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Separation of Fc-binding serum proteins by preparative flat-bed isotachophoresis.

Preparative flat-bed isotachophoresis with discrete spacers was applied as a single-step procedure to separate 2 Fc-dependent activities of normal chicken serum, i.e., (1) the ability to raise the titre of haemagglutinating allo-antisera which is due to a high molecular weight beta-globulin (HEF), (2) the ability to activate guinea pig complement components in mixed complement reaction. The results demonstrate that the 2 activities can be clearly separated, and HEF must therefore be different from the first complement factor in the chicken. Under the chosen conditions the molecule active in the mixed complement reaction is not stacked in contrast to other serum protein including HEF. The same technique with human serum shows that human Clq behaves in the same was as the chicken complement factor. This means that by selective unstacking, flat-bed isotachophoresis can be used as an efficient single-step purification method for human and chicken Clq.

Animals↗

Direct adsorption of ssDNA to polystyrene for characterization of the DNA/anti-DNA interaction, and immunoassay for anti-DNA autoantibody in New Zealand White mice.

DNA was adsorbed directly to polystyrene in concentrated NaCl (1.2 M) during simultaneous denaturation to single stranded form by high pH (12.0). Adsorption of single stranded DNA to polystyrene under these conditions (HsDNA) was complete within 15 min. DNA was not dissociated from polystyrene by NaCl concentrations as high as 5.0 M, nor by Tween 20 concentrations up to 50%. The method was ineffective for dT15 adsorption to polystyrene. HsDNA adsorption to polystyrene was compared to an indirect method in which methylated bovine serum albumin (mBSA) was adsorbed to polystyrene after which DNA was electrostatically bound to mBSA. DNA/mBSA interaction was affected by as low as 0.3 M NaCl. Using the DNA/mBSA assay, sera obtained from New Zealand White (NZW) mice showed IgG anti-DNA activity in approximately 50% of mice tested. HsDNA assay found greater than 62% of NZW mice have 10 micrograms anti-ssDNA or more per ml serum. Complex formation involving C1q complement and ssDNA in HsDNA assay were shown to be negligible. Anti-DNA autoantibody production by NZW implicated the NZW parental strain in autoimmunity of F1 progeny obtained from the New Zealand Black X NZW cross.

Adsorption↗

Comparison of pathologic and normal sera by immune complex determination: five disease groups within 190 samples are discriminated by computer-selected combinations of 13 methods. Report of the Italian committee for the study of immune complexes (WIC).

Pathological (190) and normal (33) sera were tested for their content of circulating immune complexes (CIC) by a battery of 13 assays performed in 11 laboratories. Statistical processing was done both by pooling all pathological samples and by extracting those falling into well-defined disease groups, i.e., rheumatoid arthritis, diabetes, lupus, melanoma, and glomerulonephritis. Highly significant correlations between methods--taken two at a time--for each disease differed in proportion (ranging from 6 to 30%) and in the pattern displayed on a checkerboard. Disease-linked patterns were also found when a function maximizing discrimination between pathological and normal samples was derived by combining the information from all methods. Here the order and the weight attributed by the computer to the methods differed for each of the disease groups. Taken together these results are interpreted as an indication that all assays may not determine the same classes of CIC, and thus vary in sensitivity depending on the prevailing properties of the complexes present in the serum, which in turn may depend on the etiology, pathogenesis, and stage of the disease.

Antigen-Antibody Complex↗

Xanthogranulomatous pyelonephritis in renal transplant recipient.

Xanthogranulomatous pyelonephritis is reported in the native kidney of a renal allograft recipient. Immunoglobulin deposition in the transplant kidney in the absence of cell-mediated rejection, accompanied by selective cultures showing Escherichia coli from the native kidney, led to the diagnosis. Native nephrectomy resulted in resolution of the patient's chronic bacteriuria and creatinine elevation.

Adult↗

Preliminary report: complement activation in wasp-sting anaphylaxis.

The generation of the anaphylatoxin C3a was measured after a wasp-sting challenge in eight patients with previous anaphylactic reactions to wasp stings. Whereas there was no change in C3a in one patient who showed no reaction and only a slight rise in three patients with mild reactions, C3a rose substantially in the four patients with severe anaphylactic reactions. This complement activation is the first in-vitro variable which correlates with the severity of wasp-sting anaphylactic reactions. A role for complement activation in the pathophysiology of wasp-sting anaphylaxis is therefore suggested.

Adult↗

Interaction of bovine immunoglobulins with complement.

Whereas complement (C) in rabbit serum (CR) was bound by bovine antibodies in seven different IgG1 preparations, only two IgG1 preparations could bind the C in guinea pig serum (CGP). Addition of the Clq component of CR to CGP was alone sufficient to render the C-cascade in CGP activable in the presence of bovine erythrocytes sensitized with specific antisera, i.e. reagents. Normal bovine serum was also capable of restoring the haemolytic activity of CGP. However, the bovine serum was much more temperature sensitive than was CR and, as was observed in the sera from MZ twins, it showed considerable variation both in titre values and in prozones when added to CGP.

Agglutination Tests↗

Characterization of the activation of the human C1r complement molecule.

The proenzyme form of C1r was isolated by sequential chromatography from the euglobulin fraction of human serum on DEAE-Sepharose 6B-CL, CM-Sepharose 6B-CL and Sepharose S-300-CL. This C1r had the tendency to spontaneously activate within 60-90 min of incubation at 37 degrees C in presence of EDTA and more slowly in the presence of Ca2+. The spontaneous activation of C1r was found to be a bimolecular process and could be completely inhibited by DFP in the pH range 6-9 and in the presence of Ca2+ without affecting the hemolytic C1r activity. [14C]DFP bound to trace proteins in the 60-90 kD range, but not to C1r proenzyme. The spontaneous activation of C1r was diminished in the presence of EDTA by DFP, but could not be completely suppressed. EDTA acts by removing Ca2+ from C1r, thereby changing the conformation of the protein and causing an increased digestibility of the C1r H-chain. At temperatures above 0-4 degrees C this influence destroyed the ability of C1r proenzyme and enzyme to form macromolecular C1 and thereby abolished its hemolytic activity. We conclude from these results that the spontaneous C1r activation in the pH range 6-9 and in the presence of Ca2+ is due to contaminant proteases. C1r activated also spontaneously at higher pH values between pH 9 and 13.2, but the spontaneous activation ceased abruptly at pH 13.4. An intramolecular process of activation cannot be excluded at these high pH values. It is, however, not clear, whether this activation is a suitable model for the C1r activation in the C1 molecule, because the hemolytic activity of C1r was substantially diminished under the high pH conditions.

Complement Activating Enzymes↗

The binding and activation of the Clr-Cls subunit of the first component of human complement.

The value of the functional affinity constant between 125I-labelled Clq and the Clr-Cls tetramer (when free in solution) in the formation of Cl was found to be 3.6 X 10(7) M-1. When Clq was bound to activating immune complexes, the value of K was about 10-fold higher before initiation of activation and there was a further two to three-fold rise as activation proceeded. The addition of an excess of unlabelled Clq increased the rate of activation of 125I-labelled Cl, suggesting an interaction between Clr-Cls and two neighbouring Clq molecules. It is suggested that the tetramer Clr-Cls may bind bivalently to Clq when free in solution, but on binding to activating complexes, one of the Clr-Cls binding sites is detached from Clq and becomes bound to a site on the complex. The resultant spatial rearrangement of the Clr molecules within the tetramer may be optimal for autocatalytic activation of Clr.

Antigen-Antibody Complex↗

A reinterpretation of the evidence for an interaction between Clq and pairs of immunoglobulin molecules in an immune lattice.

An error in a previous article [Cohen S. (1968) J. Immun. 100, 407-413] was discovered which invalidates it as evidence that IgG immune complexes activate the classical complement pathway by an interaction involving pairs of antibody molecules, so-called doublet formation. The error concerns the correction to be made for the observed 8% residual activity of the modified antibody preparation used. When appropriate correction factors are applied, the data are found not to be consistent with the hypothesis of doublet formation. The analysis presented here has no bearing on the original article's experimental techniques, nor on its demonstration of co-operation between IgG molecules during complement fixation.

Antigen-Antibody Complex↗

Kinetics of activation of the first component of complement (C1) by IgG oligomers.

The rate of activation of the first component of complement, Cl, by IgG oligomers was investigated. The kinetics of Clr activation exhibited a pronounced lag phase at low IgG concentration and were followed by a rapid conversion of the proenzyme Cls to Cls. Activation of Cl resulted in a conformational change of this complex. Bases on these results, a model of Cl activation by IgG oligomers is proposed: The efficiency of Cl activation by IgG oligomers is in parallel to their binding affinity to Clq. Clr undergoes a slow rearrangement to a conformation which is not stable and is autoactivated, then Clr rapidly converts Cls to Cls.

Antigen-Antibody Complex↗

Sequence of ovine Ig gamma 2 constant region heavy chain cDNA and molecular modelling of ruminant IgG isotypes.

Ovine mesenteric lymph node mRNA was used for PCR amplification of DNA coding for immunoglobulin gamma 1 and gamma 2 heavy chain constant regions. Primers complementary to regions of CH1 conserved between ruminants were used for upstream priming, with downstream priming on the poly-A segment. PCR products of the appropriate length were cloned and gamma positive clones selected with a CH1 conserved-region probe. Of these, gamma 1 clones were positively selected and gamma 2 clones negatively selected with a gamma 1 hinge-specific probe. Ovine gamma 2 cDNA has 93% identity of nucleotides with ovine gamma 1. Both ovine gamma 1 and gamma 2 CH1 domains encoded two consecutive cysteine residues (Cys-127, -128, Kabat numbering), an arrangement which is deduced to form a pair of disulphide bridges, one to the L chain and one as an intra-chain bridge to the uppermost Cys of the hinge, as in rabbit and goat IgG. The majority of the differences between the isotypes occur in the hinge region and an evolutionary pattern for ruminant IgG hinges can now be identified. IgG1 isotypes are typical, with hinges containing the C-terminal Cys-Pro motif, but deletion and replacement of nucleotides (in the ancestral gene) of ruminant gamma 2 has shortened the IgG2 hinge, removing the Cys-Pro motif and the consensus high affinity Fc gamma RI receptor motif at the start of CH2. An N-terminal glycosylation site and the peptide motif for complement C1q binding are present in CH2 of both isotypes. The hinge regions of gamma 1 and gamma 2 and predicted structures for ovine IgG1 and IgG2 have been modelled. Close apposition of Fab and Fc in IgG2 produces steric hindrance at the normally accessible Fab/hinge/Fc interface; the structural differences between the ruminant isotypes form a basis for understanding some of the differences in their effector properties.

Amino Acid Sequence↗

Single-step purification of F(ab')2 mu fragments of mouse monoclonal antibodies (immunoglobulins M) by hydrophobic interaction high-performance liquid chromatography using TSKgel ether-5PW.

A procedure is described for preparation and single-step purification of F(ab')2 fragments, herein designated as F(ab')2 mu' from mouse monoclonal antibodies of the IgM class. Hydrophobic interaction high-performance liquid chromatography (HPLC) using TSKgel Ether-5PW was well applicable to the purification. The IgM was digested with pepsin at the pepsin-to-IgM ratio of 1:200 (w/w) in 100 mM citrate buffer (pH 4.2) at 37 degrees C for 2 h. The digests were applied to the gel equilibrated with the buffer containing 1 M ammonium sulfate. F(ab')2 mu fragments were adsorbed onto the gel with the same buffer, and eluted by reducing the ammonium sulfate concentration to 0 M. The fraction containing F(ab')2 mu fragments was homogeneous (purity higher than 97%) by both sodium dodecyl sulfate-polyacrylamide gel electrophoresis and gel-filtration HPLC. The recovery of the antigen-binding site was 55-72%. The cycle time of the Ether-5PW HPLC was 40 min, and up to 98 mg F(ab')2 mu fragments. The molecular mass of F(ab')2 mu was estimated to be 144-146 kDa. In comparison with IgM, F(ab')2 mu lost entirely the complement C1q binding activity, and the sugar content was greatly reduced. The binding of IgM with non-specific proteins turned to be negligible, when IgM was converted to F(ab')2 mu, suggesting that the fragments are useful for immunological application.

Animals↗