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M Loos

Publications and source records attributed to M Loos.

At least 127 records · Page 7Linked to original sources

The role of accessory cells in polyclonal T cell activation. I. Both induction of interleukin 2 production and of interleukin 2 responsiveness by concanavalin A are accessory cell dependent.

Recent studies from other laboratories have shown that concanavalin A (Con A) acts at two separate steps in polyclonal T cell activation: interleukin 2 (IL2) production, and induction of responsiveness to IL2. Using a combination of techniques for the depletion of accessory cells from lymph node T cells, we have investigated which of these steps, if not both, is responsible for the known requirement for accessory cells in the Con A response. It was found that with increasing T cell purification, first the ability is lost to produce sufficient levels of endogenous IL2, whereas induction of IL2 responsiveness can still take place. Further removal of accessory cells however yields a population of resting T cells that cannot be induced by Con A to become IL2-reactive. It was concluded that both IL2 production and induction of reactivity to IL2 are accessory cell-dependent events.

Animals↗

Purification and physicochemical properties of C1q from guinea-pig serum.

An efficient method is described for the isolation of highly purified, IgG-free and stable guinea-pig serum C1q. The procedure includes the chromatography of EDTA-treated serum (25 mM EDTA) on CM- and DEAE-cellulose followed by gel filtration on ACA 34-Ultrogel whereby ammonium sulfate precipitation was used for concentration. The final product stored in a glycerol containing buffer was purified 700-fold with a yield of approximately 50%. It was judged to be homogeneous by several criteria including SDS-PAGE, analytical ultracentrifugation, gel filtration and immunoprecipitation. The protein has a sedimentation rate of 11.3 S and consists of three distinct polypeptide chains A, B and C with mol. wts of 30,200, 28,200 and 24,000. Amino acid analysis revealed a content of 4.42% hydroxyproline, 1.81% hydroxylysine and 18.7% glycine. In contrast to human serum C1q a very low content of cysteine residues was detected. SDS-PAGE analysis performed in the absence of 2-mercaptoethanol but in the presence of 5-10% SDS revealed clearly that gps-C1q is dissociated in a time-dependent manner into the individual chains.

Amino Acids↗

Activation of the first component of complement, C1: comparison of the effect of sixteen different enzymes on serum C1.

In this study, the effect of sixteen different enzymes on serum C1 and its subcomponents was investigated. The sixteen enzymes could be divided into three groups. First, enzymes which activate native C1: trypsin (optimal concentration 2.4 x 10(-4) mM); alpha-chymotrypsin (2.3 x 10(3) mM); thrombin (1.0 x 10(-5) mM); plasmin (1.9 x 10(-5) mM); elastase (5.8 x 10(-5) mM); pronase (3.0 x 10(-6) mM). All these enzymes are serine esterase and activate native serum C1 bound to EAC4 at the given concentration within 10 min at 30 degrees C. Furthermore, native C1 inhibited by a pentosanpolysulfoester, Sp54, is unable to undergo the internal activation but can be externally activated by the serine esterases. Second, enzymes which do not activate native C1 but result in a dose and time-dependent loss of C1 activity: collagenase; pepsin; carboxypeptidase B. Third, enzymes which have no effect on C1 and C1: Lysozyme; neuraminidase; beta-galactosidase; L-amino acid oxidase; arginase; streptokinase, and acetylcholinesterase.

Animals↗

[Clinical findings in children with selective deficiency of Clq, a subunit of the first component of complement].

Recently we diagnosed a new complement defect, namely, selective deficiency of the Clq subcomponent of Cl. This defect was manifested by recurrent skin lesions, bouts of serious infections and membranoproliferative glomerulonephritis [4,5]. Within the past two years, we have diagnosed two new similar cases by paying attention to recurrent skin disease and associated symptomatology [7]. These patients had a bad prognosis due to severe bacterial infections and chronic kidney disease. In addition, discovery of new cases should be of help in explaining the importance of complement for host-parasite interactions and whether it is important for their management that an underlying deficiency of Clq be detected in similar cases. It is the purpose of this report to analyze common clinical findings and symptomatology in patients with selective complete Clq deficiency [4-7] and to compare them with other reported cases of Clq defects.

Albuminuria↗

The functions of endogenous C1q, a subcomponent of the first component of complement, as a receptor on the membrane of macrophages.

C1q, the Fc-recognizing subcomponent of the first component of complement is synthesized by peritoneal macrophages. During the secretion phase C1q serves as an Fc-binding protein in the membrane of macrophages. The Fc-mediated rosette formation was inhibited in a dose-dependent manner when macrophages were pretreated with anti-C1q F(ab')2, whereas C3b rosette formation was not affected. Furthermore, preincubation of peritoneal macrophages with anti-C1q F(ab')2 abolished, dose- and time-dependently, the polyanion-mediated stimulation of secretion of lysosomal enzymes. Polyanion-induced enzyme release was prevented after incubation of polyanions with highly purified C1q. The inhibition of Fc receptor activity by polyanions (i.e. dextran sulfate, liquoid, polyvinyl sulfate) is completely reversed upon treatment of these macrophages with protamine. These findings are compatible with the hypothesis that C1q produced by macrophages serves in the macrophage membrane as an endogenous receptor for Fc and polyanionic molecules. Thus, C1q mediates cell-bound biological receptor functions before it is released from these cells and is incorporated into the macromolecular C1 complex.

Animals↗

Requirement for an additional serum factor essential for the antibody-independent activation of the classical complement sequence by Gram-negative bacteria.

Killing of Salmonella minnesota and Salmonella typhimurium S and R strains in serum of nonimmune humans and guinea pigs was drastically reduced in the selective absence of C1q, C1r, Ca2+, C4, or C2, the components of the classical complement pathway. Binding of C1 and C1q to the S form and six different core-deficient R mutant strains became stronger the shorter the lipopolysaccharide molecule. C1 and C1q had, under physiological conditions, no affinity to the serum-resistant S forms, whereas these components were bound by the serum-sensitive R forms with high affinity. However, a mixture of the individual complement components C1-C9, which rapidly lysed sensitized erythrocytes, did not kill the serum-sensitive bacteria. Isolated C1 bound to these bacteria cleaved fluid-phase C4 but did not convert C2. C2 turnover could be detected only when serum was used as a source of C1 or C4, indicating that an additional serum component is necessary for the antibody-independent bactericidal effect. Functional tests indicated that this factor is a euglobulin which mediates binding of C4 to the bacteria even in the absence of C1 or after treatment with EDTA. Binding of C4 followed by the generation of C4b sites as acceptors for C2 was a prerequisite for the killing of the bacteria. The factor could not be replaced by immunoglobulin G or immunoglobulin M, nor was it blocked by preincubation with anti-immunoglobulin G or anti-immunoglobulin M.

Animals↗

Conformational changes in C1q after binding to immune complexes: detection of neoantigens with monoclonal antibodies.

The formation of neoantigens within the C1q molecule after the binding of C1r and C1s to C1q and the binding of C1q to immune complexes is described. The neoantigens were detected by different monoclonal anti-C1q antibodies. This immunochemical study supports the hypothesis drawn from functional studies that the activation of the classical C pathway results from conformational changes within the C1q molecule leading to the activation of C1r and subsequently C1s.

Animals↗

Immunofluorescence studies on the subcomponents of the first component of complement (C1): detection of C1q and C1s in different cells of biopsy material and on human as well as on guinea pig peritoneal macrophages.

The first component of complement (C1) is a macromolecule consisting of three distinct subcomponents, C1q, C1r, and C1s. In regard to its production site and its role in phagocytic processes it was of interest to find out whether these different subcomponents could be detected in human biopsy material only as a complex in individual cells or whether C1 subcomponents could be found on different cells. To study this question, monospecific fluorescein-labelled anti-human-C1q IgG and monospecific rhodamine-labelled anti-human C1q IgG were used. Biopsy material from human rectum was stained with fluoresceinated antisera, either by use of one antiserum or by double staining. Using this technique, these observations were made: C1q as well as C1s were detectable in individual cells in the subepithelial area of the gut. Furthermore, C1q and C1s could be found together in the same cell or separately in different cells. These findings were supported by experiments with cultured peritoneal macrophages either from human or from guinea pig. The examination of the cultured cells with the two antisera revealed that individual cells were stained either by anti-C1q or by anti-C1s antibodies. The specificity of the detection of the individual subcomponents was also proven by the peroxidase technique and by using fluoresceinated anti-human C1q F(ab')2. The membrane immunofluorescent staining revealed the presence of C1q on the membrane of the macrophage.

Animals↗

Antibody-independent binding of the first component of complement (C1) and its subcomponent C1q to the S and R forms of Salmonella minnesota.

Strong bactericidal effects of normal guinea pig and human sera against the Salmonella minnesota S form and an R form (Re) depend on Ca2+, complement component C4, and subcomponent C1q of complement component C1. Therefore, the interaction of C1 and C1q with these forms was investigated. The bacteria directly bound subcomponent C1q, as demonstrated by fixation and transfer tests and by fluorescent methods. Binding of macromolecular C1 was shown by fixation and transfer tests and by C4 consumption. C1 fixation and transfer tests provide evidence that C1 and C1q were bound more tightly to the Re form than to the S form. At physiological ionic strength, all cell-bound molecules were released from the S form, whereas at least 60% remained on the cell surface of the Re form. The Re form showed another binding behavior for C1: preincubation of bacteria with purified C1q totally prevented C1 uptake by the S form, compared to only 10% inhibition of the uptake by the Re form. Therefore, we conclude that macromolecular C1 is bound differently by the S form than by the Re form. The analysis of five other core-deficient mutants of S. minnesota (Ra, Rb, Rc, Rd1, and Rd2) revealed that the difference could be explained by a deficiency of the O-specific polysaccharide. In contrast, all the C1q bound to Ra, Rb, and Rc mutants was detectable by the transfer test. Therefore, we postulate that binding of macromolecular C1 to these mutants must be due to an additional C1 subcomponent besides C1q.

Animals↗

Nocodazole entrapped into liposomes: no more effect on human CFU-C than free nocodazole.

Nocodazole, a water insoluble antimitotic drug active on L1210 leukemia was incorporated into liposomes, to investigate whether this procedure could increase cellular uptake. The effects of micronized nocodazole and liposome-entrapped nocodazole were compared on human marrow cells in vitro using a myeloid progenitor cell assay (CFU-C). The human CFU-C were sensitive to the micronized drug in a dose-related fashion. However, contrasting with a previous report on L 1210 leukemia, entrapping of nocodazole into liposomes did not increase its activity of CFU-C of either normal or leukemic subjects.

Antineoplastic Agents↗

Evidence that C1q, a subcomponent of the first component of complement, is an Fc receptor of peritoneal and alveolar macrophages.

Guinea pig peritoneal macrophages were cultured for 24 h in the presence of two inhibitors of the biosynthesis of collagen-like molecules such as C1q : 10(-3) M 3,4-dehydroproline or 10(-4) M 2,2'-dipyridyl. Their Fc-receptor activity was measured by rosette formation, using sheep erythrocytes (E) coated with rabbit anti-sheep IgG (EAIgG). The Fc-receptor activity was decreased by 40 to 70% of control cultures depending on the amount of IgG on the E. The activity of a second receptor on the macrophages, mediating the binding of C3b coated E, was not altered by this treatment. Rat alveolar macrophages were depleted of their Fc-receptor activity by pronase treatment (1.5 mg/ml) in the presence of 2,2'-dipyridyl. After washing the cells, the EAIgG-binding activity was restored to about half of the initial level within 2 h. With 2,2'-dipyridyl also present during the second incubation, the re-expression of the Fc-receptor activity was suppressed further. Preincubation of guinea pig peritoneal macrophages with anti-C1q-F(ab')2 for 45 min at 37 degrees C caused a dose-dependent reduction of the Fc receptor activity, but not C3b receptor activity. These results support our hypothesis that C1q synthesized and secreted by macrophages serves as an Fc-receptor in the membrane during the secretion.

2,2'-Dipyridyl↗

Analysis of the anticomplementary activity in sera of three African patients with parasitic and bacteriological infections.

The sera of three different patients from Togo, Africa were investigated with respect to their complement profile. The three patients were suffering from parasitic (Onchocerca volvulus) and bacteriological (Treponema pertenue) diseases. The total hemolytic activity (50% hemolytic complement) was markedly depressed. The analysis of the individual complement components revealed the the titers of C1, C2, C3, and C4 were lowered up to 90%, indicating an activation of the classical pathway of complement. Addition of the patients' sera to normal human serum induced a temperature-dependent consumption of C4 and C2, whereas C3 was not affected. This activity in the patients' sera eluted from a Sephadex-G-200 column with the 19 S peak and could be identified as the activated form of the first component of the complement system. The reason for the presence of activated C1, C1 in the patients' sera resides in the absence of functionally active C1 inactivator.

Adult↗

Killing of the S and Re forms of Salmonella minnesota via the classical pathway of complement activation in guinea-pig and human sera.

The S (wildtype) and Re form (heptose-deficient, core-defective mutant) of Salmonella minnesota were killed by treatment with normal guinea-pig serum (GPS). Using C4-deficient GPS and serum containing 0.02 M ethyleneglycol-bis-(beta-aminoethylether)-tetraacetic acid and 0.02 M MgCl2 (EGTA-Mg2+) a reduced killing rate was observed. In normal GPS diluted 1:10 containing 0.02 M EGTA-Mg2+ or in C4-deficient GPS diluted 1:10 no killing occurred, whereas the same serum dilution without EGTA-Mg2+ showed a strong bactericidal effect indicating a dependency upon C4 and Ca2+ ions. Furthermore, in contrast to normal human serum (NHS) no killing occurred in a selective complete C1q-deficient human serum. The bactericidal effect, however, could be restored by addition of highly purified C1q; this is a further indication for a dependency upon the classical pathway of C activation. The C-dependent bactericidal activity was totally abolished when phosphate buffer was used, partially reduced in the presence of veronal-buffered saline (VBS), and not affected by tris-(hydroxymethyl)-aminomethane(Tris) or thioglycollate-buffered system EGTA-Mg2+ alone slightly reduced the growth rate of the bacteria whereas disodium ethylene diaminetetraacetate (EDTA) had a bacteriostatic effect on the S-form. The inhibition of the growth of the Re-form by EDTA was amplified by the addition of serum. Pre-incubation of bacteria with serum for absorption of antibodies did not increase the killing rate of such pre-treated bacteria excluding an antibody-mediated bactericidal reaction. Furthermore, pre-treatment of the bacteria with GPS at 0 degrees reduced the serum sensitivity of both types of bacteria.

Animals↗