Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Complement C1”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 235 records · Page 13Linked to original sources

Electron microscopic study showing antibody-independent binding of C1q, a subcomponent of the first component of complement, to serum-sensitive salmonellae.

Effective serum-mediated killing of sensitive gram-negative bacteria requires all the complement components. In the preimmune phase the antibody-independent interaction of the first component of complement, C1, with the bacteria might be especially important. Electron microscopic studies showed that the C1 subcomponent C1q binds only to the serum-sensitive R form of Salmonella minnesota and not to the serum-resistant S form.

Cell Wall↗

Examination of baseline levels of carboxypeptidase N and complement components as potential predictors of angioedema associated with the use of an angiotensin-converting enzyme inhibitor.

OBJECTIVE: To determine if mean levels of complement components and carboxypeptidase N differed when comparing patients who exhibited angioedema following angiotensin-converting enzyme inhibitor therapy to those who received angiotensin-converting enzyme inhibitor therapy but did not have angioedema. DESIGN: Case-control study nested within an 8-week, open-label study of the use of quinapril hydrochloride for hypertension in 12275 patients. SETTING: Multicenter, with sites throughout the United States. PATIENTS: Of the 36 patients with angioedema described, 22 participated in the study. They were matched to 48 controls by age, sex, race, length of follow-up, and geographical region. INTERVENTION: All patients received quinapril therapy prior to participation in this case-control study. MAIN OUTCOME MEASURES: Levels of carboxypeptidase N, total hemolytic complement, C1 esterase inhibitor, and C4, along with questionnaire data, including a history of angioedema-like episodes and family history of angioedema. RESULTS: The 22 patients had significantly lower mean levels of carboxypeptidase N (kininase I) (P = .03) and C1 esterase inhibitor (P = .04) compared with the 48 matched controls, but all mean values were within normal laboratory ranges. A history of prior angioedema-like episodes was associated with an approximate 6-fold increase in the subsequent risk of angioedema following angiotensin-converting enzyme inhibitor therapy. CONCLUSIONS: Small differences in levels of carboxypeptidase N or C1 esterase inhibitor may contribute to an increased risk of angioedema with angiotensin-converting enzyme inhibitor therapy. Given the large overlap in the distributions of carboxypeptidase N and C1 esterase inhibitor levels, prior testing could not be used to evaluate angioedema risk for an individual patient considering angiotensin-converting enzyme inhibitor therapy. A history of prior angioedema-like episodes was associated with increased risk, but this result should be interpreted with caution because of possible recall bias.

Angioedema↗

Exon structure of the gene encoding the human mannose-binding protein-associated serine protease light chain: comparison with complement C1r and C1s genes.

Mannan or mannose-binding protein (MBP) requires a novel serine protease termed MBP-associated serine protease (MASP) for activation of the complement cascade. In this study, we analyzed MASP genomic clones and found that the light chain (catalytic domain) is encoded by six exons, whereas those of the complement C1 subunits, C1r and C1s, and the haptoglobin segment have been reported to be encoded by a single exon. We confirmed the intron-lacking sequence of C1r by analysis of its genome. These results, in conjunction with those obtained by constructing a phylogenetic tree for these proteins, suggest that the MASP gene is prototype and that the intron-lacking sequences of the other serine proteases have a more recent history.

Binding Sites↗

Plasma concentrations of complement-modulating proteins (C1 inhibitor, C4 binding protein, factor H and factor I) in inflammatory dermatoses with special reference to psoriasis.

By using single radial immunodiffusion, plasma levels of four complement-modulating proteins, i.e. C1 inhibitor (C1INH), C4-binding protein (C4bp), factor H and factor I were measured in 42 psoriatic patients and in 60 patients with other inflammatory skin diseases in comparison with 27 normal controls. In psoriatic patients and those with related pustular dermatoses, the levels of C4bp, factor H and factor I were significantly increased. They correlated well with both extent of skin changes and disease activity. In contrast, in nonpsoriatic inflammatory dermatoses only factor H values were significantly increased in toxic erythema and factor I in atopic dermatitis. These results offer additional support for the hypothesis that the complement system is involved in psoriasis and related sterile pustular dermatoses.

Adult↗

Enzyme immunoassay of C1q and its application to the detection of C1q antigens in urine.

A highly sensitive enzyme immunoassay for the determination of C1q, a subcomponent of the first component of complement, C1, was developed to determine C1q in body fluid. Anti-C1q F(ab')2 fragments were immobilized on silicone rubber and after the interaction of anti-C1q with C1q, Fab' fragments of anti-C1q coupled with beta-D-galactosidase were added. The amounts of C1q were measured by enzymatic activity of beta-D-galactosidase to cleave 4-methylumbelliferyl-D-galactoside. A calibration curve of C1q indicates that C1q could be determined in the range of 0.3 ng/ml-1 mg/ml, the optimal range being 1-100 ng/ml. While C1q was not detectable in the urine of healthy volunteers, C1q could be determined in the urine of patients with renal diseases. The highest level of C1q detected was 31.8 ng/ml in urine of chronic nephritis.

Complement Activating Enzymes↗

Heterogeneity of normal human diploid fibroblasts: isolation and characterization of one phenotype.

Cultures of human diploid fibroblasts contain cells that respond to exposure to the first component of complement (C1) by initiating DNA synthesis and growth. The plasma membranes of these cells have specific binding sites for the C1q subcomponent of C1. A fluorescence-activated cell sorter was used to isolate a subset of cells with a high affinity for C1q, and the growth and synthesis activities of these high-affinity cells were studied after numerous replications in vitro. These cells synthesize DNA and grow faster than the parent cultures and low-affinity cells, and they produce two to three times as much protein. About 40 percent of their total protein synthesis activity is directed to collagen production, unusually high proportions of collagen types III and V being produced. These properties and the high affinity of the cells for C1q are retained for at least six cell transfers. This phenotype has the properties expected of fibroblasts in healing wounds and inflamed tissues.

Carrier Proteins↗

Calcium-linked self-association of human complement C1s.

The weight-average molecular weight of C1s, an activated serine protease subcomponent of human complement C1, has been measured by means of sedimentation equilibrium over a wide range of both protein and calcium ion concentrations. The combined data may be accounted for quantitatively by a simple model for Ca(2+)-dependent self-association of C1s to a dimer. According to this model, the monomer contains a single Ca2+ binding site with K approximately equal to 3 x 10(5) M-1, and the dimer contains three independent Ca binding sites, two having a Ca2+ affinity lower than that of the monomer (K approximately equal to 3 x 10(4) M-1). The third binding site in the dimer, which presumably lies at the interface between the two amino-terminal alpha domains, has a higher Ca2+ affinity (K approximately equal to 1 x 10(8) M-1) and provides the driving force for C1s dimerization in the presence of calcium.

Binding Sites↗

The Fc-recognizing, collagen-like C1q molecule is a putative type II membrane protein of macrophages.

The Fc-recognizing, collagen-like C1q molecule, a subcomponent of the first component of complement, C1, is present on the cell surface of guinea pig peritoneal macrophages and human peritoneal and monocyte-derived macrophages. On closer examination, C1q appears to be a membrane protein (membrane C1q) of macrophages since it is i) anchored into the membrane throughout the biosynthetic pathway, ii) tightly and irreversibly bound to the cell surface and iii) only liberated if the intact membrane structure is disrupted by a detergent or repeated freeze/thawing. Additionally, the amino acid sequence of the A chain of human C1q displays properties that are characteristic for integral type II membrane proteins. The membrane C1q of guinea pig macrophages has a "lighter" B chain than serum C1q. Under physiological conditions in culture guinea pig macrophages release membrane C1q thereby converting it into the serum form. Moreover, membrane C1q appears to be involved in various cellular events such as binding of Fc, polyanions, lipid A and gram-negative bacteria to macrophages.

Animals↗

Substitution of a single amino acid (aspartic acid for histidine) converts the functional activity of human complement C4B to C4A.

The C4B isotype of the fourth component of human complement (C4) displays 3- to 4-fold greater hemolytic activity than does its other isotype C4A. This correlates with differences in their covalent binding efficiencies to erythrocytes coated with antibody and complement C1. C4A binds to a greater extent when C1 is on IgG immune aggregates. The differences in covalent binding properties correlate only with amino acid changes between residues 1101 and 1106 (pro-C4 numbering)--namely, Pro-1101, Cys-1102, Leu-1105, and Asp-1106 in C4A and Leu-1101, Ser-1102, Ile-1105, and His-1106 in C4B, which are located in the C4d region of the alpha chain. To more precisely identify the residues that are important for the functional differences, C4A-C4B hybrid proteins were constructed by using recombinant DNA techniques. Comparison of these by hemolytic assay and binding to IgG aggregates showed that the single substitution of aspartic acid for histidine at position 1106 largely accounted for the change in functional activity and nature of the chemical bond formed (ester vs. amide). Surprisingly, substitution of a neutral residue, alanine, for histidine at position 1106 resulted in an increase in binding to immune aggregates without subsequent reduction in the hemolytic activity. This result strongly suggests that position 1106 is not "catalytic" as previously proposed but interacts sterically/electrostatically with potential acceptor sites and serves to "select" binding sites on potential acceptor molecules.

Animals↗

Collagen-like complement component C1q is a membrane protein of human monocyte-derived macrophages that mediates endocytosis.

The collagen-like C1q molecule, a subcomponent of the first component of complement, C1, is synthesized by macrophages (M phi). Previously, we have demonstrated that C1q is a membrane protein of guinea pig peritoneal macrophages (M phi). To extend this observation as a general biologic characteristic of M phi, we investigated human (hu) monocyte-derived M phi. Interestingly, surface labeling with the biotin derivative sulfosuccinimidyl-6-(biotinamido)-hexanoate of M phi, freshly isolated monocytes, lymphocytes, granulocytes, and myelomonocytic U937 cells revealed that C1q occurs only on the surface of M phi and not on the surface of the other cells types. Therefore, C1q appears to be a marker for differentiation into M phi. FITC-labeled, fixed Staphylococcus aureus coupled to membrane C1q via a monoclonal alpha-hu-C1q Ab were used to demonstrate that membrane C1q is capable of mediating phagocytosis. Various detergents (Nonidet P-40, digitonin, lubrol, and Triton X-114) were used to solubilize membrane C1q. Membrane C1q of hu M phi is tightly bound to or located in the intact membrane, since treatment of cells with acidic buffers ("acid strip") failed to remove C1q from the cell surface. However, repeated freezing and thawing of cells and washing of segregated membranes with buffer containing 1 M KCl and 3 M urea brought about a marked release of membrane C1q.

Amino Acid Sequence↗

Solution structure of the epidermal growth factor (EGF)-like module of human complement protease C1r, an atypical member of the EGF family.

The calcium-dependent interaction between C1r and C1s, the two homologous serine proteases of the first component of human complement C1, is mediated by their N-terminal regions. The latter comprise an epidermal growth factor (EGF)-like module exhibiting the consensus sequence characteristic of Ca(2+)-binding EGF modules, surrounded by two CUB modules. Due to its Ca2+ binding ability, the C1r EGF-like module (C1r-EGF) is supposed to participate in the C1r-C1s interaction. An additional interesting feature of C1r-EGF is the unusually large loop connecting the first two conserved cysteine residues. The solution structure of synthetic C1r-EGF (residues 123-175) has been determined using nuclear magnetic resonance and combined simulated annealing-restrained molecular dynamics calculations. The resulting family of 19 structures is characterized by a well-ordered C-terminal part (residues Cys 144-Ala174) with a backbone rmsd of 0.7 A and a disordered N-terminal, including the large loop between the first two cysteines (Cys129 and Cys144). This loop is known to be surface exposed and may be expected to participate in domain-domain or protein-protein interactions. In its C-terminal part, C1r-EGF possesses the characteristic EGF fold with a major and a minor beta-sheet. The latter comprises a beta-bulge, and comparison with other EGF-like modules reveals the existence of two distinct structural and sequential motifs in the bulged part. Additional experiments in the presence of 80 mM Ca2+ did not show significant structural variation of C1r-EGF, in keeping with previous observations on blood-clotting factors IX and X.

Amino Acid Sequence↗

In vivo degradation of rat C1q induced by intravenous injection of soluble IgG aggregates.

Immune complexes are able to bind and activate the first component of complement, C1. Upon activation of C1, C1r and C1s are rapidly inactivated by C1-In which also forms a complex with these two subcomponents, resulting in their release from C1-immune aggregate complexes. The fate of C1q after the binding C1 to immune complexes in vivo is not clear and, therefore the clearance of radiolabelled rat C1q was investigated in normal rats and in rats receiving soluble aggregated human IgG. 125I-labelled rat C1q was cleared with a half-life (T 1/2) of 12.4 hr in normal rats. Injection of AIgG into rats that had previously received 125I-C1q accelerated the clearance of 125I-C1q, resulting, finally, in a T 1/2 of 53 min. The levels of circulating endogenous C1q were also followed using haemolytic titrations and immunochemical measurements. Directly after injection of AIgG into rats, there was a rapid decrease in C1q haemolytic activity to less than 25% of the initial value after 10 min. The rate of disappearance of C1q antigen, was, however, much slower, the lowest concentration being 30% at 2 hr. C1q haemolytic activity and the C1q antigen level returned to virtually normal values after 24 hr. Plasma samples were taken at different time intervals after the injection of AIgG and subjected to gel filtration on Sephacryl S-400 columns. It was found that, in the 10 min samples, C1q antigen and C1q haemolytic activity, each with an estimated molecular weight (MW) of 400,000, were detected together. In addition, there was C1q antigen with a MW of less than 69,000 without C1q haemolytic activity. SDS-PAGE analysis of the various serum samples indicated that the low MW C1q antigen had an apparent MW of 25,000. Measurement of uptake of 125I-C1q in various organs indicated that the main site of clearance of 125I-C1q is the liver.

Animals↗

Human immunodeficiency virus type 1 activates the classical pathway of complement by direct C1 binding through specific sites in the transmembrane glycoprotein gp41.

Human immunodeficiency virus type 1 (HIV-1), in contrast to animal retroviruses such as murine leukemia virus, is not lysed by human complement. Nevertheless, HIV-1 activates complement via the classical pathway independent of antibody, and C3b deposition facilitates infection of complement receptor-bearing cells. Using gel exclusion chromatography on Sephacryl S-1000, purified virions were found to bind 125I-labeled C1q, but not 125I-labeled dimeric proenzyme C1s. Virions activated the C1 complex, reconstituted from C1q, proenzyme C1r, and 125I-labeled proenzyme C1s, to an extent comparable with that obtained with immunoglobulin G-ovalbumin immune complexes. To determine the activating viral component, recombinant viral proteins were used: in the solid phase, soluble gp41 (sgp41) (the outer membrane part of gp41, residues 539-684 of gp160) bound C1q, but not dimeric proenzyme C1s, while gp120 was ineffective. In the fluid phase, sgp41 activated the C1 complex in a dose- and time-dependent manner, more efficiently than aggregated Ig, but less efficiently than immune complexes. To localize the C1 activating site(s) in gp41, synthetic peptides (15-residue oligomers spanning amino acids 531-695 of gp160) were used. Peptides covering positions 591-605 and 601-620 and, to a lesser extent, positions 561-575, had both the ability to bind C1q and to induce C3 deposition. These data provide the first experimental evidence of a direct interaction between the C1 complex and HIV-1, and indicate that C1 binding and activation are mediated by specific sites in gp41.

Binding Sites↗

Interaction of C1q with DNA.

With the aim of clarifying the relationship between the activation of the first component of complement (C1) by immunoglobulin and by polyanions, the mode of interaction of C1q with DNA was investigated by structural and inhibition studies. DNA inhibits C1q binding to IgG immune complexes (ICs) through binding to C1q rather than to IgG, as seen from two lines of evidence. Firstly, DNA does not bind to ICs under conditions where full binding to C1q is observed. Secondly, at I - 0.15, DNA inhibits more strongly when mixed first with C1q rather than with ICs. The inhibition of C1q-IgG binding by DNA is subject to kinetic factors. Firstly, DNA is not an effective inhibitor if added after C1q has bound to ICs. This at least in part reflects a portion of the IgG-bound C1q that exchanges only very slowly with free C1q. Secondly, the relative rates of association of C1q to DNA and ICs at different ionic strengths are important in determining whether inhibition is observed. The existence of a kinetic effect in the inhibition by DNA means that inhibition experiments cannot be used to establish whether DNa binds to the same site on C1q as IgG. This question was therefore approached by structural studies. Precipitation of C1q with DNA was greatly diminished by heat or pH 4.45 denaturation of C1q, by pepsin digestion to remove the globular heads, and by limited modification with 1, 2-cyclohexanedione. In contrast, extensive modification with methyl acetimidate only had a limited effect. In these respects the structural requirements for C1q-DNA precipitation were similar to those for C1q-Igg binding, as would be consistent with binding of DNA and IgG to nearby or overlapping sites on C1q. In view of residual DNA-precipitating activity in the pepsin fragment preparation of C1q, there is the possibility that there are additional DNA sites on the collagenous tails.

Amino Acids↗

Increase of serum complement levels in cancer patients with progressing tumors.

Complement levels (CH50, C3, C4 and C1q) were determined in sera of 90 healthy subjects and 200 cancer patients. Complement levels of cancer patients were significantly higher than those of the healthy subjects, but there was a stage-linked increase of complement levels. Patients in remission had nearly normal complement levels, but patients with local tumor had increased complement levels, and a further increase was observed in patients with distant metastases. Treatment of these patients with radiotherapy or cytostatic drugs lowered the complement levels. At the terminal phase of the disease we also noted a drop in complement levels.

Adolescent↗

Antibodies to the collagen-like region of C1q in sera of patients with autoimmune rheumatic diseases.

Antibodies to the collagen-like region of C1q have recently been observed in sera of patients with systemic lupus erythematosus (SLE). In this study, we documented that these antibodies were present in 47.3% of SLE patient sera, whereas they were uncommon in sera from patients with rheumatoid arthritis (2.8%) and Sjögren's syndrome (12.8%), as well as in normal sera (6.4%). Markedly elevated antibody levels (greater than 4 SD above the normal mean) were observed almost exclusively in sera of patients with SLE. Levels of antibodies to the collagen-like region correlated highly with levels of solid-phase C1q-binding IgG when analyzed by the C1q solid-phase assay for immune complexes (r = 0.87). We previously found that, after sucrose density gradient ultracentrifugation, a predominance of the solid-phase C1q-binding IgG in SLE sera sediments as monomeric IgG. These findings, together with the present data, indicate that reactivity of SLE patients' sera in the C1q solid-phase assay reflects primarily the presence of antibodies to the collagen-like region, and not the presence of immune complexes.

Arthritis, Rheumatoid↗