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Protective effect of a human C5a receptor antagonist against hepatic ischaemia-reperfusion injury in rats.

BACKGROUND/AIMS: Complement activation is induced by ischaemia-reperfusion (I/R) and the complement factor C5a plays an important role in organ specific I/R injuries. This study investigated the efficacy of a small molecule C5a receptor (C5aR) antagonist against hepatic I/R injury. METHODS: Total hepatic ischaemia or partial hepatic ischaemia were induced in rats, followed by a period of reperfusion. The C5aR antagonist, AcF-[OPdChaWR], was administered at 1 mg/kg i.v. or 10 mg/kg p.o. or s.c. before induction of ischaemia. Total hepatic I/R-induced mortality was measured and partial hepatic ischaemia injury was assessed by measuring the serum levels of liver enzymes, tissue or serum TNFalpha, liver and lung myeloperoxidase activity, the number of infiltrating neutrophils, neutrophilia and liver histopathology. RESULTS: C5aR antagonist treatment reduced total hepatic I/R-induced mortality. In partial hepatic I/R rats, treatment with the C5aR antagonist significantly attenuated the increases in liver enzymes, serum and tissue TNFalpha, myeloperoxidase activity, infiltrating neutrophils, neutrophilia, and also reduced liver histopathology. CONCLUSIONS: This study shows that an orally active, small molecule C5aR antagonist is effective in reducing the markers of tissue damage caused by I/R in the rat, suggesting an important role for C5a in I/R injuries in the liver.

Alanine Transaminase↗

Contractile actions of C5a on isolated porcine myocardium.

Although intracoronary administration of the complement component, C5a, produces deleterious effects on regional coronary blood flow and segmental ventricular function, it is unclear whether a direct myocardial action contributes to the dysfunction induced by the anaphylatoxin. We therefore evaluated the effects of purified porcine C5a on contractile tension of isolated supported ventricular trabeculae from pig hearts. Muscles were studied in a myograph bath at 30 degrees C, electrically stimulated 12 times per minute, and stretched to produce maximal isometric developed tension. C5a concentrations of 30, 100, and 300 ng/ml increased tension (P less than 0.05) 9.8, 5.5, and 20.9%, respectively. In seven of nine muscles exposed to 300 ng/ml C5a, tension initially decreased 10.5% (P less than 0.05) before the positive inotropic effect. Tachyphylaxis was demonstrated by lack of contractile response to a second administration of C5a greater than 70 min after the initial exposure to the complement fragment. Blockade of histamine H1 receptors with diphenhydramine (10(-6) M) markedly attenuated both the positive and negative contractile responses to C5a. beta-Adrenoceptor blockade with propranolol (5.6 x 10(-7) M) did not alter the response to C5a. Levels of thromboxane (Tx)B2, the stable metabolite of TxA2, were augmented in the bath after exposure to C5a (59 +/- 27.3 to 104 +/- 28.2 pg/ml, P less than 0.05). Although the TxA2 agonist, U-46619 (50 ng/ml), significantly increased tension, TxA2 receptor blockade with SQ 29548 (50 ng/ml) did not alter the response to C5a.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenergic beta-Antagonists↗

The degradation product of the C5a anaphylatoxin C5adesarg retains basophil-activating properties.

The complement cleavage product C5a is a potent agonist of different leukocyte types and also has anaphylatoxic properties through the release of mediators by basophils and tissue mast cells. C5a is very rapidly degraded by serum carboxypeptidase N which cleaves the functionally important carboxy-terminal arginine, generating C5desarg, a chemotactic agonist with little mast cell-activating ability. Here we show that natural human C5adesarg is still a trigger for basophil mediator release superior to other endogenous IgE-independent agonists such as monocyte chemotactic protein (MCP)-1, interleukin (IL)-8, C3a and platelet-activating factor. On a molar basis C5adesarg is only one order of magnitude less potent and about half as efficacious as C5a at inducing basophil degranulation. Priming of basophils with either IL-3, IL-5, granulocyte-macrophage-colony-stimulating factor (GM-CSF) or nerve growth factor (NGF) (with comparable efficacies, but different potencies: IL-3 > NGF > IL-5 > GM-CSF) enhanced histamine release and conditioned the cells to produce large amounts of leukotriene C4 (LTC4), which is not generated by basophils exposed to C5adesarg alone. The efficacy of C5a and C5adesarg at inducing histamine and LTC4 release by primed basophils was similar. Thus, C5adesarg is a stable inducer of release of inflammatory mediators by human basophils, particularly in primed cells, and complement may, therefore, play a role in immediate-type hypersensitivity diseases in allergic late-phase reactions.

Basophils↗

Arthritis critically dependent on innate immune system players.

K/BxN T cell receptor transgenic mice are a model of inflammatory arthritis, similar to rheumatoid arthritis. Disease in these animals is focused specifically on the joints but stems from autoreactivity to a ubiquitously expressed antigen, glucose-6-phosphate isomerase (GPI). T and B cells are both required for disease initiation, but anti-GPI immunoglobulins (Igs), alone, can induce arthritis in lymphocyte-deficient recipients. Here, we show that the arthritogenic Igs act through both Fc receptors (in particular, FcgammaRIII) and the complement network (C5a). Surprisingly, the alternative pathway of complement activation is critical, while classical pathway components are entirely dispensable. We suggest that autoimmune disease, even one that is organ specific, can occur when mobilization of an adaptive immune response results in runaway activation of the innate response.

Animals↗

Contractile actions of C5a on isolated porcine coronary resistance and conductance arteries.

The comparative effects of the complement component C5a on coronary resistance and conductance arteries have not been evaluated. To clarify the coronary contractile actions of this anaphylatoxin, we studied the effects of C5a on development of isometric tension in isolated porcine coronary conductance and resistance arteries. Internal diameters of conductance and resistance vessels were 367 +/- 21 and 88 +/- 4 microns, respectively. Vessel ring segments were suspended in a microvessel myograph, stretched to the peaks of their length-tension curves, and precontracted with 30 mM K+ physiological salt solution. Dose-response curves to C5a (2, 10, and 50 nM) were obtained. At 50 nM, the C5a-induced increase in tension in resistance arteries (4.1 +/- 0.9 to 5.7 +/- 1.4 mN, 35.8 +/- 3.4%) was significantly greater (P < 0.05) than in conductance arteries (10.7 +/- 2.2 to 12.4 +/- 2.6 mN, 15.6 +/- 3.0%). A specific thromboxane A2 receptor antagonist, SQ-29548, virtually eliminated C5a-induced increases in tension. C5a did not impair endothelium-dependent relaxation in either conductance or resistance vessels, as indicated by the half-maximal effective dose (ED50) calculated from bradykinin dose-response curves before and after exposure of the vessels to 50 nM C5a (resistance: pre-C5a ED50 = 2 nM, post-C5a ED50 +/- 3 nM; conductance: pre-C5a ED50 +/- 13 nM, post-C5a ED50 +/- 14 nM). These results indicate that 1) C5a has a greater vasoconstrictive effect on isolated porcine resistance than conductance coronary arteries; 2) C5a-induced coronary constriction is mediated by thromboxane A2; and 3) C5a does not impair endothelium-dependent relaxation of isolated porcine coronary arteries.

Animals↗

Characterization of a receptor for C5a anaphylatoxin on human eosinophils.

The complement anaphylatoxin peptide C5a is well known to activate human polymorphonuclear leukocytes through receptor-mediated processes. C5a has also been reported to activate eosinophils for both chemotaxis and hexose uptake. We characterized the receptor molecule for human C5a on human eosinophils and compared it with the receptor on human neutrophils. At 4 degrees C, uptake of 1 nM 125I-C5a reaches equilibrium within 10 min on both cell types. Binding of 125I-C5a occurs over a concentration range comparable to that which stimulates lysosomal enzyme release and hexose uptake in both cell types. Scatchard analyses of the data indicate the presence of two receptor populations on eosinophils; a high affinity receptor with 15,000-20,000 sites/cell and a Kd of 3.1 +/- 0.6 x 10(-11) M, and a low affinity receptor with approximately 375,000 sites/cell and a Kd of 1 x 10(-7) M. Parallel experiments with neutrophils indicate the presence of a single receptor population with approximately 90,000 sites/cell and a Kd of 4.8 +/- 0.1 x 10(-10)M. The eosinophil receptor molecule was further characterized by covalently cross-linking 125I-C5a to cells followed by sodium dodecyl sulfate-polyacrylamide gel electrophoresis of the solubilized material. Autoradiography indicates the presence of a dominant C5a-eosinophil receptor complex with an apparent mass of 60-65 kDa. The corresponding neutrophil-C5a receptor complex has an apparent mass of 50-52 kDa as observed by others. When the cross-linked 125I-C5a-receptor complex was treated with cyanogen bromide, different patterns were observed on sodium dodecyl sulfate-polyacrylamide gel electrophoresis for neutrophils and eosinophils. Thus, human eosinophils have a receptor for C5a anaphylatoxin which appears to be distinct from the C5a receptor present on human neutrophils.

Cold Temperature↗

Complement activation in septic baboons detected by neoepitope-specific assays for C3b/iC3b/C3c, C5a and the terminal C5b-9 complement complex (TCC).

We have investigated the cross-reactivity of various species in neoepitope-specific methods for quantification of human complement activation products. In contrast to most other species examined, baboon showed a substantial cross-reactivity supporting a high degree of homology between human and baboon complement. An assay for C3b, iC3b and C3c (MoAb bH6) showed moderately good reactivity, in contrast to a C3a assay which did not cross-react. Excellent reactivity was found for C5a using MoAbs C17/5 and G25/2. The reactivity of an established TCC assay (MoAb aE11 to a C9 neoepitope and polyclonal antibody to C5) was improved substantially by replacing the anti-C5 antibody with a new MoAb to C6 particularly selected on the basis of baboon cross-reactivity. Plasma samples from baboons receiving 2.5 x 10(9) and 1.0 x 10(10) live Escherichia coli bacteria/kg were examined with the assays described. In vivo complement activation with the lowest dose was moderate and kept under control, in contrast to the highest dose, where an uncontrolled increase in all activation products continued throughout the infusion period. These results support the hypothesis that sufficiently high amounts of endotoxin lead to uncontrolled activation of complement as seen in irreversible septic shock. The results are discussed with particular emphasis on activation of the terminal complement pathway.

Animals↗

Release of histamine from rat mast cells by the complement peptides C3a and C5a.

Suspensions of rat mast cells were used to study the histamine-releasing actions of anaphylatoxins C3A and C5a in vitro. The peptides, derived from human or porcine complement proteins C3 and C5, were less potent than 48/80 but more potent than bradykinin in stimulating release of histamine from mast cells. The pattern of release resembled that of the anaphylactic release action, e.g. release was limited to less than 30 per cent of the cell histamine, the reaction was calcium-dependent and was potentiated by phosphatidyl serine. When C3a and C5a were added together to mast cell suspensions, the amount of histamine released was additive. Similarly, release by either peptide combined with bradykinin was additive. Histamine-releasing activity (as well as smooth muscle-stimulating activity) was abolished when the peptides were treated with pancreatic carboxy-peptidase B. Active or inactive peptides were bound by mast cells and addition of active C3a in combination with the inactive, des-arginine derivative, C3ai, resulted in partial inhibition of histamine release.

Anaphylaxis↗

[A novel monocyte chemotactic factor that connects innate immunity and acquired immunity].

A monocyte chemotactic factor was separated from rheumatoid arthritis synovium, and identified as a homo-dimer of S19 ribosomal protein. When S19 protein was treated with the plasma transglutaminase, an inter-molecular isopeptide bond was formed between Lys122 and Gln137, and the chemotactic activity appeared. The S19 protein dimer caused chemotaxis via the receptor on monocytes to C5a, the complement C5-derived chemotactic factor. This dimer antagonized the C5a receptor on neutrophils. This dimer was released from apoptotic cells, and functioned in the phagocytic clearance of these cells by recruiting circulating monocytes. After engulfment, the macrophages moved to regional lymph nodes, and presented apoptotic cell-derived antigens to T cells. T cells proliferated and activated B cells, and eventually the IgM antibody response was observed. Cooperation between the innate immune response and the acquired response would induce an effective host defense primarily against viral infection.

Animals↗

Primary structure and functional characterization of rat C5a: an anaphylatoxin with unusually high potency.

The anaphylatoxin C5a is a pro-inflammatory factor generated from C5 during complement activation. C5a derived from rat C5 exhibits significantly greater potency compared to C5a from other species. Rat C5a was 25-fold more potent than human C5a for eliciting spasmogenic contraction of guinea pig ileum. Proteolytic removal of the C-terminal arginine of C5a (C5adesArg) reduced spasmogenic potency of rat C5a by only 4-fold compared to a 3,000-fold reduction for human C5adesArg. In addition, rat C5adesArg was 50-fold more potent than human C5adesArg in a guinea pig vascular permeability (in vivo) assay and as a chemotactic factor for human neutrophils. C5a and C5adesArg were purified from zymosan-activated rat serum. Rat C5a, like human C5a, is glycosylated but contains 77 amino acid residues instead of the 74 residues of human C5a. Comparison of the primary structures of rat and human C5a indicated differences at 30 positions including an insert of 3 residues (LLH) in the rat molecule between residue positions 3 and 4 in human C5a. Insertion of residues LLH between Gln-3 and Lys-4 in a recombinant human C5a molecule using site-directed mutagenesis failed to enhance potency. Synthetic C-terminal analogues of rat C5a proved to be measurably more potent than the corresponding human C5a analogues (Ember JA et al., 1993, Protein Sci 2(Suppl 1):159 [Abstr]). We conclude that multiple sequence differences in the C-terminal effector portion and/or elsewhere in rat C5a, but not the LLH insert, account for the significant enhancement in potency of rat C5a over C5a from other species.

Amino Acid Sequence↗

Complement factors C3a and C5a are increased in bronchoalveolar lavage fluid after segmental allergen provocation in subjects with asthma.

Allergic asthma is thought to be the result of an inappropriate specific immune response against common environmental antigens. However, studies of animal asthma models have also linked the innate immune system, in particular complement factors C3a and C5, to murine airway hyperresponsiveness. Because the possible role of these anaphylatoxins in patients with asthma is not understood, we tested the hypothesis that C3a and C5a will increase in the bronchoalveolar lavage (BAL) fluid of patients with asthma after segmental allergen provocation. In a group of 15 subjects with mild asthma we found a significant upregulation of C3a and C5a 24 h after allergen challenge compared with baseline values (p < 0.01). In a control group of healthy volunteers the concentrations remained basically unchanged. Furthermore, we found a strong correlation between both anaphylatoxins and the number of eosinophils (p < 0.01) and, to a lesser degree, with the number of neutrophils (p < 0.05) in BAL fluid. These data suggest a contribution of anaphylatoxins C3a and C5a to the pathogenesis in asthma. However, the pathogenic role of these substances in relation to asthma remains to be elucidated, for example, by using anaphylatoxin receptor blockers as a possible new therapeutic principle.

Adult↗

Complement factors c3a, c4a, and c5a in chronic obstructive pulmonary disease and asthma.

Studies of animal models have shown that the activation of the complement system could have a role in chronic obstructive pulmonary disease (COPD) and asthma by promoting inflammation and enhancing airway hyperresponsiveness. We sought to determine whether the levels of complement factors C3a, C4a, and C5a are elevated at the site of inflammation in patients with COPD and patients with asthma. We analyzed the induced sputum of seven patients with COPD, ten patients with asthma, and twelve healthy nonsmokers. The concentrations of anaphylatoxins in the induced sputum were measured by cytometric bead array. We found significantly increased C5a/C5a desArg concentrations in supernatants of the induced sputum of patients with COPD (P = 0.007) and those with asthma (P = 0.002) compared with the control group. In patients with COPD the C5a/C5a desArg concentrations were significantly negatively correlated with lung diffusion coefficient (r = -0.71, P = 0.035). There was no significant difference in C3a/C3a desArg or C4a/C4a desArg measurements between the three groups of subjects. These in vivo results propose the involvement of complement factor C5a in the pathogenesis of COPD and asthma.

Aged↗

Sequence-specific assignments in the 1H NMR spectrum of the human inflammatory protein C5a.

Full sequence-specific assignments for the 1H NMR lines of the backbone protons of the human complement factor C5a are described and documented. The results were obtained by largely following the methodology developed by Wüthrich et al. [Wüthrich, K., Wider, G., Wagner, G., & Braun, W. (1982) J. Mol. Biol. 155, 311]. Assignments for the majority of the amino acid side chain protons were obtained by using a comparison of double- and triple-quantum-filtered two-dimensional correlated experiments together with the analysis of relayed coherence transfer spectra. The assignments provide the basis for the determination of the thus far unknown three-dimensional structure of C5a from nuclear Overhauser enhancement distance constraints.

Amino Acid Sequence↗

A recombinant hybrid anaphylatoxin with dual C3a/C5a activity.

By site-directed mutagenesis of a human complement factor C5a cDNA clone, we have designed a hybrid anaphylatoxin in which three amino acid residues in the C-terminal sequence of human C5a were exchanged to create the native C-terminal human C3a (hC3a) sequence Leu-Gly-Leu-Ala-Arg. This hybrid anaphylatoxin rC5a-(1-69)-LGLAR exhibited true C3a and C5a activity when tested in the guinea pig ileum contraction assay. Quantitative measurements of ATP release from guinea pig platelets revealed about 1% intrinsic C3a activity for this hybrid, while the C5a activity was essentially unchanged. Competitive binding assays confirmed that the rC5a-(1-69)-LGLAR mutant was able to displace radioiodinated rhC5a with a KI of approx. 40 nM and hC3a with a KI of approx. 3.7 microM from guinea pig platelets. Since the C-termini of both human C3a and C5a anaphylatoxins are known to interact with their respective receptors, we conclude that the same peptidic sequence, LGLAR, is able to bind to and activate two different receptors, the C3a receptor as well as the C5a receptor. This clone provides a novel tool for the identification of further receptor-binding residues in both anaphylatoxins, since any mutants may be tested for altered C3a and C5a activity simultaneously.

Adenosine Triphosphate↗

[Complement fragments in patients with bronchial asthma].

In this study, we investigated the pharmacological reactions induced by ibudilast to the complement system with the aim of clarifying the functional relation of the complement system to allergic reactions and pathology in patients with bronchial asthma. Complement hemolytic activities (CH50 and ACH50), complement profile, anaphylatoxins (C3a and C5a) and complement fragments (Bb, iC3b and C4d) were measured in 20 patients with bronchial asthma. One of antiasthmatic activities induced by ibudilast was concluded to be brought about though inactivation of the alternative complement pathway working on type III allergic reaction. Ibudilast increased the complement fragment Bb in the patients' plasma with the fairly controlled bronchial asthma. This increase in circulating Bb was suspected to be a result of inactivation of intermediate complement complexes, for example C3b.Bb.P, because the amounts in plasma of C3 and C5 showed no changes, while those of factor, B, P, H and I were decreased by ibudilast administration in patients with fairly controlled bronchial asthma. This antiasthmatic ability of ibudilast was restrained in those patients whose peripheral leukocytopenia was advanced before ibudilast administration, and in those whom ibudilast did not provoke an increase in the plasma level of iC3b, or did not prevent the serum level of C5 from increasing. In those unfairly controlled cases, enough anaphylatoxins, especially C5a might be produced to make the margination of peripheral neutrophils to the lung and increase CR3 on neutrophils binding with iC3b.

Adult↗

The use of membrane translocating peptides to identify sites of interaction between the C5a receptor and downstream effector proteins.

The complement fragment C5a is a potent leucocyte chemoattractant and activator, mediating its effects through a G-protein-coupled receptor. Whilst the C-terminal domain of this receptor has been shown to be essential for receptor desensitization and internalization, it is not known which domains couple to the receptor's heterotrimeric G proteins. In this report we have used a membrane translocating sequence (MTS) to examine the effects of the four intracellular domains of the human C5a receptor (C5aR) on the receptor's signalling via G(alphai) family heterotrimeric G proteins in intact RBL-2H3 cells. The results indicate that all of the intracellular domains couple to downstream signalling, with the proximal region of the C terminus being a major binding site and intracellular loop 3 playing a role in G protein activation or receptor desensitization.

Amino Acid Sequence↗

Effects of anti-C5a antibodies on human polymorphonuclear leukocyte function: chemotaxis, chemiluminescence, and lysosomal enzyme release.

Previous investigation has demonstrated that in vivo complement activation can produce acute lung injury. Complement component C5a has been implicated as a key factor in this damage. In addition, C5a is thought to play a central role in mediating polymorphonuclear leukocyte (PMN) function. Studies suggest that administering antibodies to C5a might play a role in attenuating lung injury in animal models of sepsis. To evaluate further the effects of anti-C5a antibodies, we compared the effects of anti-human C5a des-Arg monoclonal (MAb) and polyclonal (PAb) antibodies on PMN functions including chemotaxis, chemiluminescence, and lysosomal release. PMN chemotaxis was assayed in Boyden chambers using 0.5% zymosan-activated serum (ZAS) as a source of C5a and 0.5% normal human serum (NHS) as a control. PMN chemiluminescence was measured by scintillation counting using ZAS as a stimulant and NHS as control. In addition, the lysosomal marker enzyme beta-D-glucuronidase was spectrophotometrically determined to assess lysosomal release. The PMN chemotactic response to ZAS was completely abolished with MAb and PAb anti-C5a antibodies (p less than 0.01). Control antibodies had no effect on ZAS-stimulated chemotaxis. The anti-C5a MAb markedly inhibited PMN chemotaxis at concentrations ranging from 20 to 0.2 microgram/ml, and was approximately 30 times more potent than the PAb. ZAS-stimulated PMN chemiluminescence was markedly decreased in response to monoclonal antibodies to C5a. In contrast, the control antibody did not inhibit ZAS-stimulated PMN chemiluminescence. Anti-C5a antibodies also significantly attenuated the release of the lysosomal enzyme beta-D-glucuronidase from ZAS-stimulated PMN. Anti-C5a antibody treatment did not cause a significant lytic effect when incubated with PMN, as demonstrated by the absence of the cytoplasmic marker lactate dehydrogenase in the supernatant. These studies suggest that in states of complement activation, MAbs and PAbs may decrease PMN functions including chemotaxis, chemiluminescence, and lysosomal enzyme release.

Antibodies↗

C5a receptor and interleukin-6 are expressed in tissue macrophages and stimulated keratinocytes but not in pulmonary and intestinal epithelial cells.

The anaphylatoxin derived from the fifth component of the human complement system (C5a) mediates its effects by binding to a single high-affinity receptor (C5aR/CD88), the expression of which has been traditionally thought to be restricted to granulocytes, monocytes, macrophages (Mphi), and cell lines of myeloid origin. Recent immunohistochemical data suggested that human bronchial and alveolar cells express C5aR as well. To reexamine the tissue distribution of human C5aR expression, transcription of the C5aR gene was investigated in normal and pathologically affected human lung (bronchopneumonia, tuberculosis), large intestine (acute appendicitis, Crohn's disease), and skin (pyogenic granuloma, lichen planus) using in situ hybridization. In contrast to previous evidence, C5aR mRNA could not be detected in pulmonary or intestinal epithelial cells, whereas keratinocytes in inflamed but not in normal skin revealed detectable levels of C5aR transcripts. Additionally, it could be documented that only migrating Mphi express C5aR mRNA, whereas sessile Mphi in normal tissues and epithelioid/multinucleated Mphi found in granulomatous lesions do not. Because C5a has been demonstrated to upregulate the expression of interleukin (IL)-6 in human monocytes, we also studied IL-6 gene transcription in parallel to the C5aR. IL-6 mRNA was detectable in many tissue Mphi. Surprisingly, a tight co-expression of C5aR and IL-6 mRNA was observed in keratinocytes from lesions of pyogenic granuloma and lichen planus. These results point to an as yet unknown role for C5a in the pathogenesis of skin disorders beyond its well-defined function as a chemoattractant and activator of leukocytes.

Antigens, CD↗