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Structural superfamilies of the complement system.

The complete primary structures of nearly all the components, regulatory proteins and membrane-associated receptors of the complement system have now been determined by a combination of protein and cDNA sequence analysis. Based on homologies at the amino acid sequence level, three distinct classes of protein domain are evident. They are the C3, C4, C5 family; the serine proteases, and the short consensus repeat family, which is characterized by the widespread occurrence of a novel 60 amino acid repeat structure. A particular feature of the repeat structures in this last family is that they form the structural and functional domains of a range of complement proteins of distinct function, all of which interact with C3b and/or C4b. Detailed analysis of the gene structures of some of these proteins has been carried out. The results have shown that the intron/exon organization of the serine protease domains of factor B and C2 are related to the classical serine proteases at the DNA level. Each short consensus repeat in factor B, C2, C4b-binding protein, murine factor H and also the functionally unrelated interleukin-2 receptor in all except one case is encoded exactly by a single exon, which defines this novel structural unit at the DNA level.

Amino Acid Sequence↗

The C2 domain of phosphatidylserine decarboxylase 2 is not required for catalysis but is essential for in vivo function.

Phosphatidylserine decarboxylase 2 (Psd2p) is currently being used to study lipid trafficking processes in intact and permeabilized yeast cells. The Psd2p contains a C2 homology domain and a putative Golgi retention/localization (GR) domain. C2 domains play important functions in membrane binding and docking reactions involving phospholipids and proteins. We constructed a C2 domain deletion variant (C2Delta) and a GR deletion variant (GRDelta) of Psd2p and examined their effects on in vivo function and catalysis. Immunoblotting confirmed that the predicted immature and mature forms of Psd2(C2Delta)p, Psd2(GRDelta)p, and wild type Psd2p were produced in vivo and that the proteins localized normally. Enzymology revealed that the Psd2(C2Delta)p and Psd2(GRDelta)p were catalytically active and could readily be expressed at levels 10-fold higher than endogenous Psd2p. Both Psd2p and Psd2(GRDelta)p expression complemented the growth defect of psd1Deltapsd2Delta strains and resulted in normal aminoglycerophospholipid metabolism. In contrast, the Psd2(C2Delta)p failed to complement psd1Deltapsd2Delta strains, and [(3)H]serine labeling revealed a severe defect in the formation of PtdEtn in both intact and permeabilized cells, indicative of disruption of lipid trafficking. These findings identify an essential, non-catalytic function of the C2 domain of Psd2p and raise the possibility that it plays a direct role in membrane docking and/or PtdSer transport to the enzyme.

Amino Acid Sequence↗

Bacterial lipoteichoic acid sensitizes host cells for destruction by autologous complement.

Lipoteichoic acids (LTA) released by gram-positive bacteria can spontaneously bind to mammalian cell surfaces. In the present study, erythrocytes (E) sensitized with pneumococcal LTA (LTA-E) were used as a model system to determine if LTA could render host cells susceptible to damage by autologous complement. Complement (C)-mediated lysis of LTA-E from normal rats and normal humans occurred when these cells were incubated in their respective autologous sera in vitro. In addition, when LTA-E from a C2-deficient human and from C4-deficient guinea pigs were incubated in their autologous sera, there was significant lysis in vitro, demonstrating a role for the alternative pathway. The in vivo survival of 51Cr-labeled autologous LTA-E was also studied. Only 2.9% of autologous LTA-E remained in the circulation of normal rats after 90 min. In contrast, 31.2% of autologous LTA-E remained in the circulation of rats depleted of C3. Intravascular hemolysis accounted for the clearance of LTA-E in the normal rats, whereas liver sequestration was responsible for clearance in the C3-depleted rats. These results demonstrate that LTA can render the host's cells susceptible to damage by its own complement system, establishing this as a possible mechanism of tissue damage in natural bacterial infections.

Animals↗

[Studies on protective monoclonal antibodies to Leishmania donovani].

Kala-azar is increasing in incidence in some endemic areas of China, such as provinces of Sichuan and Gansu. Monoclonal antibodies have been shown to interfere with the cutaneous leishmaniasis infection in the experimental animals. We have now raised McAb against membrane antigen of promastigotes of L. donovani canine isolate (the pathogen of visceral leishmaniasis). In this paper we report 3 McAb which inhibit the growth of promastigotes in vitro culture by incorporation of 3H-thymine deoxyriboside, such as McAb 2B12-A8, 2H6-E3, in the presence of complement, showing strong inhibiting effects with a decrease in incorporation of 3H-TdR, 94-99.3% rate of inhibition, whereas the inhibition rate induced by McAb 1B1-C2 fluctuated in a range of 68-95%, which is identical with the results of macrophage infection inhibition test by the same McAb, 61-87%. The results of ultrastructural localization of L. donovani antigen by protective McAb 2H6-E3 with immunogold technique showed the gold particles, in clumps, widely distributed on the outer side of promastigotes membrane. According to the high density of localized gold particles, it is suggested that this antigen is abundant on the plasma membrane.

Animals↗

Activation of the alternative complement pathway in normal human serum by Loa loa and Brugia malayi infective stage larvae.

Infective stage larvae (L3) of Loa loa and Brugia malayi upon in vitro incubation with normal human serum activated the alternative complement pathway. C3 conversion products were detected on larval cuticles by eosinophil adherence and by immunofluorescence with C3c antiserum. No evidence for cuticle binding of IgG, IgA, IgM, Clq, or C4 was found by immunofluorescence. L3-induced C3 activation was inhibited by 10 mM EDTA but unaffected by 10 mM Mg++-EGTA. Human sera deficient in C2, C4, or C6 incubated with L3 resulted in C3 activation. However, sera treated with zymosan or heated for 1 h, 56 degrees C were unreactive with L3. Immunoelectrophoresis of fresh serum exposed to L3 for 1 h at 37 degrees C showed C3 cleavage products. The results indicate that these nematode L3 activate the alternative complement cascade via cuticular surface components. Larval viability was unaffected by complement activation or by adherence of eosinophils.

Animals↗

Immune complex mediated activation of the classical complement pathway.

The activation of classical C pathway by immune complexes depends on the binding and activation of C1, the first component of C. The Ig in the complex must be of the right class and in the right configuration to accomplish the conversion of precursor (zymogen) C1s to C1s, the active enzyme, whose substrates are C4 and C2. The primary question discussed in this paper is evidence that indicates that epitope distribution and density is a major factor in controlling the configuration of antibodies which in turn controls the activation of bound C1. This evidence confirms earlier findings that binding of C1 is a necessary but not sufficient condition for activating C1.

Animals↗

Reduced alternative complement pathway control protein levels in anorexia nervosa: response to parenteral alimentation.

Serum levels of 16 proteins, including 11 component and control proteins of the complement system were determined before and after nutritional repletion in five female patients with severe malnutrition secondary to anorexia nervosa. Before parenteral alimentation significantly decreased serum levels were found for IgG, IgM, transferrin, Clq, C2, C3, factor B, beta lH, C3b inactivator, properdin, and C4 binding protein. A significant increase in posttreatment serum levels compared with pretreatment levels were found for transferrin, C3, factor B, beta lH, and C3b inactivator. Of the proteins measured, the C3b amplification loop control and component proteins, beta lH, C3b inactivator, C3, and factor B rose to the normal range in response to therapy most rapidly. In the absence of an acute phase reaction, these proteins appear to be particularly good indices of malnutrition and its response to therapy.

Adolescent↗

Isolation and characterization of a low molecular weight complement inhibitor present in normal human serum.

Normal human serum and urine were found to contain a low molecular weight complement inhibitor (LMWI). LMWI was separated from serum by dialysis in membrane tubing or through an Amicon PM10, and then concentrated on an Amicon UM05 membrane. On Bio-Gel P-2 filtration, LMWI was eluted just after the column calibration marker, stachyose hydrate (6666 . 6 daltons), and was estimated to be 500 daltons. Both pathways of complement activation were susceptible to modulation by LMWI. Addition of LMWI reduced the haemolysis of sheep erythrocytes sensitized with antibody, rabbit erythrocytes and guinea-pig erythrocytes bearing human C3 and C4. Formation of EAC142 from EAC14 and guinea-pig C2 was blocked, indicating a failure to generate the classical pathway C3 convertase: however, the lysis of preformed EAC142 was not suppressed. Conversion of factor B and C3 did not occur when LMWI was present during zymosan activation of serum. This indicates that the inhibitor either prevented, or acted at a step prior to, the cleavage of factor B by factor D. LMWI did not prevent formation of erythrocyte C567 intermediates nor their subsequent lysis by C8 and C9. Thus, serum contains a 500-dalton inhibitor which modulates the activities of both complement pathways at an early step in each of the activation sequences. LMWI may serve as a regulator of the inflammatory process by suppressing C3 convertase formation and generation of complement-derived, biologically reactive molecules.

Blood↗

Influence of the conceptuses and the maternal pituitary on the distribution of multiple components of serum relaxin immunoactivity during pregnancy in the rat.

Relaxin isolated from the ovaries of pregnant rats has a mol wt of 6,500; however, relaxin immunoactivity (RI) in the peripheral serum of pregnant rats is associated with three major components. Essentially all RI is associated with a large component (C1, mol wt approximately 60,000) on day 15 of pregnancy (day 15), but the distribution shifts progressively so that about 50% of the RI is associated with two smaller components (C2, mol wt approximately 13,000; C3, mol wt approximately 6,500) by day 19. The present study examined factors that might influence the distribution of RI among these three components. The distribution of RI in sera from ovarian vein and abdominal aorta on days 16 and 19 was compared after gel filtration through Sephacryl S-200. The distribution of RI among the three major components was similar for sera collected from the two sources. It is concluded that the progressive shift in the distribution of RI among the three major components during late pregnancy is attributable to dynamic changes in their secretion, rather than peripheral metabolism of relaxin after its release from the ovary. This study also determined the influence of the conceptuses and the maternal pituitary on the distribution of RI. The distribution of RI in peripheral sera obtained on days 16 and 19 from intact and hypophysectomized full complement-bearing rats as well as pituitary-intact and hypophysectomized one conceptus-bearing rats was compared after filtration through Sephacryl S-200. The shift in distribution of RI from C1 to smaller components C2 and C3 was markedly attenuated in rats bearing one conceptus, whereas hypophysectomy was without effect. It is concluded that the progressive shift in the distribution of serum RI among the three major components during late pregnancy is influenced by the number of conceptuses but not the maternal pituitary.

Animals↗

Proteolytic activities of two types of mannose-binding lectin-associated serine protease.

Mannose (or mannan)-binding lectin (MBL) is an oligomeric serum lectin that plays a role in innate immunity by activating the complement system. In human, two types of MBL-associated serine protease (MASP-1 and MASP-2) and a truncated protein of MASP-2 (small MBL-associated protein; sMAP or MAp19) are complexed with MBL. To clarify the proteolytic activities of MASP-1 and MASP-2 against C4, C2, and C3, we isolated these two types of MASP in activated forms from human serum by sequential affinity chromatography. On an anti-MASP-1 column, MASP-2 passed through the column in the presence of EDTA and high salt concentration, whereas MASP-1 was retained. Isolated MASP-1 and MASP-2 exhibited proteolytic activities against C3 and C4, respectively. C2 was activated by both MASPs. C1 inhibitor (C1 INH), an inhibitor for C1r and C1s, formed equimolar complexes with MASP-1 and MASP-2 and inhibited their proteolytic activities.

Binding, Competitive↗

Activation of complement by pathogenic and nonpathogenic Entamoeba histolytica.

Previous studies had demonstrated that strains of Entamoeba histolytica isolated from patients with colitis or amebic liver abscess were resistant to complement-mediated killing, whereas strains from asymptomatic patients were readily lysed by non-immune serum. Both serum-sensitive and serum-resistant strains of E. histolytica depleted complement rapidly as assessed by CH50, C3, and C7, and C5-9 hemolytic activities. Activation of the alternative pathway was important in lysis of nonpathogenic strains, as demonstrated by lysis by NHS (60.9 +/- 15.6%) and NHS + 5 mM EGTA (59.3 +/- 4.5%) as well as by C4-deficient guinea pig serum (72.8 +/- 7.1%) and C2-deficient human serum (64.4 +/- 11.1%), but not by NHS + 5 mM EDTA. Classical pathway activation also occurs as both pathogenic and nonpathogenic strains deplete greater than 98% of C4 activity, although it is not necessary for lysis. Pathogenic strains are not lysed by either the classical or the alternative pathway. These results suggest that pathogenic strains of E. histolytica activate complement but are able to evade an important host defense, complement-mediated lysis.

Animals↗

C4 DNA RFLP reference typing report.

One hundred and three individual DNA samples (including 23 families) were studied at the gene level during the reference typing of the fourth component of human complement at the VIth Complement Genetics Workshop in Mainz (1989). All samples were analyzed with the restriction enzyme Taq I and with two DNA probes recognizing the 5' ends of both C4 genes and the two adjacent 21-hydroxylase genes. This RFLP is informative for the number of C4 genes as well as for their respective gene size. We found a high degree of variation regarding the number of C4 genes, i.e. haplotypes with 1-3 structural C4 genes of 16 or 22 kb size. By correlating these haplotypes to the complotypes obtained by protein typing for C2, BF and C4, it became evident that only minor variation of the C4 gene structure within a given complotype is present.

Alleles↗

Prevalence of hereditary properdin, C7 and C8 deficiencies in patients with meningococcal infections.

High incidence of hereditary complement (C) deficiencies was found among 101 patients who had a meningococcal disease. This study revealed 11 non-related patients with complete C deficiency: five deficient in C7, three in C8, two in properdin and one in C2. Additional C-deficient individuals, most of them with no history of severe bacterial infections, were detected in family studies. The C8-deficient patients were found to have a selective deficiency of the C8-beta subunit and a reduced expression of the alpha/gamma subunit. Only a few families with properdin deficiency have been described so far. However, it is likely that frequent analysis of the activity of the alternative C pathway in survivors of severe bacterial infections will disclose numerous properdin-deficient patients. All our C7-, C8- and properdin-deficient patients are Sephardic Jews whose families originated from Morocco, Yemen (C7 and C8 deficient) or Tunisia (properdin deficient). This and other findings indicate that the type of complement abnormality found in association with meningococcal infections varies with the ethnic origin of the patient.

Adolescent↗

Characterization of Escherichia coli men mutants defective in conversion of o-succinylbenzoate to 1,4-dihydroxy-2-naphthoate.

Four independent menaquinone (vitamin K2-deficient mutants of Escherichia coli, blocked in the conversion of o-succinylbenzoate (OSB) to 1,4-dihydroxy-2-naphthoate (DHNA), were found to represent two distinct classes. Enzymatic complementation was observed when a cell-free extract of one mutant was mixed with extracts of any of the remaining three mutants. The missing enzymes in the two classes were identified by in vitro complementation with preparations of OSB-coenzyme A (CoA) synthetase or DHNA synthase isolated from Mycobacterium phlei. Mutants lacking DHNA synthase (and therefore complementing with M. phlei DHNA synthase) were designated menB, and the mutant lacking OSB-CoA synthetase (and therefore complementing with M. phlei OSB-CoA synthetase) was designated menE. The menB mutants produced only the spirodilactone form of OSB when extracts were incubated with [2,3-14C2]OSB, ATP, and CoA; the OSB was unchanged on incubation with an extract from the menE mutant under these conditions. Experiments with strains lysogenized by a λ men transducing phage (λG68) and transduction studies with phage P1 indicated that the menB and menE genes form part of a cluster of four genes, controlling the early steps in menaquinone biosynthesis, located at 48.5 min in the E. coli linkage map. Evidence was obtained for the clockwise gene order gyrA....menC-E⃰ -B-D, where the asterisk denotes the uncertain position of menE relative to menC and menB. The transducing phage (λG68) contained functional menB, menC, and menE genes, but only part of the menD gene, and it was designated λ menCE⃰ B(D).

Chromosome Mapping↗

Inherited complement component deficiencies in membranoproliferative glomerulonephritis.

Anecdotal reports of complement component deficiencies in patients with immune complex disease led to a systematic study of the levels of seven complement components in serum specimens from 178 patients with glomerulonephritis and 163 normal subjects. Deficiencies were found with significantly higher frequency (22.7%) among 44 patients with membranoproliferative glomerulonephritis (MPGN) types I and III, than among the normal subjects (6.7%, P less than 0.002) or among 134 patients with other glomerulonephritides (5.2%, P less than 0.001). The component deficiencies in MPGN were partial in nine patients and subtotal in one. They could not be ascribed to acquired hypocomplementemia or to a nephrotic syndrome. They were present over long periods, were found in family members, and involved C2, C3, factor B, C6, C7, and C8. Six were presumably the result of null structural genes, two were associated with a structurally abnormal component, and two were of unknown cause. The results give evidence that partial deficiency of one or more complement components is a factor predisposing to MPGN.

Adolescent↗

Local and systemic activation of the whole complement cascade in human leukocytoclastic cutaneous vasculitis; C3d,g and terminal complement complex as sensitive markers.

We have studied complement activation both in plasma samples and in lesional skin from patients with leukocytoclastic cutaneous vasculitis (LCV). Enzyme immunoassay (EIA) quantification of the complement activation markers, C3d,g and the terminal complement complex (TCC) in plasma, showed that their levels were significantly increased in 66% and 55% of the patients, respectively (n = 29) compared with healthy controls, whereas the standard measurements of C3, factor B, C1q, C4 and C2 were generally within normal range. Elevations of C3d,g and TCC levels in plasma were significantly correlated. Importantly, a significant correlation was found between the severity of the vasculitis and both C3d,g and TCC plasma levels. Immunofluorescence studies of skin biopsy specimens demonstrated simultaneous presence of perivascular dermal deposits of C3d,g and TCC in lesional skin from 96% and 80% respectively of the patients (n = 25). There was a significant correlation between the intensity of the deposits of both markers. Clusterin, a TCC inhibitory protein, was always found at the same sites of perivascular TCC deposits. Immunofluorescence studies at the epidermal basement membrane zone (BMZ) revealed in each case deposits of C3d,g which were accompanied by TCC deposits in 52% of the biopsy specimens. These data demonstrate that there is a local and systemic activation of the whole complement cascade in human LCV. The presence of both C3d,g and clusterin-associated TCC perivascular deposits suggests an intervention of a regulatory mechanism of local complement activation in LCV. Finally, measurement of plasma C3d,g and TCC appears to be a sensitive indicator of systemic complement activation and disease severity in LCV.

Aged↗

Eosinophil granule cationic proteins regulate the classical pathway of complement.

Major basic protein, the primary constituent of eosinophil granules, regulates the alternative and classical pathways of complement. Major basic protein and other eosinophil granule cationic proteins, which are important in mediating tissue damage in allergic disease, regulate the alternative pathway by interfering with C3b interaction with factor B to assemble an alternative pathway C3 convertase. In the present study, eosinophil peroxidase, eosinophil cationic protein and eosinophil-derived neurotoxin, as well as major basic protein, were examined for capacity to regulate the classical pathway. Eosinophil peroxidase, eosinophil cationic protein and major basic protein inhibited formation of cell-bound classical pathway C3 convertase (EAC1,4b,2a), causing 50% inhibition of complement-mediated lysis at about 0.19, 0.75 and 0.5 micrograms/10(7) cellular intermediates, respectively. Eosinophil-derived neurotoxin had no activity on this pathway of complement. The eosinophil granule proteins were examined for activity on the formation of the membrane attack complex. Major basic protein and eosinophil cationic protein had no activity on terminal lysis. In contrast, eosinophil peroxidase inhibited lysis of EAC1,4b,2a,3b,5b, but had only minimal activity on later events in complement lysis. These polycations were then examined to determine the site(s) at which they regulated the early classical pathway. Eosinophil granule polycationic proteins: (1) reduced the Zmax at all time points but had only minimal effect on the Tmax during the formation of the classical pathway C3 convertase (EAC1,4b,2a); (2) inhibited formation of EAC1,4b,2a proportional to C4 but independent of C2 concentration; (3) inhibited fluid phase formation of C1,4b,2a, as reflected by a decrease in C1-induced consumption of C2 over time; and (4) inhibited C1 activity over time without a direct effect on either C4 or C2. These observations suggest that polycations regulate the early classical pathway by interfering with C1 and may exert this activity in vivo.

Blood Proteins↗

[Construction of a trans-splicing ribozyme for restoring EGFP truncation mutation].

Special designed group I intron ribozymes can specifically splice objective RNA, repair the mutant gene in RNA level. The specificity of ribozyme is determined by nucleotides specific internal guide sequence (IGS) introduced to the enzyme. In this study, fragment sequence containing Tetrahymena thermophilia intron I of 26S rRNA gene was cloned and cis-splicing activity of this ribozyme was confirmed by in vitro transcription. For evaluating the trans-splicing activity of this ribozyme, a truncated mutant Green Fluorescence Protein (GFP) vector, XYQ5/XYQ10- pEGFP-C2, was constructed. This vector deleted the 3' end 564bp fragment of EGFP coding sequence, led to the lost the activity of emitting green fluorescence. Trans-splicing ribozyme plasmids ptrans-rib-CMV2 for remedy of the truncated mutant EGFP was constructed by PCR and molecular cloning techniques. This vector utilizing cloned 26S rRNA intron 1 as core enzyme; selecting T-G site at 194bp of EGFP coding sequence as splicing receptor, designed an IGS which is inversely complement to the 188-193nt of EGFP mRNA; the 195-890bp fragment of EGFP coding sequence was ligated to the 3'-end of ribozyme core. The fragment containing these components was inserted to a eukayotic expression vector pRC-CMV2. Using linearized XYQ5/XYQ10- pEGFP-C2 and ptrans-rib-CMV2 as templates, truncated EGFP mRNA and the constructed ribozyme vector were transcribed and mixed to evaluate the trans-splicing activity. Analysis of in vitro transcription products mix by RT-PCR verified the existence of wild type EGFP mRNA molecule. Co-transfection of XYQ5/XYQ10- pEGFP-C2 with ptrans-rib-CMV2 to Hela cells proved this ribozyme restored green fluorescence within cell, but the efficiency was low.

Animals↗