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gp 58/68, a parasite component that contributes to the escape of the trypomastigote form of T. cruzi from damage by the human alternative complement pathway.

A glycoprotein of apparent molecular weight 58,000 (unreduced)/68,000 (in its reduced form) (gp 58/68), which is one of the fibronectin/collagen receptors of Trypanosoma cruzi, was purified to homogeneity from the trypomastigote forms of the Tehuantepec and Y strains of the parasite. Purified gp 58/68 inhibited formation of cell-bound and fluid-phase alternative pathway C3 convertase in a dose-dependent fashion, as assessed using purified human complement components. Gp 58/68 differed from the human regulatory proteins H, DAF, MCP and CR1 and from previously reported regulatory proteins on the parasite membrane in that it was unable to enhance decay-dissociation of preformed alternative pathway C3 convertase sites, did not serve as a co-factor for I-mediated cleavage of C3b and had no inhibitory activity on the classical pathway convertases. The inhibitory effect of gp 58/68 was most likely dependent on an interaction of the protein with factor B rather than with C3b. Gp 58/68 provides trypomastigotes with an additional potential mechanism for escaping complement lysis by the human alternative pathway.

Animals↗

Activation of the alternative complement pathway due to resistance of zymosan-bound amplification convertase to endogenous regulatory mechanisms.

The surface of zymosan (Zy), by affording a protected microenvironment for C3b and the amplification convertase stabilized by properdin, P,C3b,Bb, shifts the alternative complement pathway from slow fluid phase turnover to the amplification phase of its expression. This mode of activation is in contradistinction to that of the classical pathway, which follows conversion of a proenzyme, Cl, to its active form, C1. Under conditions in which the control proteins, C3b inactivator (C3bINA) and beta1H, completely, inactivated C3b on the sheep erythrocyte intermediate, EAC4b,3b, the activity of C3b bound to Zy,ZyC3b, was diminished by only one-third. Further, when ZyC3b was converted to ZyC3b,Bb,P there was an additional point of deregulation in that the convertase was resistant to beta1H-mediated decay-dissociation while P,C3b,Bb on the sheep erythrocyte exhibited the usual susceptibility to beta1H. That Zy alone could indeed promote rapid C3 cleavage by the alternative pathway through assembly and protection of the amplification convertase on its surface was demonstrated with a mixture of alternative pathway proteins, C3,B,D,P, C3bINA, and beta1H, that had each been purified to homogeneity. Interaction of these proteins at one-tenth their relative serum concentrations with Zy permitted low-grade inactivation of C3 and B to advance to the level of amplification after a 15 min lag period. Because the reaction of the purified proteins proceeded spontaneously when either regulatory protein was deleted, the effect of Zy was attributed to deregulation rather than to conversion of one of the proteins to a specific initiating state. The alternative pathway, through the normal presence of D, interacts with a microbial surface, such as Zy, to amplify deposition of C3b by circumvention of endogenous regulatory mechanisms, thereby augmenting host defense.

Animals↗

Interaction of zymosan and of activated properdin with factor D-depleted guinea pig serum: implications for the mechanism of initial C3 cleavage via the alternative complement pathway.

Factor D of the alternative C pathway was specifically removed from guinea pig serum. The resulting serum reagent (RD) supported neither the formation of a C3-cleaving enzyme on zymosan (Z) nor the inactivation of C3 or of factor B in the presence of Z or activated properdin (P). Addition of purified D to RD restored these properties. Studies were limited amounts of purified D were added to RD with Z or P as activating substances, gave the following results: (1) Inactivation of B and of C3 occurs in the presence of minute amounts of D. (2) C3 inactivation is more efficient than B inactivation and proceeds even in the absence of detectable enzymatic B activation. (3) C3 cleavage at any D concentration tested is always accompanied by uptake of C3 fragments onto Z. With respect to initial C3 cleavage via the alternative C pathway these data suggest that the initiating reaction is D-dependent, very efficient in depositing C3 fragments on particulate activating substances such as Z and able to utilize factor B in an apparently uncleaved form.

Animals↗

Formation of the functional alternative pathway of complement by human monocytes in vitro as demonstrated by phagocytosis of agarose beads.

Native agarose beads (diameter 5-10 micron), activators of the alternative complement pathway, are slowly phagocytosed when incubated with human monocytes cultured under serum-free conditions. Agarose beads preincubated with monocyte cultures and then transferred to new cultures are more easily phagocytosed than native beads. These results indicate that the phagocytosis of agarose beads depends on opsonization of the beads by one or several substances of monocyte origin. By using antihuman C3 antibodies, trypsin treatment, and sodium dodecyl sulphate washing, we were able to demonstrate C3b and iC3b on the agarose beads. The molecules were covalently bound to the surface of the beads. We conclude that in vitro human monocytes produce and secrete the essential factors for activation and propagation of the alternative complement pathway (factors C3, B, D, H and I), which becomes evident with an external activator like agarose beads in the cultures. The activation of complement by agarose beads results in the attachment of C3b and iC3b to the surface of the beads, which are then phagocytosed by means of C3b and iC3b receptors on the monocytes.

Cell Communication↗

Development and application of an enzyme-linked immunosorbent assay for the quantitation of alternative complement pathway activation in human serum.

We have developed a new, specific, and highly sensitive enzyme-linked immunosorbent assay (ELISA) which quantitates activation of the alternative pathway in human serum, plasma, or on the surface of activators. The ELISA detects the third component of complement (C3b), proteolytic fragment of complement Factor B (Bb), and properdin (P) complex or its derivative product, C3b,P. In the method, activator-plasma mixtures, plasma containing an activated alternative pathway, or other samples are added to the wells of microtitration plates precoated with antibody to P. C3b, Bb,P or C3b,P complexes which become bound are quantitated by subsequently added, enzyme-labeled, anti-C3. The resulting hydrolysis of the chromogenic substrate is expressed as nanograms of C3b by reference to a C3 standard curve. In addition to absolute specificity for activation of the pathway because of the nature of the complex detected by the assay, the ELISA is highly sensitive and able to reproducibly detect 10-20 ng/ml of C3b,P complexes in serum. This value corresponds to 0.0015% of the C3 in serum. In a series of studies to validate the parameters of the ELISA, reactivity was found to be dependent on the presence of alternative pathway proteins, the functional integrity of the pathway, and on the presence of magnesium. Sheep erythrocytes were converted to activators by treatment with neuraminidase. By using a variety of activators, the kinetics of activation and the numbers of bound C3b molecules quantitated by the ELISA were very similar to those measured by C3b deposition. The ELISA also detected identical activation kinetics when MgEGTA-serum and a mixture of the purified alternative pathway proteins were used as sources of the pathway. ELISA reaction kinetics also correlated with the restriction index, a measure of alternative pathway-activating ability. These studies cumulatively validate the ELISA as a direct and quantitative assay for alternative pathway activation. The sensitivity of the ELISA has permitted its use to detect direct alternative pathway activation by several viruses. The ELISA has also shown that certain classical pathway activators trigger the amplification loop of the alternative pathway while others do not. In addition, stable ELISA reactive complexes appeared in the supernatant of mixtures of serum with certain, but not other activators. The ability of the ELISA to detect activation which has already occurred and the stability of the reactive complexes permits studies of clinical sera. Normal human sera (20) contained low levels (5-20 ng/ml) of ELISA-reactive complexes. A proportion of sera from individuals with the adult respiratory distress syndrome (9-10), typhoid fever (8-10), malaria (3-5), gram-negative sepsis (9 of 47), acute trauma and shock (6 f 25), and systemic lupus erythematosus (3 of 29) showed elevated levels of complexes reactive in the alternative pathway ELISA. In contrast, nine sera from patients with circulating C3 nephritic factor were not reactive in the ELISA.

Animals↗

Bactericidal activity of the alternative complement pathway generated from 11 isolated plasma proteins.

Exposure of E. coli K12 W1485 to the cytolytic alternative pathway assembled from the 11 isolated pathway proteins resulted in killing of the bacteria, as evidenced by loss of viability. Lysis of the bacteria required introduction of lysozyme into the reaction mixture. The time-course and dose dependency of bacteriolysis in the isolated system were identical to those in C4-depleted serum. The bacteriolytic activity of the pathway was highly dependent on the concentration of the pathway proteins and became insignificant at 1:16 physiological concentration. Electron microscopic visualization of killed and of lysed bacteria revealed numerous complement membrane lesions and partial disintegration of the outer phospholipid membrane. Scanning electron microscopy showed that killed bacteria were enlarged, partially collapsed and exhibited irregular surface protrusions. Lysed bacteria were fragmented and appeared polymorphic. This study demonstrates that the alternative pathway, in absence of immunoglobulins, has the potential or eradicating gram-negative bacteria.

Blood Bactericidal Activity↗

C5 convertase of the alternative complement pathway: covalent linkage between two C3b molecules within the trimolecular complex enzyme.

C5 convertase of the alternative C pathway is a complex enzyme consisting of three C fragments--one molecule of a major fragment of factor B (Bb) and two molecules of a major fragment of C3 (C3b). Within this C3bBbC3b complex, the first C3b binds covalently to the target surface, and Bb, which bears a catalytic site, binds noncovalently to the first C3b. In the present investigation, we studied the nature of the convertase that is assembled on E surfaces and obtained evidence that the second C3b binds directly to the alpha'-chain of the first through an ester bond rather than to the target surface. Thus, the alternative pathway C5 convertase could be described as a trimolecular complex in which Bb binds noncovalently to a covalently linked C3b dimer. We also obtained evidence that not only the second C3b but also the first C3b participates in binding C5, that is, covalently-linked C3b dimer acts as a substrate-binding site. Because of this two-site binding, the convertase has a much higher affinity for C5 than the surrounding monomeric C3b molecules. Based on this evidence, a new model of the alternative pathway C5 convertase is proposed. Covalent association of two subunits and the bivalent binding of the substrate are then common properties of the alternative and classical pathway C5 convertases.

Animals↗

Alternate complement pathway induction of aggregation and release of 5-hydroxytryptamine and adenosine diphosphate by rabbit platelets.

The present studies investigated patterns of rabbit platelet aggregation and release of 5-hydroxytryptamine (5HT) utilizing nine variables: three different types of challenge, soluble antigen and antibody (AG-AB), zymosan (Z), an agent known to activate the alternate complement pathway (ACP), and Z preincubated in lightly heparinized plasma so as to become coated with complement (ZC); three different types of platelet-rich plasma (PRP), lightly heparinized PRP in which both complement pathways are active, ethylene glycol tetraacetic acid-PRP (EGTA-PRP) in which only the ACP is active, and ethylene diamine tetraacetic acid PRP (EDTA-PRP), which inhibits both complement pathways; three different types of inhibitors, cobra venom factor (CoF), which causes activation of C3 proactivator (C3PA) to C3 activator (C3A) and fluid phase decomplementation of C3 and C5 through C9, adenosine monophosphate (AMP), a specific antagonist of ADP, and tosyl arginine methyl ester (TAME), an inhibitor thought to act not only on the first component of complement, but also on a platelet membrane site of mediating complement-induced platelet injury as well as on C3PAse. In heparinized PRP, both AG-AB and Z produced biphasic aggregation and prompt and extensive 5HT release. A brief lag period noted with both AG-AB and Z challenge was not observed with ZC challenge, indicating that this lag period represented time required for generation of the necessary complement-dependent membrane-injuring activity. Prior decomplementation by CoF entirely prevented both aggregation and release by either AG-AB or Z but by ZC, indicating first that fluid-phase ACP activation did not produce platelet injury, and second that ZC had on its surface an activity capable of producing immediate biphasic aggregation and prompt 5HT release without the further participation of later acting complement components. Both AMP and TAME eliminated the second phase of aggregation and diminished or eliminated 5HT release with all three challenges, suggesting that both inhibitors might be operative on similar or identical platelet membrane receptors mediating complement-dependent platelet injury. In EGTA-PRP, AG-AB and Z produced delayed monophasic aggregation and delayed and diminished 5HT release, whereas ZC produced immediate although monophasic aggregation but delayed and diminished 5HT release. This suggested that all three challenges were capable of producing ACP-mediated platelet injury.

Adenosine Diphosphate↗

The alternative pathway of complement in sheep during the course of infection with Trypanosoma congolense and after Berenil treatment.

Experimental T. congolense infections in sheep resulted in a striking decrease in parameters of the alternative complement pathway (ACP), ie. factor B, C3 and haemolytic complement activity (HA) initiated via the ACP. The levels of factor B, C3 and HA declined before, during and after the first wave of parasitemia which reached a peak at day 8. Levels of 20 to 25% of normal values (factor B) and 20% (C3, HA) persisted throughout the course of the infection. After Berenil treatment, when no parasites were detected in blood, their serum levels remained low. The returned to normal values about 8 (factor B) to 20 days (C3, HA) after trypanocidal treatment. Serum concentrations of factor B were significantly elevated in some, but not all sheep 6 days after infection with T. congolense. The sheep were tested for their potential state of immuno-modulation by immunization with Brucella abortus 4 days after trypanocidal treatment. In contrast to other sheep, the sheep which had shown early elevated serum factor B levels were found to express immune enhancement. It is suggested that there might be a positive correlation between the degree of enhanced serum levels of factor B at the early stage of infection and enhanced immune responsiveness.

Animals↗

A component of the medicinal herb ephedra blocks activation in the classical and alternative pathways of complement.

Extracts of the herb Ephedra sinica have long been used in traditional Chinese medicine for the treatment of, among other conditions, acute nephritis. In preliminary studies it was shown that extracts of ephedra caused inhibition of complement in vitro. We thus set out to isolate the active component(s) of this herb, to examine the complement-inhibiting capacity in sera from different species, and to characterize the mechanism(s) by which it inhibits complement. Aqueous extraction of the herb followed by fractionation using thin layer chromatography (TLC) demonstrated that complement-inhibiting activity resided within a single band, hereafter termed the complement-inhibiting component (CIC), which represents an as yet uncharacterized polyanionic carbohydrate molecule. TLC-purified CIC inhibited the classical complement pathway in all species tested (human, pig, guinea pig, rat and rabbit). Using erythrocyte intermediates and sera specifically depleted of individual components it was apparent that CIC inhibited C2. This finding was confirmed using purified human C2, CIC causing a dose-dependent loss of C2 haemolytic activity. At much higher doses, CIC also showed some inhibiting effect in the terminal pathway, and this was shown to be due to inhibition of C9. In the alternative pathway CIC also showed inhibitory activity, although its site of action in this pathway remains unresolved. In Chinese medicine the herb is taken orally, though no studies of complement levels in patients taking the herb have been reported. Preliminary data indicate that oral administration in rats causes a partial inhibition of serum complement activity. Given the current enthusiasm for complement inhibition as a therapy for inflammatory diseases, this non-toxic, naturally occurring agent might be of therapeutic value.

Animals↗

Serum haemolytic classical and alternative pathways of complement in infancy: age-related changes.

The haemolytic activity of complement was evaluated in the serum of healthy children from birth to 2 years of age using the kinetic method for the determination of the time needed to lyse 50% of target red cells (t 1/2). No sex-linked differences were observed in any of the age groups studied and the lowest lytic activity levels for both complement pathways were detected in neonates. The two pathways, however, showed different maturation patterns, i.e., lytic activity levels similar to those of adults were reached between the 1st and 3rd month of life (classical pathway) and around the 13th month (alternative pathway). In the age group of 7 to 24 months, the lytic activity of the classical pathway was higher than in adults. The present data permitted us to establish normal ranges of t 1/2 values for the classical and alternative pathways in serum of healthy neonates and children aged 1 to 24 months.

Age Factors↗

Defective activation of the alternative pathway of complement in patients with homozygous C2 deficiency: studies in two unrelated families.

Selective homozygous deficiency of the second component of complement, C2, with increased susceptibility to infection was detected in five children of two unrelated families. Because the haemolytic activity of the alternative complement pathway (AP) was in the low normal range, we evaluated the AP activation pattern. Serum levels of factor B measured immunochemically and the haemolytic function of factor B were low normal. Levels of C3d were not increased. Activation products of factor B were undetectable indicating the absence of in vivo activation of AP. Activation of C3 in vitro by activators of the AP (zymosan A and lipopolysaccharide) was profoundly deficient in homozygous C2 deficiency while heterozygous carriers exhibited intermediate values. There was no correlation between serum levels of factor B and in vitro C3 activation. We conclude that defective AP activation may contribute to increased susceptibility to bacterial infections in some patients with homozygous C2 deficiency.

Child↗

Lack of a requirement for the Fc region of IgG in restoring pneumococcal opsonization via the alternative complement pathway in sickle cell disease.

Children with sickle cell disease have reduced serum opsonization of Streptococcus pneumoniae. Our previous studies have suggested that opsonization mediated by both the alternative and classic complement pathways is reduced because of a deficiency of IgG antibodies to pneumococcal capsular polysaccharide. This study compares the ability of purified IgG (fractionated from goat antiserum to pneumococcal capsular polysaccharide) and F(ab')2 fragments of the IgG preparation to restore alternative pathway-mediated opsonization of S. pneumoniae to sera from patients with sickle cell disease. Both the whole IgG preparation and F(ab')2 fragments of this preparation restored opsonization to normal levels and concomitantly increased alternative pathway-mediated deposition of C3 onto the pneumococci to a supranormal level. These results suggest that enhancement of opsonization is mediated by the F(ab')2 region of IgG antibody to capsular polysaccharide and is associated with an increase in complement deposition on the bacterial surface.

Adolescent↗

Alternative pathway complement activation:a possible mechanism inducing skin lesions in benign gonococcal spesis.

In order to elucidate the pathogenesis of the skin lesions in 'benign gonococcal sepsis' direct immunofluorescence of an early macular lesion and routine histopathology of a mature papulopustular lesion in a patient with septic gonococcal dermatitis have been performed. Histopathology of the mature skin lesion revelaed a pattenr of 'allergic vasculitis'. Direct immunofluorescence showed exclusively deposits of C3 around and within the capillaries and in the basement membrane zone. No specific IgG, IgM, IgA or C4 deposits could be demonstrated. This, together with serological findings and reports from the literature, suggests an important pathogenetic function for complement, activated through the alternative pathway by means of gonococcal endotoxic lipopolysaccharide, in the pathogenesis of the skin lesions in benign gonococcal sepsis.

Adult↗

Requirements for beta1H globulin and C3b inactivator in the control of the alternative complement pathway in human serum.

Using beta1H-depleted and C3b inactivator (C3b1NA)-deficient sera we have investigated the regulatory roles of beta1H and C3bINA in the turnover of the alternative pathway. Spontaneous turnover of C3 and factor B occurred in both beta1H-depleted and C3bINA-deficient sera. In neither case was C3d generated. Prevention of activation could be achieved by the addition of the missing protein, but not by increasing the concentration of the remaining protein. Thus both beta1H and C3bINA must be present simultaneously to prevent spontaneous activation of the alternative pathway.

Beta-Globulins↗

Alternative pathway for complement activation triggered by human liver plasma membranes.

Liver plasma membranes (LPM) prepared from normal hepatocytes by centrifugation in sucrose discontinuous gradient, are capable of haemolysing PNH-like cells in the presence of complement or complement plus EGTA or MG2+ ions. In contrast, EDTA or Ca2+ ions inhibit the lysis. The total complement lytic activity is reduced by some 40% when fresh serum is incubated with LPM, whereas the total amount of C4 remains constant. The cross-immunoelectrophoresis studies of fresh serum incubated with LPM demonstrate the appearance of C3 breakdown products, which suggests the activation of the alternative complement pathway. In contrast, the sucrose test, which proceeds mainly through the classical complement pathway, is inhibited by LPM. The possible role of complement in liver disease is discussed.

Cell Membrane↗

Mouse Crry/p65 is a regulator of the alternative pathway of complement activation.

Like man, mouse has evolved a unique set of regulatory proteins which provide protection from complement-mediated damage to self membranes. The recently described mouse protein Crry/p65 has been shown to inhibit classical complement pathway C3 deposition on cell membranes in which it is expressed. In two distinct experimental systems, we now further delineate the regulatory activity of Crry/p65 and demonstrate its inhibitory effect on alternative complement pathway C3 activation. First, significant inhibition of mouse alternative pathway C3 deposition was demonstrated on neuraminidase-treated human K562 cells expressing recombinant Crry/p65. Second, using a baculovirus technique, recombinant Crry/p65 was synthesized as a soluble molecule and then purified. This molecule was found to inhibit mouse C3 deposition on the surface of zymosan, a potent alternative complement pathway activator. These studies, combined with our earlier findings, demonstrate that Crry/p65 can regulate both the classical and alternative complement pathways. Crry/p65 must, therefore, exert its effects prior to, or at the level of, the C3 convertases, in a fashion similar to that of human membrane cofactor protein and/or decay-accelerating factor. These studies provide further proof of the hypothesis that Crry/p65 is an evolutionarily unique, complement regulatory protein which has developed in mouse.

Animals↗

Evidence for different requirements in physical state for the interaction of lipopolysaccharides with the classical and alternative pathways of complement.

The influence of the state of aggregation of lipopolysaccharides upon their ability to interact with serum complement via either the classical or alternative pathway was studied. The anticomplement properties of two chromatographically distinct fractions of a phenol-extracted lipopolysaccharide isolated from Serratia marcescens were assessed by means of the standard sheep erythrocyte hemolytic assay and an alternative pathway-selective kinetic assay using rabbit erythrocytes. Both the high molecular weight PI fraction and the lower molecular weight PII fraction exerted anti-complement activity as determined in the sheep erythrocyte assay. Conversion of fractions PI and PII to their more soluble triethylamine salt forms resulted in a decrease in sedimentation coefficients and a corresponding loss of anticomplement activity. Further, the anticomplement activity of fractions PI and PII in the sheep erythrocyte assay was inhibited by polymyxin B, indicating a role for the lipid A region. Unlike the PII fraction, only the PI fraction can activate serum complement via the alternative pathway. This activity is not inhibited by polymyxin B, indicating that the response is not lipid A-mediated. Significantly, solubilization of the PI fraction with triethylamine had no effect on its ability to activate the alternative pathway. These studies clearly demonstrate that the interaction between lipopolysaccharides and serum complement is influenced by the state of lipopolysaccharide aggregation. However, this appears to be the case for lipopolysaccharide activation of the classical pathway but not of the alternative pathway.

Adult↗