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Complement expression profiles in human glomerular mesangial cells, endothelial cells, podocytes and proximal tubular epithelial cells.

BACKGROUND: Local expression of complement components in the kidney has been reported sporadically in both diseased and normal kidneys. This study aimed to comprehensively characterize the expression of complement components in human glomerular mesangial cells (GMCs), glomerular endothelial cells (GECs), podocytes, and proximal tubular epithelial cells (PTECs) in non-diseased renal tissue. METHODS: Complement expression in cultured human renal intrinsic cells was initially evaluated using reverse transcription polymerase chain reaction and immunofluorescence staining. These findings were further examined using publicly available single-cell RNA-sequencing datasets and 10×Genomics single-cell RNA sequencing of non-diseased human kidney tissue. The analyses focused on complement components involved in the initiation of the classical, lectin, and alternative pathways, as well as components shared among these activation pathways, terminal pathway components, complement regulators, and complement receptors. RESULTS: Complement components unique to the initial phase for classical pathway (C1S, C1R, C2, C4), lectin pathway (MBL2, FCN1, MASP1), alternative pathway (CFB, CFD), and the C3 component shared by the three activation pathways were detected in these cells. The components shared by the terminal pathways including C5, C6, C7, C8 and C9 exhibited lower expression, while complement regulators (CFH, CFI, CD55/DAF, CD46/MCP, CD59, C4BPB, PROS1/Protein S) or receptors (CD93/C1QR1, CR1), particularly membrane-bound proteins, such as DAF, MCP and CD59, which inhibit complement activation and the formation of the membrane attack complex, showed relatively high expression. CONCLUSION: These results showed that all four types of intrinsic renal cells expressed multiple complement components associated with the classical, lectin, and alternative pathways. In non-diseased kidney tissue, complement regulatory molecules involved in the control of complement activation showed relatively higher expression, whereas components of the terminal complement pathway were expressed at relatively lower levels, suggesting that renal intrinsic cells maintain a locally poised but tightly regulated complement system.

Humans↗

The complement system is defective in chronic lymphatic leukemia patients and in their healthy relatives.

The present study was aimed at analyzing the existence of an impaired complement system in CLL patients. For this purpose, the serum levels of the serum complement proteins C1q, C1r, C1s, C2, C3, C4, C5, C6, C7, C8, C9, Factor B and properdin were repeatedly evaluated by means of radial immunodiffusion assay in 26 CLL patients over a period of 2 years. At the time of diagnosis, 18 of the 26 CLL patients showed low serum levels in at least one of these complement proteins as compared to a group of sex- and age-matched healthy subjects (P < 0.0001). Complement defects affected either the classical and/or the alternative pathway components, and in some case low levels of late components (C5-C9) were also observed. A reduced level of properdin was the most frequent abnormality (11/18). The presence of such abnormalities were correlated with the stage of the disease, and they were found in 100% of the patients (11) in advanced stages (Rai II-IV), and in 40% of patients (15) in early stages (0-1) (P < 0.004). Severe infections occurred in five patients; four of them were in advanced stages of the disease and had decreased levels of at least one complement component, whereas the remaining patient was in an early stage and had normal levels of complement components. These data support the notion that an impaired complement system might be involved in the pathophysiology of CLL and its infectious complications. Although more work is needed to sustain this hypothesis, we discuss the possibility on the basis of data obtained in the first-degree relatives of CLL patients, that in some CLL patients the complement deficit might reflect a genetic predisposition.

Adult↗

The heparin binding domain of S-protein/vitronectin binds to complement components C7, C8, and C9 and perforin from cytolytic T-cells and inhibits their lytic activities.

S-Protein/vitronectin is a serum glycoprotein that inhibits the lytic activity of the membrane attack complex of complement, i.e., of the complex including the proteins C5b, C6, C7, C8, and C9n. We show that intact S-protein/vitronectin or its cyanogen bromide generated fragments also inhibit the hemolysis mediated by perforin from cytotoxic T-cells at 45 and 11 microM, respectively. The glycosaminoglycan binding site of S-protein/vitronectin is responsible for the inhibition, since a synthetic peptide corresponding to a part of this highly basic domain (amino acid residues 348-360) inhibits complement- as well as perforin-mediated cytolysis. In the case of C9, the synthetic peptide binds to the acidic residues occurring in its N-terminal cysteine-rich domain (residues 101-111). Antibodies raised against this particular segment react 25-fold better with the polymerized form of C9 as compared with its monomeric form, indicating that this site becomes exposed only upon the hydrophilic-amphiphilic transition of C9. Since the cysteine-rich domain of C9 has been shown to be highly conserved in C6, C7, and C8 as well as in perforin, the inhibition of the lytic activities of these molecules by S-protein/vitronectin or by peptides corresponding to its heparin binding site may be explained by a similar mechanism.

Animals↗

Recurrent meningococcal meningitis. A case report.

A 17-year-old Coloured youth presented at Tygerberg Hospital on six occasions between 1978 and 1981. He was admitted three times for meningococcal meningitis and three times for a meningitic illness clinically suggestive thereof. He had been admitted twice before to the City Hospital, Cape Town, in 1966 and 1968, for presumed meningococcal meningitis. He was fully evaluated in the outpatient department and found to have no detectable total haemolytic complement activity. There was no evidence of classic or alternative pathway activation. He has been tentatively designated as having a deficiency in the C6 or C8 components of the terminal membrane attack mechanism of the complement cascade.

Adolescent↗

The gamma subunit of the eighth complement component (C8) in rainbow trout.

Of the 35 proteins, enzymes, receptors and regulatory components of the complement system, C8gamma is unique in that it is the only lipocalin. C8gamma is a subunit of the C8 molecule, which is one of the five components (C5b, C6, C7, C8 and C9) that interact as a consequence of complement activation to form the membrane attack complex. Until now, C8gamma has been characterized only in mammalian species. In order to elucidate the phylogeny of this molecule, we have cloned the C8gamma subunit in rainbow trout (Oncorhynchus mykiss), a teleost fish representing a critical point in the evolutionary divergence of the complement system. The deduced amino acid sequence of trout C8gamma shows significant identity (37%) to the human C8gamma homolog and much lower to the other known lipocalins. The lipocalin domain is present and all the cysteine residues are conserved. The trout C8gamma gene is probably present as a single copy in the trout genome showing a differential expression pattern among tissues investigated.

Amino Acid Sequence↗

The indiction by complement of a change in KSCN-dissociable red cell membrane lipids.

During complement lysis of antibody-sensitized sheep erythrocytes (EA) there was a larger loss of membrane phospholipids than during lysis elicited by hypotonic buffer. In addition, membranes prepared from complement-lysed EA had a marked reduction in KSCN (2.4 M)-dissociable membrane cholesterol and phospholipids, as compared to membranes from EA lysed hypotonically. Complement lysis caused a mild reduction in the amount of KSCN-dissociable membrane hexose but no change in the amount of dissociable protein. The impairment in dissociation of membrane lipids was related to the action of C8; it did not occur with membranes from EA that were treated with heat-inactivated (56 degrees C for 30 min) human serum, C4-deficient guinea pig serum, C6-deficient rabbit serum, or the first seven human complement components. EA lysed with limited amounts of complement exhibited a partial impairment in KSCN-dissociable lipids. Membranes from erythrocytes lysed with melittin showed a large increase in dissociation by KSCN of lipids, proteins,and hexoses. Membranes from erythocytes lysed with lysolecithin or phospholipase C showed, in addition to a reduction in dissociable lipid, a much larger reduction in dissociable hexose than a membranes from complement-lysed cells. These profiles of reactivity with 2.4 M KSCN inidcate that the membrane pertubations caused caused by complement may be specific. We conclude that complement-lysis is accompanied by a major rearrangement of membrane cholesterol and phospholipid which could be demonstrated in membranes from cells lysed by only one or very few complement lesions. Therefore, it appears that the lesions induce a propragated change in the lipid organization which extends throughout large areas of the membrane. This change might be responsible for the impairment of membrane permeability that follows the action of complement and results in cell destruction.

Animals↗

The significance of antilymphocyte antibodies in patients with acquired immune deficiency syndrome (AIDS) and their sexual partners.

Antilymphocyte antibodies have been demonstrated in autoimmune diseases, acute viral infections, and acquired immune deficiency syndrome (AIDS) by using either the conventional microlymphocytotoxicity or the double fluorescence technique. In the present study, we used both methods to detect the antilymphocyte antibodies and to characterize further their immunologic significance in patients with AIDS and their sexual partners. The results using the conventional microlymphocytotoxicity method demonstrated that 8 of 10 patients with AIDS and 6 of 10 partners had significant levels of antilymphocyte antibodies which were reactive with B and T cells at cold and warm temperatures. A significant loss in antibody activity following absorption with B, T, and Daudi cells and Staphylococcus aureus, but not platelets or red cells, indicated that these antibodies are not directed to HLA class I antigens but, rather, to antigens that are common to both groups of lymphocytes. There is a close association between antilymphocyte antibodies and lymphopenia in patients but not in partners. Antibodies against lymphocyte subclasses [helper (T4) and suppressor (T8)] were detected by the double fluorescence staining technique, which employs C6-deficient serum as a nonlytic source of complement, and demonstrated the binding of antibodies to target cells, in contrast to lysing of the target cells as in the microlymphocytotoxicity method. The results of this assay showed that antibodies were directed to both populations, and there was no correlation or association between the absolute numbers of peripheral T4 and T8 cells and the percentage of antibody binding. Taken together, there appear to be at least two kinds of antilymphocyte antibodies: lymphocytotoxic antibodies detected by the conventional microlymphocytotoxicity assay and noncytotoxic antibodies detected by the double fluorescence staining technique. The former may be responsible in part for the lymphopenia. The latter may alter lymphocyte function. The patients and partners who had antilymphocyte antibodies also had anti-HTLV-III antibodies, although there was not any close correlation between titers. These findings support the possibility that both types of antibodies occur as part of a generalized immune response, possibly stimulated by the same viral agent.

Acquired Immunodeficiency Syndrome↗

Resin-capture and release strategy toward combinatorial libraries of 2,6,9-substituted purines.

A resin-capture and release strategy for making combinatorial 2,6,9-trisubstituted purine libraries is demonstrated by capturing N9-derivatized purines at the C6 position with a thio-modified polymer. The C2 fluoro group is subsequently substituted with primary and secondary amines followed by thioether oxidation and release by C6 substitution with amines and anilines. This approach complements a previously reported strategy where a 6-phenylsulfenylpurine scaffold was captured at the C2 position with a resin-bound amine.(3)

Combinatorial Chemistry Techniques↗

Potato plants genetically modified to produce N-acylhomoserine lactones increase susceptibility to soft rot erwiniae.

Many gram-negative bacteria employ N-acylhomoserine lactones (AHL) to regulate diverse physiological processes in concert with cell population density (quorum sensing [QS]). In the plant pathogen Erwinia carotovora, the AHL synthesized via the carI/expI genes are responsible for regulating the production of secreted plant cell wall-degrading exoenzymes and the antibiotic carbapen-3-em carboxylic acid. We have previously shown that targeting the product of an AHL synthase gene (yenI) from Yersinia enterocolitica to the chloroplasts of transgenic tobacco plants caused the synthesis in planta of the cognate AHL signaling molecules N-(3-oxohexanoyl)-L-homoserine lactone (3-oxo-C6-HSL) and N-hexanoylhomoserine lactone (C6-HSL), which in turn, were able to complement a carI-QS mutant. In the present study, we demonstrate that transgenic potato plants containing the yenI gene are also able to express AHL and that the presence and level of these AHL in the plant increases susceptibility to infection by E. carotovora. Susceptibility is further affected by both the bacterial level and the plant tissue under investigation.

Carboxylic Ester Hydrolases↗

Neurons express proteins of the classical complement pathway in Alzheimer disease.

Occurrence of the classical pathway complement proteins C1q, C1r, C1s, C2, C3, C4, C5, C6, C7, C8 and C9 was studied in human hippocampus and temporal cortex by immunohistochemistry and Western blotting. In Alzheimer disease (AD) cases, positive staining for all of these proteins was observed in pyramidal neurons and senile plaques. In control cases, weaker pyramidal neuron staining was observed except for C1q and C1s which were not detected. On Western blots of AD hippocampal extracts, bands corresponding to those detected in normal serum were found for each of the complement proteins. Comparable bands were also detected in normal hippocampal extracts with the exception of C1s which was not observed. The intensity of the bands was generally stronger in AD than in normal extracts, but, in the latter, there was considerable variability between cases and between bands in a single case. These data suggest that pyramidal neurons may be a source of the complement components known to be associated with Alzheimer lesions.

Aged↗

The reaction mechanism of human C5 in immune hemolysis.

The data presented here indicate that the C5 reaction step may proceed via the specific attachment of C5 to EAC1,4,2,3 and the formation of a hemolytically active C5 intermediate complex. During this process only a minor proportion (less than 4%) of C5 offered to EAC1,4,2,3 becomes bound, although the remaining C5 also participates in the reaction as evidenced by its inactivation in the fluid phase. Once bound, C5 is exceptionally efficient in producing hemolysis, requiring less than seven specifically bound molecules per cell for the production of a hemolytic lesion. The extent of formation of the C5 intermediate complex is primarily dependent on the number of molecules of C4, 2 and C3 present on the cells employed for its generation. In these respects, the mode of action of C5 is completely analogous to that of the other components of complement thus far investigated. The C5 step differs, however, in other aspects. The binding of C5 is influenced by C6 and C7, components which are thought to act subsequent to it in the complement sequence. In addition, the hemolytic activity of the isolated C5 intermediate complex is exceedingly labile, having an average half-life at 30 degrees C of only 9 min. This characteristic distinguishes the C5 step, along with the C2 step, as potentially rate-limiting in the complement reaction. However, unlike C2, C5 remains firmly cell-bound during the decay process and apparently undergoes an alteration in situ which renders it hemolytically unreactive. Finally, C5 is unique in that it readily adsorbs in native form to unsensitized erythrocytes. This nonspecifically bound C5 remains firmly attached, although it may be specifically utilized as a source of C5 by an ongoing complement reaction. The significance of the marked affinity of native C5 for cell-surface receptors remains to be determined.

Adsorption↗

Thrombocytopenia in experimental trypanosomiasis.

The effect of experimental trypanosomiasis on coagulation was studied because a patient in this hospital with Rhodesian trypanosomiasis developed thrombocytopenia with disseminated intravascular coagulation. Rats injected intraperitoneally with this strain of Trypanosoma rhodesiense consistently developed trypanosomiasis and severe thrombocytopenia without changes in hematocrit or concentration of fibrinogen or fibrin split products. At the time of 50% mortality (4-5 days) mean platelet counts per cubic millimeter of infected rats were 18,000+/-9,000 (+/-2 SEM) compared to 1,091,000+/-128,000 in uninfected controls. In vitro, concentrated trypanosomes and trypanosomefree supernates of disrupted organisms added to normal rat, rabbit, or human blood produced platelet aggregation within 30 min. This platelet aggregation was not blocked by inhibitors of ADP, kinins, or early or late components of complement. In vivo thrombocytopenia also occurred in infected rabbits congenitally deficient in C6 and in infected, splenectomized rats. Although the aggregating substance obtained from disrupted trypanosomes is heat-labile, it is active in the presence of complement inhibitors, suggesting that this trypanosomal product may be a protein enzyme or toxin. Since the phenomenon is independent of immune complexes, complement, ADP, and kinins, it appears to represent a new mechanism of microbial injury of platelets and the induction of thrombocytopenia.

Adenosine↗

C5b-9 increases albumin permeability of isolated glomeruli in vitro.

Deposition of antibody and activation of the complement cascade are important in both naturally occurring glomerulonephritis and in experimental models including passive Heymann nephritis. We studied the effect of antibody and complement on albumin permeability of isolated glomeruli to determine the role of the terminal complement components (C5-C9) in mediating the proteinuria in nephritis. Isolated glomeruli were treated with anti-Fx1a (Heymann antibody) and then incubated them with pooled human serum, serum in which complement had been inactivated by heat, or serum deficient in C6 or C7. The albumin reflection coefficient (sigma albumin) was calculated from the volumetric response of glomeruli to transcapillary oncotic gradients produced by albumin or high molecular weight neutral dextran (252 kD). Convectional permeability to albumin (Palbumin) was calculated as 1-sigma albumin. Albumin permeability of control glomeruli was not different from 0. Albumin permeability was not altered by antibody alone but was increased to 0.65 +/- 0.04 when antibody treated glomeruli were incubated for 10 minutes with pooled serum as a source of complement. Heat treatment of serum to inactivate complement prevented the increase in permeability. Incubation for 10 minutes with serum without antibody pretreatment caused a lesser increase in permeability of isolated glomeruli (0.18 +/- 0.06). Serum deficient in either C6 or C7 did not cause an increase in albumin permeability of antibody pre-treated glomeruli, but incubation with a combination of these sera (now containing the complete cascade) increased permeability to the same extent as did pooled normal serum (0.58 +/- 0.04).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Fulminant meningococcemia in a child with hereditary deficiency of the seventh component of complement and proteinuria.

A previously healthy 14-year-old boy presented with fulminant meningococcemia. He was found to have a total deficiency of C7. His serum totally lacked bactericidal activity against Neisseria meningitidis. Addition of purified C7 restored the serum hemolytic and bactericidal activity. Susceptibility to disseminated Neisseria infections has previously been reported in 3 patients with C7 deficiency, as well as in a few patients with deficiency of C5, C6 and C8. These findings emphasize the importance of intact complement mediated bactericidal activity in host defense against disseminated Neisseria infections. Evaluation of the complement system in individuals with Neisseria infections appears mandatory.

Adolescent↗

Acute immunologic arthritis in rabbits.

Mediators of acute immunologic injury have been studied in vivo by producing arthritis in rabbit knee joints. A reversed passive Arthus lesion was produced by injecting antibody into the joint space and antigen intravenously. Injury was assessed by measuring leakage of serum proteins and circulating radiolabeled proteins into the joint space and by the accumulation of neutrophils in the joint fluid. Inflammatory exudate was recovered for study by a standardized irrigation technique.Maximal vascular permeability developed 2 hr after injection as neutrophils accumulated about immune complexes in venule walls to produce structural injury. After 5 hr the number of neutrophils in the joint space rose rapidly, followed by a second rise in permeability at 8 hr. Neutrophil depletion abolished both peaks of permeability. It was then possible to reconstitute the synovial lesion in neutrophil-depleted rabbits by intra-articular injection of purified suspensions of neutrophils.A requirement for complement was demonstrated in development of the lesion. Rabbits genetically deficient in C6 showed delay in vascular permeability, appearance of neutrophils, and histologic lesions. The delay was longer in normal rabbits depleted of C3. In C6-deficient rabbits depleted of C3, still further reduction in injury occurred. Evidence was obtained as well for a chemotactic attraction of neutrophils in vivo. Antigen-antibody-complement complexes in the walls of blood vessels attracted neutrophils placed in the joint space of neutrophil-depleted rabbits. Omission of either antigen or antibody from this replacement reaction prevented the migration of neutrophils.

Animals↗

Meningococcemia and acquired complement deficiency. Association in patients with hepatic failure.

We treated two patients with severe hepatic failure complicated by meningococcemia. Serum complement profiles performed on these patients found low total hemolytic complement assays, normal concentrations of C1q, and low or undetectable concentrations of C3 through C6, C8, C9, and factors B and I. These studies suggest that these patients developed meningococcemia in the setting of acquired complement deficiency from impaired synthesis of multiple complement system proteins.

Acute Disease↗

Humoral factors in host defense against microbial invaders.

Normal host defense against microbial invaders depends upon an intact humoral and cellular system of inflammation and specific immunity. The major weapons for killing microbes that invade tissue are phagocytic cells, however, humoral factors enable these phagocytic cells to recognize, migrate toward, efficiently ingest, and kill the invaders. Humoral factors essential for host defense include specific antimicrobial immunoglobulin antibodies and multiple proteins which comprise the complement system. The complement system is the oldest phylogenetically and the most important protein in this system is C3. When C3 is activated on the surface of the microbe, ligan is formed which provides a firm bond between organisms and phagocytic cells. This process is termed opsonization and activated C3/C3b is a highly efficient opsonin. C3b attachment stimulates efficient engulfment by phagocytic cells and most microbes are rapidly killed once they are ingested. Complement may also function as a direct bactericidal factor when associated with specific antibody on the bacterial surface. Neisseria meningitidis and Neisseria gonorrheae are susceptible to this action of complement which requires participation of the terminal proteins of the system C6, 7, 8, and 9. Patients without these terminal components, therefore, are susceptible to systemic infections with Neisseria. Septicemia from Streptococcus pneumoniae and other encapsulated microbial species occurs with greatly increased frequency in patients without spleens. Complement and other as yet unidentified humoral factors which contribute to host defense against microbial invaders appear to be deficient in patients without spleens. Antimicrobial antibodies produced in response to antigenic stimulation by microbes are also essential humoral factors. Effective levels of antimicrobial antibodies develop only after microbes have colonized their host and the immune system has been stimulated and protection is delayed. Once produced, however, specific antibodies are potent opsonins and are effective activators of complement. Highly effective and efficient host defense is present when there are circulating specific antibacterial antibodies and an intact complement system. Septicemia may occur when there is a traumatic portal or entry of an exceptionally large bacterial challenge, however, deficiency of humoral or cellular factors of host defense is frequently involved in the pathogenesis of septicemia. Measures for preventing septicemia in susceptible persons include active immunization with microbial antigens or passive therapy with specific antimicrobial antibodies.

Antibody Formation↗

Alternative pathway complement activation induces proinflammatory activity in human proximal tubular epithelial cells.

BACKGROUND: Proximal tubular epithelial cells express a surface C3-convertase activity which induces C fixation and insertion of the C5b-9 membrane attack complex (MAC) into the cell plasma membrane. The physiopathological consequences of this phenomenon are unknown. METHODS: The effect of C fixation on the production of inflammatory mediators by human proximal tubular epithelial cells in culture was explored. RESULTS: Proximal tubular epithelial cells incubated with a sublytic amount of normal human serum as a source of C, but not with heat-inactivated human serum, showed a time-dependent calcium influx and a concomitant release of 14C-arachidonic acid (14C-AA). Eicosanoid synthesis following the arachidonic acid mobilization was studied as prostaglandin E2 release. Mg2+/EGTA, which did not prevent C activation by the C3-convertase, and p-bromodiphenacyl bromide a phospholipase A2-inhibitor, inhibited mobilization of 14C-AA. These results suggest the activation of an extracellular Ca(2+)-dependent, phospholipase A2. Complement fixation was associated with the synthesis of proinflammatory cytokines such as IL-6 and TNF-alpha. Experiments with C6-deficient sera indicated that the release of 14C-AA and the production of cytokines were dependent on the insertion of the terminal components of complement in the plasma membrane. Indeed, the reconstitution of normal haemolytic activity of C6-deficient sera with purified C6 restored also the release of 14C-AA and the production of cytokines. CONCLUSIONS: In vitro complement activation on the proximal tubular cell surface triggers the generation of proinflammatory mediators, which may potentially contribute to the pathogenesis of tubulointerstitial injury.

Arachidonic Acid↗