal CR1 (P less than 0.02). On the other hand, CR1 levels in E extracts from the CGD patients and the other control patients were similar to those in the normal control subjects. Quantitations of C3, C4, and factor B were normal in CGD.(ABSTRACT TRUNCATED AT 400 WORDS)

Antigen-Antibody Complex↗

Factor B of the alternative complement pathway regulates development of airway hyperresponsiveness and inflammation.

Exposure to inhaled allergens leads to increases in airway hyperresponsiveness (AHR) and inflammation, associated with increased levels of biologically active fragments derived from the complement C3 and C5 family of proteins. Further, complement activation during allergen challenge in sensitized animals is necessary for the development of AHR and airway inflammation. To define the complement pathway involved, we studied mice deficient in complement factor 4 (C4-/-), a critical component of the classical pathway, or factor B (fB-/-), an essential protein in the alternative complement pathway. WT, C4-/-, and fB-/- mice were sensitized to ovalbumin and subsequently exposed to nebulized ovalbumin (1% in saline) on 3 consecutive days. After allergen sensitization and challenge, fB-/- mice demonstrated significantly lower airway responsiveness to methacholine and less airway inflammation. In contrast, C4-/- mice showed no reduction in AHR and airway inflammation compared with WT mice. Tissue inflammation, goblet cell hyperplasia, and IL-4, IL-5, and IL-13 levels in BAL fluid were significantly reduced in fB-/- mice compared with C4-/- and WT mice. The development of AHR and airway inflammation in sensitized fB-/- mice could be restored after intranasal administration of purified factor B before the airway challenge. In addition, administration of a neutralizing anti-factor B mAb to sensitized mice before airway challenge reduced the development of AHR and airway inflammation. These results demonstrate that in sensitized hosts complement activation through the alternative pathway after allergen exposure is critical to the development of AHR and airway inflammation.

Animals↗

Induction of active immunological hypo/non-responsiveness to C5 in adult C5-deficient DBA/2 mice.

Injection of C5-sufficient BALB/c serum rendered DBA/2 mice (C5-deficient) immunologically hypo- or non-responsive to C5. This was indicated by C5-elimination studies in the C5-deficient mice showing similar half-lives for C5 upon single and repeated BALB/c serum injection. Concrete evidence for C5 non-responsiveness came from experiments showing that C5-injected DBA/2 mice were unable to mount an anti-C5 antibody response after active immunization with C5-sufficient serum in Freund's complete adjuvant. C5 hypo/non-responsiveness could be induced in DBA/2 mice via the intravenous as well as the intraperitoneal route, provided the C5-sufficient serum was administered in the very narrow dose range of 10-100 microliters (approximately 0.3-3 micrograms of C5). Upon i.v. C5 injection, C5 non-responsiveness was nearly complete on Day 4 and lasted about 3 weeks. Hyporesponsiveness was still present 6 weeks after serum injection. C3-/C5-depleting cobra venom factor reversed tolerization for C5, at least when applied within 48 hr after i.v. C5 injection. Similarity between the acquired C5 hypo/non-responsiveness of DBA/2 mice and the established C5 tolerance of BALB/c mice was suggested by adoptive cell transfer experiments: spleen cells from naive DBA/2 mice stimulated B cells of C5-sufficient nude mice to produce C5-neutralizing antibodies. In contrast, splenocytes from C5-tolerized DBA/2 mice, like those of BALB/c mice, did not decrease haemolytic C5 levels in C5-sufficient nude mice.

Animals↗

The activation of C5 in the fluid phase and in the absence of C3 through the classical pathway of the complement system.

Unsensitized guinea-pig erythrocytes (Egp) were lysed by a combination of eight isolated, human-derived complement components, Cls, C4, C2, C5, C6, C7, C8 and C9 (Cls-C9exC3), even in the presence of anti-C3. It was determined that a factor was generated in the reaction mixture of Cls, C4, C2, C5 and C6, which had a lytic activity against Egp when C7, C8 and C9 were added. The lytic factor was similar to C56 in the following properties: the activity of the lytic factor decreased when incubated with C7 prior to its reaction with Egp, the lytic factor did not bind to Egp by itself but it did bind in the presence of C7, EDTA did not have any inhibitory effect on the lytic factor, and the activity of the lytic factor was lost by treatment with anti-C5 or anti-C6 but not by treatment with anti-C4. Furthermore, C5a, a cleavage product of C5, was clearly detected in the reaction mixture of Cls, C4, C2 and C5. These findings indicate that C5 can be activated proteolytically into C5a and C5b in the fluid phase solely by the classical pathway C3 convertase, C42, without any participation of C3.

Animals↗

Accumulation of immature B and null lymphocytes in the periphery after intraperitoneal administration of traditional Chinese medicine, xiao-chai-hu-tang (Japanese name: shosaiko-to).

Accumulation of lymphocytes after an intraperitoneal (ip) injection of a traditional Chinese herb medicine, XIAO-CHAI-HU-TANG (Japanese name: shosaiko-to), was investigated. Shosaiko-to induced marked accumulation of lymphocytes rather than macrophages in the peritoneal cavity of ICR mice, whereas various kinds of irritants, e.g. proteose-pepton, Escherichia coli lipopolysaccharide (LPS), OK-432 and Corynebacterium parvum, induced preferential accumulation of macrophages rather than lymphocytes. By means of analysis using two-color fluorescence-activated cell sorter (FACS), it was revealed that the increased lymphocyte subpopulations not only in the peritoneal cavity but also in the spleen of C3H/He mice by the injection of shosaiko-to were comprised of both immature B (IgM+ and IgD-) and null (thyl- and Ig-) cells. This effect of shosaiko-to was observed in other C5 normal strains, C3H/HeJ (LPS-nonresponder), C57BL/6, BALB/c and athymic nu/nu (ICR background) mice, but not in C5 deficient strains, AKR/J, A/J and DBA/2 mice, indicating that the accumulation of immature B and null cells in the periphery induced by shosaiko-to is closely related to the complement system.

Animals↗

Lung defenses against Pseudomonas aeruginosa in C5-deficient mice with different genetic backgrounds.

Lung defenses against Pseudomonas aeruginosa were investigated in C5-deficient strains of mice with different genetic backgrounds. We studied pulmonary clearance and cell responses after aerosol exposure to P. aeruginosa in C5-deficient B10.D2/oSnJ and DBA/2J mice and their closest C5-sufficient counterparts, B10.D2/nSnJ and DBA/1J mice. Different patterns of lung clearance and pulmonary cell responses were found for the two C5-deficient strains. C5-deficient B10.D2/oSnJ mice showed defective lung clearance of P. aeruginosa 4 h after challenge compared with C5-sufficient B10.D2/nSnJ animals. This finding was associated with a decreased number of polymorphonuclear leukocytes recruited into the airways during the same time. Interestingly, C5-deficient DBA/2J mice recruited higher numbers of polymorphonuclear leukocytes than did C5-sufficient DBA/1J mice by 4 h after aerosolization. Nevertheless, lung clearance of P. aeruginosa in DBA/2J mice was not as effective as in C5-sufficient DBA/1J mice, suggesting that other functions of C5 besides chemotaxism could be involved. Lung clearance of P. aeruginosa was also investigated in C5-deficient and -sufficient hybrids sharing the same genetic background (DBA/2J X B10.D2). The results suggested that murine lung clearance of P. aeruginosa is markedly affected by lack of C5 in a specific genetic background (B10.D2).

Aerosols↗