Differences in the functional activity of human and guinea pig C1 based on their reactivity with IgG at low temperature.
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Biomedical subjects
Publications and source records attributed to M D Boyle.
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Absorption of rabbit antiserum to Forssman antigen with immobilized staphylococcal Protein A or concanavalin A selectively removed IgG or IgM antibodies, respectively. This absorption procedure was more rapid than ion exchange chromatography on DEAE cellulose or molecular sieving on Sephadex G-200 and gave a better yield of functionally purer antibody. This absorption method gave antiserum suitable for the preparation of either IgM or IgG sensitized sheep erythrocytes and should be of value for the large-scale preparation of indicator cells required for the study of complement action and for detection of specific receptors on cell surfaces.
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The intermediate product EAC1-7 released hemoglobin when incubated with high concentrations of GPC8 in the absence of C9. The reaction failed to reach an end point within 8 hr at 37 degrees C, and analysis of the kinetics indicated that it did not conform to the one-hit theory of immune hemolysis, and was not, therefore, the result of C9 contamination of the C8 preparation. The release of 86Rb from labeled EAC1-7 incubated at 30 degrees C with limiting C8 and excess C9 was paralleled, within 5 to 10 min, by release of hemoglobin. In the absence of C9 and with higher concentrations of C8, 86Rb was released rapidly, but hemoglobin release was delayed for several hours. Addition of excess C9 to concentrations of C8, which did not alone cause 86Rb release, resulted in substantial release of the isotope. These observations indicate that C9 acts by producing a distinct lesion in the cell membrane rather than by accelerating the release of hemoglobin from the C8-initiated 86Rb-releasing lesions. It is concluded that 86Rb release cannot be used as a reliable indicator of cell lysis and that C8- and C8/C9-mediated hemolysis are the result of mechanistically different processes.
The failure of functionally purified C5gp to reconstitute the hemolytic complement (C) activity of C5-deficient human serum was studied. The lack of hemolytic activity of C5gp in this system could not be correlated with the failure of EAC1-3hu to bind and activate C5gp, but was related to the failure of EAC1-3hu5gp6hu to efficiently bind C7hu in a form that would lead to lysis when HuC8 and HuC9 were added. This failure was not observed with EAC1-3gp5gp6hu or EAC1-3hu5hu6hu, which could be lysed with any combination of human or guinea pig C7 through C9. The implications of these findings on the control of the lytic C attack mechanism by the initial components in the C cascade are discussed.
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Methods for preparing chicken erythrocytes (CE) with C7 bound to their surface were devised by using either the classical pathway (CEA1-7) or an activated 56hu reagent (CE567) derived from inulin-treated human serum. These intermediates were used to study the lysis of CE by functionally purified C8 and C9 isolated from guinea pig and human serum. The results indicated that GPC9 was less efficient in lysing CEA1-8 or CE5678 than HuC9. This finding was observed irrespective of the species of C8 used. Experiments designed to analyze this difference indicated that there were two functionally distinct forms of C5b-8 that were randomly distributed among the cells but differed in their ability to generate a C lesion depending on the species of C9 used to complete the reaction. The implications of these results on the mechanism of generation of C lesions are briefly discussed.
The interaction between the complement components in human serum and the dye, Cibacron Blue F3GA, immobilized on cross-linked agarose (Affi-Gel Blue) has been studied. All nine components of the classical complement pathway bound to the dye and could be recovered using a linear salt gradient. With the exception of C5 and C8, all the components were eluted over a narrow NaCl concentration range, with the following yields: C1, 17%; C2, 69%; C3, 92%; C4, 87%; C6, 105%; C7, 109%; C9, 128%. C5 and C8 eluted throughout the NaCl gradient with yields of 103% and 14%, respectively. Since all components could be eluted without substantial contamination by albumin or IgG, this procedure may prove valuable as an initial step in the purification of complement components. In addition, the ability of immobilized Cibacron Blue F3GA to physicallly remove complement components may prove useful for both the decomplementation of serum and in elucidating the role of complement in immunological reactions.
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The inhibitory effects of 0.1 M EDTA on the lysis of E prepared by incubating EA with whole GPC was studied. At high end point lysis (greater than 70%) 0.1 M EDTA failed to prevent hemoglobin release whereas at lower end point (less than 60%) 0.1 M EDTA was effective. In all cases hemoglobin release was inhibited by 25% BSA. When E were prepared by incubating EAC1-8 with C9, similar results were obtained. In this system the difference in the ability of 0.1 M EDTA to inhibit hemoglobin release at high or low end point lysis could not be correlated with the low end point lysis could not be correlated with the number of lesions/cell but appeared to be related to the C9 to SAC1-8 ratio. With limiting SAC1-8 and excess C9, E were produced from which hemoglobin release could not be prevented by 0.1 M EDTA whereas at lower C9 to SAC1-8 ratios hemoglobin release was prevented by 0.1 M EDTA. These differences most probably reflect functionally different sized transmembrane channels that were produced at different C9 to SAC1-8 ratios.
We have previously shown that 0.1 M EDTA could be used to distinguish functionally different transmembrane channels produced during complement-(C) mediated hemolysis of E. In this paper we have studied the ability of sugars of varying Stokes' radii to prevent hemoglobin release from E intermediates whose lysis was inhibitable or not inhibitable by EDTA. On the basis of these experiments we propose that the inhibition of E transformation by high molarity EDTA occurs by virtue of the size of the EDTA molecule in solution. Studies on the effect of EDTA on red cell lysis induced by polyene antibiotics that form transmembrane channels of a defined size support this conclusion. The results of these experiments were interpreted to mean: 1) The EDTA inhibitable lesion of E has a smaller effective radius than the noninhibitable lesion; 2) the effective radius of the smallest lesion that yields a lytic site was less than 3.6 A; 3) the lesions produced in the red cell membrane by C are not uniform but vary in size depending on the C9 to SACl-8 ratio used to produce E.
Metabolic inhibitors which have been shown to increase the sensitivity of the guinea pig hepatoma, line 10, to antibody-guinea pig complement killing were tested for their effect on the intracellular cyclic adenosine 3':5'-monophosphate (cAMP) level of the line 10 cells. It was found that cells rendered sensitive to antibody-guinea pig complement killing following drug treatment showed a decrease in their intracellular cAMP levels. Increased susceptibility to lysis was always associated with decreased intracellular cAMP levels. Optimal doses of certain inhibitors effectively increased the sensitivity of the cells to complement-dependent lysis and decreased the intracellular cAMP levels. Other drugs which did not increase sensitivity of the cells to lysis also failed to decrease the intracellular cAMP levels. No experimental conditions were found in which intracellular cAMP levels were decreased without an increase in the susceptibility of the cells to antibody-guinea pig complement killing.
A method for the quantitative determination of rabbit IgM bound to cell surfaces has been developed. This method was based on the ability of goat IgG specific for rabbit IgM heavy chains to bind 125I-labeled protein A when bound to the antigen. With the use of this technique the production of specific IgM antitumor antibodies in New Zealand White rabbits after immunization with guinea pig hepatoma cells line-1 and line-10 was followed. Differences in the production of IgM were observed between the different bleedings from rabbits immunized with line-1. No significant IgM antibody was produced following immunization of rabbits with line-10 tumor cells. This indirect method for determining IgM on the cell surfaces was objective, easy to perform, and detected complement-fixing and noncomplement-fixing antibodies. In addition, this technique could be applied to quantify other components on the cell surface for which a suitable specific antibody was available.
The inhibitory effect of metal salts on the formation and transformation of E to ghosts was studied. Ferrous and ferric salts inhibited the binding of C9 to EAC1-8 cells but had no other inhibitory role in the reaction. Uranly, copper, and zinc salts inhibited the transformation of the EAC1-9inserted intermediate to E ghosts. This inhibition occurred at a stage prior to detectable damage as measured by 86Rb or hemoglobin release and at a step prior to that inhibitable by high molarity EDTA. Consequently a further step in the reaction sequence of E to ghosts was identified. The reaction sequence leading from EAC1-9 to ghosts can be summarized as follows: formula: (see text).
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