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Complement in experimental Trypanosoma lewisi infection of rats.

The role of complement in host resistance to infection with Trypanosoma lewisi was studied in normal, C4-deficient, and C3-depleted rats. Complement levels were measured in normal rats throughout the course of infection. A drastic reduction of total complement and C4 hemolytic activities occurred, and C3 levels measured immunochemically were decreased. Although total complement and C4 levels were regularly reduced to less than 10% of preinfection levels regardless of parasite numbers, the degree of C3 consumption correlated with the parasitemia. C3 levels varied from 100% of preinfection in rats with light infections to 35% in animals with heavy parasitemias. Recovery to normal levels followed trypanosome elimination from the peripheral blood. The infection had no significant effect on C6 hemolytic activity. Parasitemias and C3 levels in C4-deficient rats did not differ from those of normocomplementemic controls. Depletion of C3 and late-acting components by cobra venom factor during the reproductive or adult stages of infection did not alter the parasitemias. In addition, T. lewisi and immune serum caused complement activation in vitro, which could be inhibited with ethylene glycol-bis-(beta-aminoethyl ether)N,N'-tetraacetic acid or ethylenediaminetetraacetic acid. It is concluded that T. lewisi infection in rats result in activation of the classical complement pathway with extensive consumption of the early-acting components, as well as a low degree of activation of the alternative pathway. However, complement does not appear to play a major role in the control and termination of the infection.

Animals↗

Identification of genes differentially expressed in V79 cells grown as multicell spheroids.

PURPOSE: Growth of Chinese hamster V79 cells as multicell spheroids leads to an increase in resistance to killing by ionizing radiation and etoposide. Differential display was used to identify changes in gene expression that occur when cells are grown as spheroids. MATERIALS AND METHODS: Differential display was performed using exponentially growing Chinese hamster V79 cells and the outer cell layer of V79 spheroids. Using six different pairs of primers, 20 altered bands were selected. Eight genes, confirmed using reverse Northerns, showed a match in a GenBank search. Antibodies against a calcium-binding protein, mts1, confirmed differential expression of this protein. Intracellular free calcium levels were measured using fluo-3 fluorescence, and the effect of a calcium-binding agent on etoposide resistance was examined using the comet assay. RESULTS: Genes upregulated in the outer cell layer of spheroids relative to monolayers included: (1) mts1 (S100A4), a calcium binding protein implicated in proliferation, metastasis, cell adhesion, and angiogenesis; (2) cytochrome c oxidase II; (3) B-ind1, a mediator of Rac-1 signaling; (4) TRAM, an endoplasmic reticulum protein. Genes downregulated in spheroids were: (5) phosphoglycerate kinase; (6) ARL-3, a ras-related GTP binding protein; (7) MHC class III complement 4A; and (8) 2,4-dienoyl-CoA. Immunohistochemistry confirmed overexpression of mts1 and another calcium-binding protein, calreticulin, in V79 outer spheroid cells relative to monolayers. C6 rat glioma and SiHa human cervical carcinoma cells that demonstrate a contact effect also showed upregulation of mts1 or calreticulin, while WiDr colon carcinoma cells that lack contact resistance showed no change in expression of either calcium binding protein. Intracellular free calcium levels were found to be almost two times lower in the outer cells of V79 spheroids compared to monolayers. V79 monolayer and outer spheroid cells treated with the calcium chelating agent BAPTA-AM showed a similar level of DNA damage by etoposide. CONCLUSIONS: Expression of genes involved in calcium binding, signaling and metabolism are differentially expressed when V79 cells are grown as spheroids. Differences in the levels of intracellular calcium may underlie the contact effect.

Animals↗

Time course studies on the initiation of complement activation in acute myocardial infarction induced by coronary artery ligation in rats.

This study attempted to probe the role of complement activation in promoting acute myocardial infarction (AMI) induced by coronary artery ligation (CAL) in rats. The surgical technique used in this study significantly reduced early mortality (95% survival rate) and also reduced the variation in infarct size (33+/-1.87%) at 32 h after surgery. Time course studies on the initiation of AMI at various time points were carried out using physiological, biochemical, histopathological and electron microscopical techniques. Serum markers and activities of lysosomal hydrolases were found to be significantly elevated at the 8th hour post ligation. Histological studies showed polymorphonuclear cells emigration and total coagulation necrosis. Transmission electron micrograph exhibited mild distortion of muscle fibres and mitochondrial rupture with disrupted cristae. Immunoblotting studies confirmed the presence of alpha2-macroglobulin which supported the inflammatory response at 8th h of post ligation. The initiation of the complement (C) activation was observed by the increase in the level of the soluble form of the membrane attack complex (sC5b-9) in serum and left ventricle. Immunoexpression studies confirmed the initiation of the terminal C activation as shown by the expression of C5, C6, C7, C8, C9 and sC5b-9 complex at the 8th h of AMI. This study conclusively demonstrated that initiation of the C activation was observed to be significant at the 8th h of AMI induced by CAL in rats.

Animals↗

Activation of the alternative pathway of complement by DL-2-mercaptomethyl-3-guanidinoethylthiopropanoic acid (Mergetpa).

Incubation of normal human serum with 3-5 mM Mergetpa causes activation of the alternative pathway of complement as indicated by fragmentation of C3 and factor B, dependent on the presence of divalent cations. Mergetpa inhibits the regulatory protein factor I and, as a consequence, may allow initiation of the feedback cycle of the alternative pathway by deregulation. The classical pathway is not or only to a minor extent activated. A decrease in the hemolytic activity of C2, C5 and one or several of the components C6-9 in the presence of 5 mM Mergetpa may be explained by direct inactivation. The described effects are probably mediated by Mergetpa acting as a thiol.

3-Mercaptopropionic Acid↗

The killer molecule of complement.

Cell injury by complement occurs as a consequence of activation of either the classical or the alternative pathway on the surface of a cell. It is accomplished by the membrane attack complex (MAC). Its precursor proteins, C5, C6, C7, C8, and C9, are hydrophilic glycoproteins with Mr ranging from 70,000-180,000. When C5 is cleaved by the serine protease C5 convertase which covalently attaches to target cells, nascent C5b is produced and forms together with C6 a soluble and stable bimolecular complex (C5b,6). Upon binding of C5b,6 to C7 a trimolecular complex (C5b-7) is formed which expresses a metastable membrane-binding site. Membrane-bound C5b-7 constitutes the receptor for C8 and the tetramolecular C5b-8 complex binds and polymerizes C9. During the assembly process the proteins undergo hydrophilic-amphiphilic transition and the end product consists of C5b-8 (Mr approximately 550,000) and of tubular poly C9 (Mr approximately 1,100,000). The functional channel size varies but its maximal diameter is approximately 100 A. C9 polymerization appears to involve initial reversible association of several C9 molecules which is followed by temperature-dependent, constrained unfolding. Unfolded C9 monomers then associate laterally with each other and polymerization terminates with closure of the circular structure which consists of 12-18 C9 monomers. Amino acid composition and sequence indicate that the N-terminal half of the single chain C9 molecule is hydrophilic and the C-terminal half rather hydrophobic. Phospholipid-binding and insertion into membranes are functions of the C-terminal portion of the molecule. Control of the MAC is exerted by the S-protein (Mr 80,000) which binds to the forming complex and prevents its attachment to the cell membrane. Control is also exerted by certain species-specific membrane proteins which interfere with C5 convertase and C9 function.

Binding Sites↗

Patterns of complement activation in idiopathic membranoproliferative glomerulonephritis, types I, II, and III.

Complement profiles on 22 hypocomplementemic patients with membranoproliferative glomerulonephritis (MPGN) type I, on 11 with MPGN II, and on 16 with MPGN III, gave evidence that the nephritic factor of the amplification loop (NFa) is responsible for the hypocomplementemia in MPGN II and the nephritic factor of the terminal pathway (NFt) for the hypocomplementemia in MPGN III. In contrast, in MPGN I, there was evidence for three complement-activating modalities, NFa, NFt, and immune complexes. As a result, four different patterns of complement activation were seen. NFa, found in MPGN II, produces a complement profile characterized mainly by C3 depression. In addition, four of seven (57%) severely hypocomplementemic MPGN II patients (C3 less than 30 mg/dL) had slightly depressed levels of factor B, and one of seven (14%) of properdin, but in all the C5 concentration was normal. In contrast, all eight severely hypocomplementemic patients with MPGN II had depressed C5 and properdin levels, and six of eight (75%) depressed levels of C6, C7, and/or C9. Of eight MPGN III patients with moderate hypocomplementemia, 50% had depressed C5 and properdin levels and the remainder, depressed C3 only. This spectrum of profiles is most likely produced by varying concentrations of NFt. In MPGN I, nine of 23 (39%) had a profile indicating only classical pathway activation; seven of 23 (39%), a pattern compatible with NFt alone; four of 23 (9%), evidence for both classical pathway activation and NFt; and three of 23 (13%), a pattern compatible with NFa. The unique multifactorial origin of the hypocomplementemia in MPGN I, often giving evidence of classical pathway activation, together with previously reported differences in glomerular morphology and clinical features at onset, makes it distinct from MPGN III. Depressed C8 levels were found to some extent in all hypocomplementemic states. The levels were uncommonly depressed in patients with NFa, most markedly depressed with NFt, and moderately reduced with classical pathway activation. The cause is not known. Diagnostically, profiles showing classical pathway activation and low levels of C6, C7, and/or C9 are specific for MPGN I. Those showing only classical activation are likewise diagnostic of MPGN I if systemic lupus erythematosus (SLE) and chronic bacteremia are ruled out.

Complement Activation↗

Rate-limiting components and reaction steps in complement-mediated haemolysis.

The aims of this study were to identify the rate-limiting components and reaction steps in the integrated activation sequence of the alternative (AP) and classical (CP) pathways of the complement (C) system. In an initial correlation analysis we found that the haemolysis rate in AP was correlated with the concentrations of C5 and IgM. In CP, the haemolysis rate was correlated with the concentrations of C2-C6, factors I and B, and IgM. In order to identify the rate-limiting components, we added single, purified C components and IgM to pooled, normal human serum and measured the resultant change in the haemolysis rate. We found that a large number of different components, rather than a single one, were rate-limiting in AP and CP. In reconstitution experiments we found that in CP the rate-limiting reaction steps are the activation of C4 and C2. In AP we cannot identify the rate-limiting step precisely, but can only state that it is at the C3 activation step or earlier.

Adolescent↗

Incorporation of SP-40,40 into the soluble membrane attack complex (SMAC, SC5b-9) of complement.

When SC5b-7 was prepared from the C8-depleted serum activated with inulin, it contained SP-40,40 as well as S-protein. From the densitometry of each component in SC5b-9 after SDS-PAGE, it was estimated that SC5b-9 was constituted of one molecule each of C5b, C6, C7, C8, S-protein, and SP-40,40 and two molecules of C9. SP-40,40 was depleted from normal serum with an affinity column using mouse monoclonal anti-SP-40,40 antibody. When the resulting SP-40,40-depleted serum was activated with inulin, SC5b-9 lacking SP-40,40 could be formed. S-Protein-depleted serum was also prepared with an affinity column using mouse monoclonal anti-S-protein antibody. Similarly, SC5b-9 lacking S-protein could be formed by the inulin activation of the S-protein-depleted serum. These results indicate that either SP-40,40 or S-protein should be able to form a soluble C5b-9 complex.

Blood Proteins↗

The bovine complement system.

Methods were developed for titrating bovine C3b-inactivator, C2, C3 and C4 by non-hemolytic means, and for assaying by hemolysis all the components of the bovine classical complement system except C2. All components were detected at serum dilutions above 1:1000, and some at dilutions above 1:100,000. C1, C4, C5, C7 and C9 titers were very high in adult bovine serum, and C2 and C8 were relatively low. C1, C2, and C8 were quite heat-labile at 56 degrees C, and C7 was moderately so, while C3 amd C6 titers increased after heating due to inactivation of a heat-labile inhibitor. Fetal bovine serum contained approximately 1-3% of adult levels of conglutinin, C1 and C6, and 5-50% of adult levels of the remaining components except C3. C3 antigen was found, but C3 functional activity was undetectable in most fetal bovine sera, though present at low levels in a few.

Animals↗

Hereditary C3 hypocomplementemia in the rabbit.

Hereditary hypocomplementemia of the third component of complement (C3) was found in a strain of rabbits in which hereditary C8 alpha-gamma deficiency was also found. The serum C3 concentration, haemolytic C3 activity and total complement haemolytic activity (CH50) of these animals were, respectively, 6-12%, 8-13% and 27-37% of the normal levels. The haemolytic complement activity in the C3 hypocomplementemic (C3-hypo) rabbit serum was restored in a dose-dependent manner by the addition of purified rabbit C3. The levels of factor H and properdin and components C2 and C6 were in the normal range, and the levels of factors B and D and component C8 were higher than normal. The low level of serum C3 in C3-hypo rabbits was not due to C3 conversion, partial C3 antigenicity, presence of a C3 inhibitor or hypercatabolism of normal C3. Furthermore, no change in the ratio of C3 protein levels was observed between C3-hypo and normal rabbits, even after turpentine injection. In addition, the C8 alpha-gamma deficiency condition does not affect C3 activity and C3 catabolism in vivo. Mating tests showed that the C3 hypocomplementemia is transmitted as a simple autosomal co-dominant trait. C3-hypo rabbits have a lower survival at 3 months than normal rabbits. C3-hypo rabbit serum also has a lower bactericidal activity than normal rabbit serum. The PAGE under reducing conditions showed no difference in the molecular weights of C3 alpha and C3 beta chains between C3-hypo, heterozygous and normal animals.

Aging↗

A simplified method for the preparation of EAC14 intermediate cells using human serum treated with methylprednisolone.

The inhibitory effect of methylprednisolone 21-succinate ester (MPS) on the activities of complement components in human serum was studied by incubating human serum with various concentrations of MPS at 37 degrees C for 30 min and then measuring the residual activity of each component in human serum. The formation of EAC1 and EAC14 by C1 and C4 respectively, were only weakly inhibited by MPS at a final concentration of 10 mg/ml. In contrast, the same concentration of MPS completely inhibited the capacity of C2, C3, C5 and C6-9 to induce respective succeeding intermediates. On the basis of these findings a simplified method was devised for the preparation of EAC14 intermediates using human serum pretreated with MPS.

Animals↗

Isolation of the terminal complement complex from target sheep erythrocyte membranes.

(1) Membranes from sheep erythrocytes lysed with antibody and human complement were solubilized in Triton X-100 and subjected to isoelectric focusing in polyacrylamide gels containing 1% Triton X-100. Membrane-bound serum proteins were located in the gels by subsequent immunoelectrophoresis against antisera to human serum proteins. Monospecific antisera against C9 and C5 were used to locate the terminal complement complex, which is not dissociated by Triton X-100. The complex focused between pH 5.8 and pH 6.5 and was separated from the bulk of other membrane-bound serum proteins, which focused at pH ranges below than 6.0. (2) In a second step, proteins electrophoretically eluted from the gel sections containing the terminal complement complex were chromatographed on Sepharose 6B equilibrated with 0.05% Triton X-100. Fused rocket immunoelectrophoresis was used to monitor separations. This step separated the terminal complement complex from the remaining contaminating proteins. The complex eluted in a broad peak corresponding to a molecular weight range of 800000-4000000. (3) The terminal complement complex thus obtained migrated with alpha-mobility and yielded a single precipitation arc in crossed immunoelectrophoresis using polyvalent antisera to human serum proteins. A distinct precipitate was obtained with monospecific anti-C9. The presence of C5 and C6, in complex with one another and with C9 was demonstrable by immuno-double-diffusion. No immunoprecipitate was obtained with antisera to sheep erythrocyte membrane proteins. (4) Dodecyl sulfate gel electrophoresis of the complex revealed seven protein bands of 190000, 160000, 115000, 93000, 85000, 68000 and 60000 daltons. Planimetric quantitation of densitometric scans gave a molar ratio of approx. 0.7:0.3:1:1:1:2:1 for these bands, respectively. All bands stained faintly with periodate-Schiff. Two-dimensional dodecyl sulfate gel electrophoresis showed that the first two bands (190000 and 160000 daltons, probably C5b and C5c) represented proteins possessing more than one peptide chain linked by disulfide bonds. The main subunit for both bands was a protein of approximately 68000 daltons. Band 5 (83000 daltons, probably C8alpha) was split into two peptide chains of approximately 68000 and 15000 daltons. The other components were not affected by dithiothreitol treatment. (5) The dodecyl sulfate gel electrophoretograms obtained were very similar to that described by Kolb and Müller-Eberhard (Kolb, W.P. and Müller-Eberhard, H.J. (1975) J. Exp. Med. 141, 724-735) for the terminal complement complex isolated from inulin-activated serum. However, certain minor but consistent deviations were observed. A preliminary correction of the electrophoretograms is presented.

Animals↗

Nonimmunologic complement activation in normal human serum induced by radiographic contrast media.

Two different radiographic contrast media (RCM), iothalamate and iodipamide, induced the activation of several complement (C) components in normal, genetically C2-deficient and agammaglobulinemic human sera in vitro. This activation was dose dependent and demonstrable by a reduction in whole C as well as C4, C2, C3, and C5 hemolytic activities. C6, C8, and C9 hemolytic activities were unaffected. Concommitant with the loss of C3 hemolytic activity was the appearance of C3 proteolytic cleavage products that were identified by immunoelectrophoresis. Both the loss of C3 hemolytic activity and the production of C3 fragments occurred in the presence of 10 mM EDTA, indicating RCM-induced C3 cleavage occurred without participation of the multicomponent C3/C5 convertases of either the classical or alternative C pathways. Furthermore, loss of C3 hemolytic activity was not due to the direct alteration of the C3 molecule by RCM because purified C3 was unaffected upon incubation with RCM at a concentration that induced 80% reduction in the C3 hemolytic activity in normal human serum. Serum samples obtained from 40 patients, before and 30 min after undergoing i.v. pyelography, revealed no significant change in total hemolytic C activity; 34 patients received sodium and methylglucamine diatrizoate and six received sodium iothalamate. Hemolytic C3 levels were also determined for the six patients before and 30 min after administration of sodium iothalamate and no significant change in activity was detectable.

Agammaglobulinemia↗

Peritoneal mesothelial cells produce complement factors and express CD59 that inhibits C5b-9-mediated cell lysis.

The CD59 membrane protein confers protection from C5b-9-mediated cell lysis. Because evidence exists for complement (C) activation and generation of C5b-9 in the peritoneal cavity during chronic peritoneal dialysis (CPD), we investigated, on mesothelial cell (MC) lines, the expression of CD59 and the production of C components. Four MC lines were obtained from children on CPD, and two from non uremic children. CD59 expression on MCs was investigated with anti-CD59 monoclonal antibody (mAb) and polyclonal goat immunoglobulin G (IgG). MC lines were positive for staining with anti-CD59 mAb. Western blotting analysis of MC membrane demonstrated a band with the same molecular weight as CD59. Incubation of MC with anti-CD59 mAb abrogated the protective effect of CD59 (100% cytotoxicity). C3, C4, and C6 were detected in the supernatants of MC; in non uremic MC supernatants, C5, C7, C8, and C9 were also detectable, and C4 concentration was tenfold higher. CD59 expression confers to MCs protection from C5b-9-mediated lysis. MCs produce C factors. These findings suggest that production of complement components and expression of CD59 on MCs could play a role both in peritoneal cavity infection (decreased complement production) and in peritoneal membrane damage (decreased CD59 expression and reduced remesothelialization owing to MC lysis).

CD59 Antigens↗

In vivo clearance studies of the terminal fluid-phase complement complex in rabbits.

The present study was directed at obtaining information on the in vivo elimination rate of SC5b-9, the terminal fluid-phase product of complement activation. A sandwich ELISA based on the use of mono- and polyclonal antibodies was constructed that permitted quantitation of rabbit SC5b-9 in plasma. Rabbit serum was activated with inulin in vitro to generate SC5b-9, and the activated serum was applied intravenously in normal and C6-deficient rabbits. Elimination of SC5b-9 in normal rabbits was rapid, half-life in the range of 30-50 min. No differences were noted between the clearance of homologous rabbit and heterologous human SC5b-9, SC5b-9 concentrations returned to basal levels 2-3 h after application. Plasma of C6-deficient rabbits contained no SC5b-9 and these animals displayed an even more effective clearance capacity for the complex. Quantitative considerations indicated that basal plasma SC5b-9 levels in healthy animals result from a spontaneous turnover rate of approximately 0.2% of C5-C9 components per h. When multiple doses of SC5b-9 were injected in sequence, the same half-life and total elimination time were found as with single-dose experiments. The results demonstrate the existence of an effective clearance mechanism for SC5b-9, consistent with recent findings that SC5b-9 plasma levels are very low not only in healthy adults, but also in the majority of patients with complement-consuming diseases.

Animals↗

ORF2 gene involves in the construction of high-order structure of bacterial cellulose.

An ORF2 gene located upstream of the cellulose synthase (bcs) operon of Acetobacter xylinum BPR2001 was disrupted and a mutant (M2-2) was constructed. In static cultivation, the parent strain produced a tough, colorless, and insoluble cellulose pellicle, whereas M2-2 culture produced a thin, yellow, and fragile pellicle. The results of X-ray diffraction and 13C solid-state NMR indicated that the product of M2-2 is a mixture of cellulose I, cellulose II, and amorphous cellulose. The cellulose I to cellulose II ratio of the mixture was evaluated from the signal areas of C6 to be about 1:2. Electron microscopy revealed that the product of M2-2 included ribbon-like cellulose and irregularly shaped particles attached to the ribbons. On the other hand, the mutant complemented with plasmid pSA-ORF2/k containing the ORF2 gene and BPR2001 produced only cellulose I. These results indicate that the ORF2 gene is involved in the production and crystallization of cellulose I microfibrils by this microorganism.

Acetobacter↗

Synthesis and hybridization studies of 2'-amino-alpha-L-LNA and tetracyclic "locked LNA".

A convergent route to a new class of locked nucleic acids, i.e., 2'-amino-alpha-L-LNA, has been developed. The optimized synthetic route to the corresponding phosphoramidite building block of thymine proceeds in 4% overall yield over 15 steps from the starting diol. Crucial synthetic steps include (a) introduction of a C2-azido group prior to nucleobase coupling, (b) Vorbrüggen glycosylation primarily affording the desired alpha-anomer, (c) separation of alpha-L-ribo- and beta-L-ribo-configured bicyclic nucleosides, and (d) selection of a suitable protecting group to avoid intramolecular Michael addition of the C2'-amino group onto the C6-position. Incorporation of a 2'-amino-alpha-L-LNA monomer into oligodeoxyribonucleotides results in modest changes in thermal stability with complementary DNA, whereas significant increases in thermal stability are observed with RNA complements along with excellent Watson-Crick discrimination. These results, along with the flexibility of the synthetic strategy allowing chemoselective N2'-functionalization at a late stage, render 2'-amino-alpha-L-LNA a promising building block for nucleic acid based nanobiotechnology and therapeutics. A slight modification in strategy facilitated the synthesis of the corresponding phosphoramidite building blocks of Michael adducts, which due to their tetracyclic skeletons exhibit a conformationally restricted furanose ring and glycosidic torsion angle (anti-range). Incorporation of such a "locked LNA" monomer into oligodeoxyribonucleotides results in large decreases in thermal affinity toward DNA/RNA complements.

Molecular Structure↗