The complement system and inflammation.
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Biomedical subjects
Publications and source records attributed to J O Minta.
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Fresh human plasma was treated with proteinase inhibitors and passed through an immunoadsorbent column of Sepharose anti-C3 globulin. The insolubilized C3 was eluted with 5 M guanidine and, after extensive dialysis, was reduced with 0.2 M 2-mercaptoethanol and electrophoresed on SDS-polyacrylamide gels. The bulk of the eluted C3 dissociated into two major protein bands, m.w. 125,000 and 75,000 corresponding to the alpha- and beta-chains of C3. In addition, a nonreducible single polypeptide chain (SPC) with a m.w. value of 197,000 +/- 2,000 similar to the apparent m.w. of unreduced C3 was consistently present. SPC has been purified by elution from SDS (SPC) and found to remain a single polypeptide chain upon re-electrophoresis on SDS gels in the presence of 0.2 M 2-mercaptoethanol. The purified SPC reacted with antisera to denatured C3, C3alpha, and C3beta chains. Additionally, antisera to SPC, also reacted with denatured C3, C3alpha-, and C3beta-chains, revealed a reaction identity between SPC and C3, and detected partial identity between SPC and C3alpha- as well as C3beta-chains. This suggested that SPC and C3 are antigenically related. The amino acid compositions and tryptic peptide maps of SPC and C3 were similar. Based on these findings, it is suggested that SPC must represent a single-chain precursor C3 (pro-C3) in plasma that escaped post-synthetic proteolytic cleavage into a two-subunit chain C3 molecule.
We wished to determine if inhibitors of the complement system are present in different rabbit ocular tissues. Soluble extracts of cornea, vitreous humor and chorioretina in different dilutions were incubated with normal human serum (as source of complement). The ability of the latter to lyse sheep erythrocytes sensitized with antisheep rabbit hemolysin was assessed. The cornea did not show any inhibition of complement. The vitreous humor exhibited very low inhibitory activity. The extracts of the uveo-retinal tissue contained heat-labile and heat-stable factors capable of cleaving C3 and factor B.
Hypercholesterolemia was induced in rabbits by feeding Purina Chow supplemented with cholesterol (5 g/kg body weight/day). The serum cholesterol levels of these rabbits increased progressively and after 3 to 5 months were 4 to 9-fold greater than those of the control animals. Decrease in total hemolytic complement was not apparent during the feeding regimen. Morphologic examination of aortae of these hypercholesterolemic rabbits showed typical atherosclerotic intimal plaques. Immunofluorescent microscopy with fluorescein (F)-labeled anti-rabbit C3 showed deposition of C3 in the intimal and inner medial layers as early as 3 months on high cholesterol diet. C3 deposits were also observed in the renal glomeruli and in the walls of coronary arteries. However, fluorescent studies failed to demonstrate the presence of IgG, IgM, and C4 at these sites. Tissues from control animals fed normal diets were negative for immunoglobulins, C3, and C4. These results suggest that the complement system may be implicated in the pathogenesis of cholesterol-induced atherosclerosis in rabbits.
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We wished to determine if inhibitors of the complement system are present in the normal rabbit lens. Soluble less extract in various dilutions was incubated with normal human serum (as source of complement). The residual hemolytic activity was measured using sheep erythrocytes sensitized with antisheep rabbit hemolysin. The lens extract was found to contain two heat stable anticomplementary factors of different molecular weights capable of cleaving C2 and C4. Gel filtration showed that one of these factors was located in the alpha-crystalline region. It is suggested that the anticomplementary factors in the lens may be related to a natural mechanism for the modulation of complement mediated lens injury.
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A simple one-step radial hemolytic assay for properdin has been devised. In this assay, the test material is introduced into a well in an agarose plate containing optimal concentrations of normal human serum immunochemically depleted of properdin (RP), EGTA, magnesium ions and unsensitized guinea pig erythrocytes. Following radial diffusion, the area of the hemolytic zones resulting from the activation of the alternative complement pathway and bystander lysis of guinea pig erythrocytes was directly proportional to the concentration of properdin in the test material. The assay is specific reproducible and sensitive and the correlation with the radioimmunoassay for properdin is very good. The assay has been used to measure properdin activity in animal sera.
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A simple one-step procedure has been developed for the molecular titration of C2 by utilizing the ability of the test material to restore the hemolytic activity of human serum selectively deficient in C2 (C2D serum). In this assay, equal volumes of EA (10(8) cells/ml), C2D serum (1/20), and a suitable dilution of a source of C2 were incubated at 37 degrees C for 60 min and the fraction of cells lysed was used to calculate the effective molecules of C2/ml test material. The assay can be used to titrate C2 in human, guinea pig, rat, mouse and rabbit sera, but not C2 in dog serum. The assay is simple and reproducible, and comparable in sensitivity to the conventional two-step assay with EAC14 cells and Cgp-EDTA.
Human C5 is composed of two nonidentical polypeptide chains, alpha and beta (m.w. 130,000 and 80,000, respectively) linked together by disulfide bonds and noncovalent forces. Cleavage of C5 by trypsin fragments with increased anodic mobilities. Limited digestion of C5 by trypsin (substrate to enzyme ratio 10:1 w/w at 37 degrees C for 1 min) resulted in the release of a small terminal alpha-chain peptide (alpha1, m.w. 15,000) probably analogous to C5a, from a large fragment, C5b (m.w. 195,000) composed of an intact beta-chain disulfide linked to an alpha-chain that has a lower m.w. (alpha' 115,000). Further digestion (37 degrees C, 5 min) resulted in cleavage of the alpha-chain at multiple sites with the production of three peptides from the alpha'-chain (alpha2I, 23,500; alpha2II 15,700 and alpha2III 10,200) and a residual fragment, C5c (m.w. 144,000). The alpha1 and alpha2 peptides are not covalently linked to the beta-chain nor to one another. The C5c fragment on the other hand is composed of small peptides of the alpha'c chain (alpha3 14,000; alpha4I 9,000; ALPHA 4II 11,000; alpha 5 23,000 to 30,000) which are linked to the beta-chain and also probably to one another by covalent bonds. Secondary cleavage occurred upon prolonged digestion with trypsin (37 degrees C, 20 min), and this resulted in the progressive erosion of the alpha'c peptides and the conversion of C5c to smaller C5c-like species.
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The kinetics of cleavage of C3 by trypsin was analyzed by electrophoresis in agarose and in polyacrylamide gels containing sodium dodecyl sulfate and the data obtained were used to construct an anatomical model for C3 showing the sites of tryptic attack, the fragments generated, and their composition. Trypsin was shown to cleave C3 in a stepwise fashion. The attack was initially directed at the alpha-polypeptide chain and resulted in the generation of C3a and C3b. Further cleavage of the alpha-chain of C3b, converted it into C3b1 and then into C3d and C3c. Cleavage of the beta-chain by trypsin occurred only at the C3c stage with the release of a small peptide (m.w. 12,000) from C3c and the formation of C3c'. On immunoelectrophoresis, C3c' had a less anodal mobility compared to the beta1A mobility of C3c. C3a, once formed could be further cleaved to give residual fragments with decreasing net positive charge. Exposure of C3 to acid conditions, pH 5.0 or below, rendered the molecule exceedingly susceptible to tryptic degradation.
Typical features of IgA-associated nephritis were found in renal biopsies from 16 of 355 consecutive patients. Generalized segmental mesangial proliferation was noted in biopsies from most patients, and dense deposits were detected by electron microscopy in mesangial regions of approximately 50% of biopsies. Immunofluorescent studies showed IgA to be the predominant immunoglobulin in glomueruli; IgG was present in less than 50% of biopsies and IgM in only 12%. The serum IgA value was significantly increased (P les than 0.001) in 50% of patients and the mean IgA/IgG ratio was significantly increase (P less than 0.001) for the patient group as a whole, which suggests a selective increase in IgA. Mesangial deposits of C3 were present in 15 of 16 biopsies and properdin was noted in all biopsies tested; C4 was not demonstrated in any biopsy. This suggests activation of the alternative complement pathway. The results of this study support the concept that IgA-associated nephritis is a unique condition that in some patients gives rise to idiopathic recurrent hematuria. Although the prognosis is good in the majority of patients, the renal disease may progress.
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