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Production and functional analysis of rat CD59 and chimeric CD59-Crry as active soluble proteins in Pichia pastoris.

Crry (CR1-related gene/protein) is a rodent complement regulator that inhibits C3 convertases. CD59 is a conserved protein inhibitor active towards C8 and C9. We have previously produced rat Crry as a recombinant soluble (rs) protein in Pichia pastoris. In this study we produced functionally active rat rsCD59 and a chimeric rsCD59-Crry protein in P. pastoris. The GPI anchor addition site of rat CD59 (Asn-79) was replaced either by a stop codon to produce rsCD59, or with the sequence of the first five short consensus repeats of Crry to produce rsCD59-Crry. Proteins were generated by fermentation and purified by affinity chromatography on an anti-CD59 column. In a standard classical pathway haemolysis assay, all three rs proteins had inhibitory activity, with 50% inhibition at 0.5 microM (rsCrry and rsCD59-Crry) and 4.4 microM (rsCD59). In an assay examining inhibition of C5b-9, in which C5b-7 was first formed, followed by purified C8 and C9, rsCD59 and rsCD59-Crry were active with 50% inhibition at 0.8 microM (rsCD59-Crry) and 1.3 microM (rsCD59). The degree of inhibition was independent of whether the C8 and C9 were of rat or human origin. Therefore, we have produced rsCD59 and rsCD59-Crry in P. pastoris. The rsCD59 retains its inhibitory activity towards C5b-9, while rsCD59-Crry appears to have the combined activities of Crry and CD59. In a haemolytic assay, the inclusion of CD59 to Crry is of no additional benefit to Crry, which may illustrate the overall importance of the C3 convertase step. Yet, inclusion of Crry to CD59 increases the potency of CD59 towards C5b-9.

Animals↗

Activated complement C3: a potentially novel predictor of progressive IgA nephropathy.

In the search for a serologic marker of disease activity, we measured concentrations of activated C3 (actC3, that is, neoantigens developing after C3 activation on breakdown products), C4-C3 complexes and soluble C5b-9 (sC5b-9) in one or two plasma samples from adult patients with IgA nephropathy (IgAN, N = 50) or Henoch-Schönlein purpura (HSP, N = 4). As controls, 20 patients with non-immune renal disease, but comparable age, degree of proteinuria, renal dysfunction and prevalence of hypertension were studied. Compared to controls, actC3 levels were elevated in 30% of the patients with IgAN and one of the HSP patients. C4-C3 complexes were elevated in only 8% of the IgAN patients, and sC5b-9 levels were within the control range in all IgAN and HSP patients. In IgAN patients with elevated actC3 levels, proteinuria and hematuria were more pronounced than in those with normal levels. Elevated plasma concentrations of actC3 at the first presentation correlated with subsequent deterioration of renal function both in patients with initially normal and already impaired renal function (r = -0.56, N = 44, P = 0.003). The five IgAN patients with elevated actC3 on both occasions of obtaining plasma showed the most rapid loss of renal function. We conclude that mainly alternative pathway complement activation can be demonstrated in patients with IgAN and HSP. In IgAN patients the presence of complement activation is associated with more severe renal disease. Further studies are warranted to examine the clinical usefulness of actC3 as a predictor of the subsequent course of IgAN.

Adolescent↗

Glomerular clusterin is associated with PKC-alpha/beta regulation and good outcome of membranous glomerulonephritis in humans.

Mechanisms for human membranous glomerulonephritis (MGN) remain elusive. Most up-to-date concepts still rely on the rat model of Passive Heymann Nephritis that derives from an autoimmune response to glomerular megalin, with complement activation and membrane attack complex assembly. Clusterin has been reported as a megalin ligand in immunodeposits, although its role has not been clarified. We studied renal biopsies of 60 MGN patients by immunohistochemistry utilizing antibodies against clusterin, C5b-9, and phosphorylated-protien kinase C (PKC) isoforms (pPKC). In vitro experiments were performed to investigate the role of clusterin during podocyte damage by MGN serum and define clusterin binding to human podocytes, where megalin is known to be absent. Clusterin, C5b-9, and pPKC-alpha/beta showed highly variable glomerular staining, where high clusterin profiles were inversely correlated to C5b-9 and PKC-alpha/beta expression (P=0.029), and co-localized with the low-density lipoprotein receptor (LDL-R). Glomerular clusterin emerged as the single factor influencing proteinuria at multivariate analysis and was associated with a reduction of proteinuria after a follow-up of 1.5 years (-88.1%, P=0.027). Incubation of podocytes with MGN sera determined strong upregulation of pPKC-alpha/beta that was reverted by pre-incubation with clusterin, serum de-complementation, or protein-A treatment. Preliminary in vitro experiments showed podocyte binding of biotinilated clusterin, co-localization with LDL-R and specific binding inhibition with anti-LDL-R antibodies and with specific ligands. These data suggest a central role for glomerular clusterin in MGN as a modulator of inflammation that potentially influences the clinical outcome. Binding of clusterin to the LDL-R might offer an interpretative key for the pathogenesis of MGN in humans.

Adult↗

Characterization of transgenic pigs expressing functionally active human CD59 on cardiac endothelium.

The critical shortage of human donor organs has generated interest in the potential for porcine to human xenotransplantation. The initial immunological barrier to xenotransplantation is hyperacute rejection, which is mediated by xenoreactive antibodies and complement, and results in rapid and irreversible tissue destruction. While endogenous complement regulatory proteins (CRPs) protect cells from injury caused by autologous complement, they are relatively species specific and most likely ineffectual in this setting. This has led to the hypothesis that expression of human CRPs in transgenic pigs may affect susceptibility to complement-mediated tissue injury in a porcine-to-human xenograft. Using specific lines of transgenic pigs that express low levels of human CD59, a CRP that acts at the terminal stage of the complement cascade, we present evidence that shows that the human CD59 protein inhibits membrane attack complex assembly and reduces tissue damage when the heart is transplanted to a baboon. Examination by immunohistochemistry of transgenic porcine hearts after transplantation revealed markedly reduced deposition of C5b and MAC, but a similar level of C3 deposition as compared with transplanted control hearts. This finding supports the concept that the species specific function of CRPs contributes to the humoral barrier to xenotransplantation and, given the low level of human CD59 protein expression in the porcine heart, argues that the human protein contributes a unique rather than an additive function in regulation of complement in a xenogeneic setting.

Animals↗

Recombinant soluble human complement receptor type 1 inhibits antisperm antibody- and neutrophil-mediated injury to human sperm.

The pathogenesis of antisperm antibody (ASA)-mediated infertility is postulated to be related in part to complement (C)-dependent sperm dysfunction in the female genital tract. We have previously demonstrated that C can be involved in ASA-mediated sperm injury by the deposition of activated C3 fragments and the assembly of terminal membrane attack complex (C5b-9) leading to C3-mediated sperm binding to neutrophils or C5b-9-mediated sperm motility loss. This study evaluated the protective effect of recombinant soluble C receptor type 1 (sCR1) on ASA-and C-mediated neutrophil/sperm interaction, neutrophil aggregation, and sperm motility loss. Motile sperm with or without neutrophils were incubated in the presence of 10% C-fixing ASA+ serum or ASA- control sera in the presence or absence of sCR1. After defined incubation periods, the following neutrophil and sperm parameters were evaluated: 1) neutrophil aggregation (by the flow cytometric pulse processing method), 2) sperm phagocytosis (by light microscopy), 3) the deposition of C3 cleavage fragments (C3b, iC3b, and C3d) on motile sperm (by immunofluorescence flow cytometry), and 4) the relation between sperm motility loss and sperm-bound C3d. Only the coincubation of neutrophils with sperm in the presence of C-fixing ASA+ sera resulted in marked neutrophil aggregation (20.5 +/- 0.26% vs. 2.4% +/- 1.6; p < 0.0001) and a concomitant increase in neutrophils containing ingested sperm (71 +/- 5.8% vs. 3.5%; p < 0.0001). Soluble CR1 inhibited ASA- and C-mediated neutrophil aggregation by 46% and sperm phagocytosis by 57%. Motile sperm incubated with C-fixing ASA- sera showed a time-dependent increase in the binding of C3 fragments as detected by flow cytometry using anti-iC3b neoantigen, anti-C3c, and anti-C3d monoclonal antibodies (mAbs). A negative correlation (r2 = -0.930; p < 0.001) was found between the increase in sperm-associated C3d fluorescence and the percentage motile sperm in the presence of ASA- sera. Soluble CR1 (200 micrograms/ml) maximally inhibited the binding of anti-C3b, anti-C3c, and anti-C3d mAbs to sperm by 96%, 83%, and 72%, respectively. Thus, sCR1 abrogated the binding of C3 fragments to human sperm and fully protected sperm from C5b-9-mediated sperm immobilization. These findings suggested the therapeutic potential of sCR1 as an intravaginal pharmacophore to prevent C-dependent sperm dysfunction and related inflammatory events in the female genital tract.

Acrosome↗

Human complement in the arachidonic acid transformation pathway in platelets.

Arachidonate-mediated release of 14C serotonin and thromboxane B2 (TXB2) is significantly enhanced in the presence of complement. Only purified complement components C5, C6, C7, C8, and C9 are required for this reactivity. No known activating mechanism of the classical or alternative pathway is required, nor is C3. In the absence of exogenously added complement, platelet membrane-bound complement components play an essential role in modulating arachidonate-mediated serotonin release. Incubation of platelet membranes with arachidonate and C5--C9 led to the production of dimers of the membrane attack complex (C5b--9) on the platelet surface. These macromolecular complexes were eluted from the platelet membrane and were identified physicochemically and morphologically. The possibility arises that C3 in association with C5--C9 is required for mobilization of the arachidonic acid from the phospholipid of the platelet membrane. Once the arachidonic acid is mobilized, C3 is no longer required, C5--C9 being sufficient to modulate this pathway leading to enhanced production of TXB2.

Animals↗

Domain structure, functional activity, and polymerization of trout complement protein C9.

The 3' region of trout C9 has been resequenced and found to differ from the previously published sequence (Stanley and Herz, EMBO J. 6:1951; 1987). In contrast to other sequenced C9 molecules, but in common with the other terminal complement components, trout C9 was found to contain an additional carboxy terminal thrombospondin domain. This domain does not restrict polymerization, as has been previously suggested (Stanley and Luzio, Nature 334:475; 1988), since alternative pathway activation of trout complement by rabbit erythrocytes lead to the formation of circular membrane attack complement lesions on the erythrocyte membrane. Although the trout C9 molecule is larger than human C9, the diameters of circular trout membrane attack complexes were approximately 30% smaller than their human counterparts. No lysis of erythrocytes bearing human C5b-7 or C5b-8 complexes was detected following incubation with trout serum containing EDTA, which suggests that trout C8 and C9 are unable to bind to human C7 and C8, respectively. Finally, trout and human serum were equally effective at killing the human serum-sensitive strain Salmonella minnesota Re595.

Amino Acid Sequence↗

Studies on demyelination in vitro: the requirement of membrane attack components of the complement system.

Anti-spinal cord antibodies (anti-SC) cause demyelination of well myelinated mouse cerebellum cultures in the presence of fresh serum. Heating the serum for 30 min at 56 degrees C abolishes the demyelinating activity. We studied the role of complement (c) in demyelination initiated by anti-SC in well myelinated mouse cerebellum cultures. Demyelination was assessed morphologically. The extent of demyelination was correlated to the dose of whole serum C as well as the dose of antibody. To evaluate the requirement of membrane attack components of C, C5b-C9, sister cultures were treated with antibody + C8 deficient human serum (C8D-HS) with and without purified human C8. Extensive demyelination was observed in C8-reconstituted cultures whereas antibody + C8D-HS did not demyelinate, indicating the essential requirement of C5b-8, and/or C5b-9. Extensively demyelinated cultures remyelinated when fresh medium was supplied, suggesting that the process of antibody and C-mediated demyelination is selective for myelin membrane in this system.

Animals↗

Inside-out vesicles prepared from complement lysed sheep red blood cells.

Antibody sensitized sheep red blood cells were lysed to 68% by diluted human serum. The ghosts were shown to undergo vesiculation induced by low ionic strength buffer and gentle shearing forces like osmotically lysed ghosts. About 45% of the vesicles derived from complement lysed ghosts (as referred to vesicle protein) remained floating on top of a linear 3-18% dextran T110 gradient during ultracentrifugation. Using antibodies as probes for sideness about 90% of the floating vesicles displayed an inside-out orientation. Floating inside-out vesicles bear a slightly reduced but significant number of C9 molecules on their inverted extracellular side of the membrane as compared to the (leaky or collapsed) vesicles banding in the gradient. This finding suggests that the floating is not due to a lack of C5b-9 (under the assumption that all C9 was bound to C5b-9). It is concluded that lysis with diluted human serum may result partly in ineffective C5b-9 complexes and/or in lesions with limited permeability which do not impair vesicle floating on top of polymer gradients.

Animals↗

Differential expression of complement proteins and regulatory decay accelerating factor in relation to differentiation of cultured human colon adenocarcinoma cell lines.

Self protection of host cells against inadvertent injury resulting from attack by autologous complement proteins is well reported for vascular epithelium. In intestinal epithelium, the expression of C complement proteins and regulatory proteins remains currently poorly reported. This study looked at the distribution of C complement proteins and regulatory decay accelerating factor (DAF) in four cultured human intestinal cell lines of embryogenic or colon cancer origins. C3 and C4 proteins and DAF were widely present in human colon adenocarcinoma T84, HT-29 glc-/+ cells compared with human embryonic INT407 cells. In contrast, no expression of C5, C5b-9, and CR1 was seen for any of the cell lines. Taking advantage of the Caco-2 cells, which spontaneously differentiate in culture, it was seen that the C3, C4, and DAF were present in undifferentiated cells and that their expression increased as a function of the cell differentiation. These results, taken together with other reports on the presence of C complement proteins and DAF in the intestinal cells infer that the expression of regulatory C complement proteins develops in parallel with the expression of C proteins to protect these cells against the potential injury resulting from the activation of these local C proteins. Moreover, the finding that the pathogenic C1845 Escherichia coli binds to the membrane bound DAF in the cultured human intestinal cells synthetising locally C proteins and regulatory C proteins supports the hypothesis that E coli could promote inflammatory disorders by blocking local regulatory protein function.

CD55 Antigens↗

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

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

Adult↗

Complement component C9-dependent cytosolic free Ca2+ rise and recovery in neutrophils.

The cytosolic free Ca2+ concentration in rat neutrophils was determined by ratiometric fluorometry and imaging of Fura-2. Transient elevations of cytosolic free Ca2+ concentration were provoked by addition of C9 to neutrophils pre-coated with C5b-8. The rate of rise of the cytosolic free Ca2+ concentration was dependent upon the concentration of C9. These changes in cytosolic free Ca2+ concentration occurred in the absence of cell lysis, since there was no release of Fura-2, and were the result of increased permeability to extracellular Ca2+. More than 96% of the rise in cytosolic free Ca2+ generation by C9 was dependent upon the presence of extracellular Ca2+, but did not occur via channels which were inhibited by the Ca2+ channel blocker SKF96365. The decrease in the permeability of the membrane to Ca2+ after C9 was not triggered by the rise in cytosolic free Ca2+. After attack by C9, individual neutrophils remained responsive to f-met-leu-phe, or further attack by C9, both producing Ca2+ transients. The recovery of the Ca2+ signal was consistent with the complement membrane attack complex generating a series of permeability thresholds in the plasma membrane. These data have implications for the understanding of the mechanisms underlying the inappropriate responsiveness of neutrophils at inflammatory sites.

Amino Acids, Diamino↗

Freeze-thaw activation of the complement attack phase: I. Separation of two steps in the formation of the active C--56 complex.

The activation of the attack phase of C, C5-C9, is generally assumed to be dependent on the enzymes of the C activation pathways which cleave C5 into C5b and C5a. C5b will then form a complex with C6 that binds to membranes and, in the presence of C7-C9, effects cell lysis. In contrast, however, a variety of physicochemical means was found to activate C5 + C6 independently of the convertases and without apparent generation of the C5a peptide. By freezing and thawing of C5 + C6 a hemolytic C--56 activity was generated: (C--56 ).f The activation proceeded in two steps: (1) during a preincubation period of the two components the time and temperature dependent formation of an activatable intermediate was observed and (2) the intermediate C--56 could then be endowed with hemolytic activity by freezing and thawing. The intermediate as well as the activated (C--56)f complex was separated from C5 and C6 by anion exchange chromatography. While the isolated intermediate was labile, the active product after freezing and thawing was stable.

Complement Activation↗

Effects of omega-3 fatty acids on complement-mediated glomerular epithelial cell injury.

To define the mechanisms by which fish oil protects rats with passive Heymann nephritis (PHN) from proteinuria in vivo, we investigated whether omega-3 fatty acid substitution of glomerular epithelial cells (GEC) in culture alters their susceptibility or response to complement-mediated sublethal injury. The results show that GECs can be cultured under conditions that effectively incorporate omega-3 or omega-6 fatty acids into membrane phospholipids without causing toxicity. Under these conditions, sublethal injury with anti-Fx1A and C5b-9 stimulated a 6.6-fold increase in TxA2 production by GECs substituted with arachidonic acid (AA, omega-6) but no increase was detected in eicosapentaenoic acid (EPA, omega-3) substituted cells. Sublethal cell membrane injury was of equal severity in both groups as measured by the release of preloaded biscarboxyethyl carboxyfluorescein and by the transepithelial flux of albumin. In addition, omega-3 and omega-6 fatty acid substituted cells showed similar increases in diacylglycerol mass in response to sublethal injury by C5b-9, suggesting that omega-3 incorporation did not limit phospholipid (PL) hydrolysis by PLC. From this we can conclude that the protective effect of fish oil in PHN does not appear to result from the preservation of GEC integrity but is likely related to changes in the production of lipid mediators.

Animals↗

Complement C5 and early oxygen kinetics during murine sepsis.

OBJECTIVES: Changes in oxygen consumption (VO(2)) and carbon dioxide production (VCO(2)) are common but poorly understood features of sepsis. The authors studied the role of complement C5 in the development of abnormal oxygen kinetics during sepsis in mice, arguing that as a pro-inflammatory event, complement activation might exacerbate disturbances in oxygen use during abdominal sepsis. METHODS: An open-circuit indirect calorimeter was used to measure VO(2), VCO(2), and respiratory exchange ratio during a seven-day median lethal dose (LD(50)) murine cecal ligation and puncture (CLP) model. RESULTS: CLP produced significant changes in oxygen kinetics within three hours of onset, although when the animals were stratified by seven-day survival, no difference in these abnormalities was seen between the survivors and the nonsurvivors. Genetic deficiency of C5 did not ameliorate the changes in oxygen utilization. Rather, the C5-deficient mice experienced more severe abnormalities in oxygen kinetics and greater mortality. Treating animals with anti-C5a antibodies at the time of injury had little effect on oxygen kinetics, indicating that C5b, rather than C5a, was predominantly acting to protect the mice during the first 24 hours of illness. CONCLUSIONS: These findings indicate that the primary contribution of C5 to oxygen kinetics during sepsis is salutary through the host defense conveyed by generation of C5b, rather than detrimental by worsening oxygen utilization via pro-inflammatory mechanisms.

Animals↗

Serum-resistant mutants of Escherichia coli O111 contain increased lipopolysaccharide, lack an O antigen-containing capsule, and cover more of their lipid A core with O antigen.

Escherichia coli strains of group O111 were characterized with respect to sensitivity to complement killing, amount of lipopolysaccharide and O antigen-containing capsule, and distribution of O antigen. All wild-type E. coli O111 strains were resistant to complement killing in the absence of specific antibody. Presensitization of strains with antibody to whole cells (OK antibody), followed by incubation in 50% pooled normal human serum as a source of complement, subdivided wild-type strains into three types: completely resistant, partially resistant, and sensitive. Completely and partially resistant mutants were isolated by cycles of serum killing, starting with one sensitive strain. Completely resistant mutants had no O antigen-containing capsule, but had 50% more lipopolysaccharide than did the parent, and this lipopolysaccharide had 30% fewer lipid A core molecules devoid of O antigen. Partially resistant mutants still had O antigen-containing capsule, but contained 40% more lipopolysaccharide than did the parent; the extent of coverage of lipid A core with O antigen remained unchanged. No correlations were found between outer membrane protein composition and the degree of serum resistance. Since the terminal membrane attack complex (C5b-9) must stably insert into a hydrophobic membrane site to effect killing, we conclude that both increased lipid A core and increased coverage of lipid A core with O antigen preclude access of C5b-9 to lethal sites on the cell surface.

Antigens, Bacterial↗

Expression of CD59, a regulator of the membrane attack complex of complement, on human astrocytes.

The present study demonstrates that human astrocytes synthesize and express CD59, a regulator of the membrane attack complex of complement. This was shown by flow cytometry following staining of astrocytes with MAb to CD59, and Western blotting of astrocyte lysates, which revealed the characteristic 18-23,000 M(r) band of CD59. Synthesis of CD59 by astrocytes was confirmed by detection of CD59 specific mRNA by polymerase chain reaction. A low level of C3 deposition occurred on astrocytes following exposure to autologous serum. CD59 may prevent subsequent damage from C5b-9 and protect astrocytes during inflammatory and infectious disorders of the nervous system.

Antigens, CD↗

Lytic rabbit IgG for tissue culture trypomastigotes of Trypanosoma cruzi alters the extent and form of complement deposition.

Infective and vertebrate stages of Trypanosoma cruzi are resistant to lysis by the alternative pathway of complement. To further elucidate the mechanism of complement evasion and to study how some immune sera render the infective stage sensitive to lysis, we compared the interaction of complement components C3 and C9 with the surface of complement susceptible, vector stage epimastigotes and vertebrate stage trypomastigotes of T. cruzi. Our studies showed that, upon incubation in human serum, complement resistant tissue culture trypomastigotes (TCT) bound five- to eightfold less C3 or C9 than complement sensitive epimastigotes (Epi). C3 bound to Epi is mainly in the hemolytically active C3b form, while TCT bear predominantly the hemolytically inactive iC3b fragment, which cannot participate in C5 convertase formation or lead to deposition of the lytic C5b-9 complex. Three- to sixfold more C3 and two- to threefold more C9 were deposited on TCT when lytic rabbit immune IgG with broad specificity was used to sensitize the parasites, and nearly one-half of bound C3 was present as C3b. In contrast, a comparison of three different sources of IgG from immune human serum showed a less clear correlation between the titer or specificity of anti-T. cruzi antibody, enhancement of C3 or C9 deposition, change in the form of bound C3, or killing. These results show that lytic rabbit IgG for T. cruzi changes the form and amount of bound complement components in anticipated fashion, but that human immune IgG does not give predictable changes in the extent or form of C3 or C9 deposition.

Animals↗