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Mark J Walport

Publications and source records attributed to Mark J Walport.

13 recordsLinked to original sources

Lupus-prone mice have an abnormal response to thioglycolate and an impaired clearance of apoptotic cells.

Deficiency of complement in humans and mice is associated with the development of lupus and with abnormal repair of inflammatory and immune complex-mediated tissue injury. Here we ask whether similar defects in the resolution of inflammation are found in mice prone to spontaneous lupus. We compared the response to an i.p. injection of thioglycolate between two lupus-prone strains (MRL/Mp and NZB/W) and two non lupus-prone strains of mice (C57BL/6 and BALB/c). In all four strains the influx of polymorphonuclear neutrophils (PMN) was similar. However, by 96 h clearance of PMN in the control strains was complete, whereas in the autoimmune-prone strains PMN were still detectable. The number of mononuclear cells recruited was markedly reduced in the lupus-prone strains compared with the controls, and their phenotype was different. The lupus-prone strains had significantly fewer elicited macrophages that were CD11b-high and Ly6C-negative. In lupus-prone mice at 24 h there was a significantly increased number of apoptotic PMN free in the peritoneum, accompanied by a reduced percentage of macrophages containing apoptotic bodies, suggesting a defect in their uptake. An impaired ability of resident peritoneal macrophages from lupus-prone mice to engulf apoptotic cells was demonstrated by in vivo and in vitro cell clearance assays. These observations indicate that lupus-prone strains have an abnormal inflammatory response to thioglycolate and an intrinsic impairment in apoptotic cell uptake. These findings have implications for the initiation of autoimmunity, as lupus autoantigens are expressed on dying cells, and impaired disposal of these could enhance the development of autoimmunity.

Animals↗

Both Fcgamma receptor I and Fcgamma receptor III mediate disease in accelerated nephrotoxic nephritis.

Recognition of immune complexes in glomeruli by activator Fcgamma receptors (FcgammaRI and FcgammaRIII) is an important step in the development of glomerulonephritis. The low-affinity receptor (FcgammaRIII) has previously been shown to be important in passive heterologous immune complex glomerulonephritis. However, most forms of human glomerulonephritis involve an active immune response, and the relative importance of FcgammaRI (high-affinity receptor) and FcgammaRIII in an active model of glomerulonephritis is not known. We have now studied accelerated nephrotoxic nephritis in FcgammaRIII-/- mice and FcgammaRI/III double-deficient mice, and compared them with matched wild-type controls and FcRgamma chain-deficient (FcRgamma-/-) mice. Mice were immunized against sheep IgG and injected with sheep anti-mouse glomerular basement membrane antibody 5 days later. Both FcgammaRI/III double-deficient mice and FcRgamma-/- mice were strongly protected from renal injury. In contrast, FcgammaRIII-/- mice developed substantial nephritis, although there was a dose-dependent partial protection from glomerular crescents and thrombosis. Despite this histological protection from injury, the macrophage infiltrate was not reduced, implying a dissociation of macrophage accumulation from activation in the absence of activatory FcgammaRIII. Therefore, both FcgammaRI and FcgammaRIII play a role in this active model of glomerulonephritis, because both had to be deficient to protect markedly from disease.

Animals↗

The classical pathway is the dominant complement pathway required for innate immunity to Streptococcus pneumoniae infection in mice.

The complement system is an important component of the innate immune response to bacterial pathogens, including Streptococcus pneumoniae. The classical complement pathway is activated by antibody-antigen complexes on the bacterial surface and has been considered predominately to be an effector of the adaptive immune response, whereas the alternative and mannose-binding lectin pathways are activated directly by bacterial cell surface components and are considered effectors of the innate immune response. Recently, a role has been suggested for the classical pathway during innate immunity that is activated by natural IgM or components of the acute-phase response bound to bacterial pathogens. However, the functional importance of the classical pathway for innate immunity to S. pneumoniae and other bacterial pathogens, and its relative contribution compared with the alternative and mannose-binding lectin pathways has not been defined. By using strains of mice with genetic deficiencies of complement components and secretory IgM we have investigated the role of each complement pathway and natural IgM for innate immunity to S. pneumoniae. Our results show that the proportion of a population of S. pneumoniae bound by C3 depends mainly on the classical pathway, whereas the intensity of C3 binding depends on the alternative pathway. Furthermore, the classical pathway, partially targeted by the binding of natural IgM to bacteria, is the dominant pathway for activation of the complement system during innate immunity to S. pneumoniae, loss of which results in rapidly progressing septicemia and impaired macrophage activation. These data demonstrate the vital role of the classical pathway for innate immunity to a bacterial pathogen.

Animals↗

Role of surfactant proteins A, D, and C1q in the clearance of apoptotic cells in vivo and in vitro: calreticulin and CD91 as a common collectin receptor complex.

Removal of cells dying by apoptosis is essential to normal development, maintenance of tissue homeostasis, and resolution of inflammation. Surfactant protein A (SP-A) and surfactant protein D (SP-D) are high abundance pulmonary collectins recently implicated in apoptotic cell clearance in vitro. Other collectins, such as mannose-binding lectin and the collectin-like C1q, have been shown to bind to apoptotic cells and drive ingestion through interaction with calreticulin and CD91 on the phagocyte in vitro. However, only C1q has been shown to enhance apoptotic cell uptake in vivo. We sought to determine the relative importance of SP-A, SP-D, and C1q in pulmonary clearance of apoptotic cells using knockout and overexpressing mice, and to determine the role of calreticulin and CD91 in this process. SP-A, SP-D, and C1q all enhanced apoptotic cell ingestion by resident murine and human alveolar macrophages in vitro. However, only SP-D altered apoptotic cell clearance from the naive murine lung, suggesting that SP-D plays a particularly important role in vivo. Similar to C1q and mannose-binding lectin, SP-A and SP-D bound to apoptotic cells in a localized, patchy pattern and drove apoptotic cell ingestion by phagocytes through a mechanism dependent on calreticulin and CD91. These results suggest that the entire collectin family of innate immune proteins (including C1q) works through a common receptor complex to enhance removal of apoptotic cells, and that collectins are integral, organ-specific components of the clearance machinery.

Animals↗

Uncontrolled C3 activation causes membranoproliferative glomerulonephritis in mice deficient in complement factor H.

The alternative pathway of complement is activated continuously in vivo through the C3 'tick-over' pathway. This pathway is triggered by the hydrolysis of C3, resulting in the formation of C3 convertase. This, in turn, generates C3b, which mediates many of the biological functions of complement. Factor H, the main regulator of this activation, prevents formation and promotes dissociation of the C3 convertase enzyme, and, together with factor I, mediates the proteolytic inactivation of C3b. Factor H deficiency, described in 29 individuals from 12 families and in pigs, allows unhindered activation of fluid-phase C3 and severe depletion of plasma C3 (ref. 11). Membranoproliferative glomerulonephritis (MPGN) occurs in factor H-deficient humans and pigs. Although MPGN has been reported in other conditions in which uncontrolled activation of C3 occurs, the role of C3 dysregulation in the pathogenesis of MPGN is not understood. Here we show that mice deficient in factor H (Cfh(-/-) mice) develop MPGN spontaneously and are hypersensitive to developing renal injury caused by immune complexes. Introducing a second mutation in the gene encoding complement factor B, which prevents C3 turnover in vivo, obviates the phenotype of Cfh(-/-) mice. Thus, uncontrolled C3 activation in vivo is essential for the development of MPGN associated with deficiency of factor H.

Animals↗

Complement and systemic lupus erythematosus.

Complement is implicated in the pathogenesis of systemic lupus erythematosus (SLE) in several ways and may act as both friend and foe. Homozygous deficiency of any of the proteins of the classical pathway is causally associated with susceptibility to the development of SLE, especially deficiency of the earliest proteins of the activation pathway. However, complement is also implicated in the effector inflammatory phase of the autoimmune response that characterizes the disease. Complement proteins are deposited in inflamed tissues and, in experimental models, inhibition of C5 ameliorates disease in a murine model. As a further twist to the associations between the complement system and SLE, autoantibodies to some complement proteins, especially to C1q, develop as part of the autoantibody response. The presence of anti-C1q autoantibodies is associated with severe illness, including glomerulonephritis. In this chapter the role of the complement system in SLE is reviewed and hypotheses are advanced to explain the complex relationships between complement and lupus.

Autoantibodies↗

Complement activation selectively potentiates the pathogenicity of the IgG2b and IgG3 isotypes of a high affinity anti-erythrocyte autoantibody.

By generating four IgG isotype-switch variants of the high affinity 34-3C anti-erythrocyte autoantibody, and comparing them to the IgG variants of the low affinity 4C8 anti-erythrocyte autoantibody that we have previously studied, we evaluated in this study how high affinity binding to erythrocytes influences the pathogenicity of each IgG isotype in relation to the respective contributions of Fcgamma receptor (FcgammaR) and complement. The 34-3C autoantibody opsonizing extensively circulating erythrocytes efficiently activated complement in vivo (IgG2a = IgG2b > IgG3), except for the IgG1 isotype, while the 4C8 IgG autoantibody failed to activate complement. The pathogenicity of the 34-3C autoantibody of IgG2b and IgG3 isotypes was dramatically higher (>200-fold) than that of the corresponding isotypes of the 4C8 antibody. This enhanced activity was highly (IgG2b) or totally (IgG3) dependent on complement. In contrast, erythrocyte-binding affinities only played a minor role in in vivo hemolytic activities of the IgG1 and IgG2a isotypes of 34-3C and 4C8 antibodies, where complement was not or only partially involved, respectively. The remarkably different capacities of four different IgG isotypes of low and high affinity anti-erythrocyte autoantibodies to activate FcgammaR-bearing effector cells and complement in vivo demonstrate the role of autoantibody affinity maturation and of IgG isotype switching in autoantibody-mediated pathology.

Anemia, Hemolytic, Autoimmune↗

C1q deficiency and autoimmunity: the effects of genetic background on disease expression.

Gene-targeted C1q-deficient mice have been shown to develop a syndrome reminiscent of human systemic lupus erythematosus with antinuclear Abs and proliferative glomerulonephritis. Initial phenotypic analysis conducted in (129 x C57BL/6) hybrid mice showed that background genes were a significant factor for the full expression of the autoimmune disease. To assess the contribution of background genes in the expression of the autoimmune phenotype, the disrupted C1qa gene was backcrossed for seven generations onto C57BL/6 and MRL/Mp(+/+) strains. These were intercrossed with C57BL/6.lpr/lpr and MRL/Mp-lpr/lpr strains to generate C1q-deficient substrains. In C1q-deficient C57BL/6 mice, no evidence of an autoimmune phenotype was found, and C1q deficiency in both the C57BL/6.lpr/lpr and MRL/Mp-lpr/lpr strains did not modify the autoimmune phenotype observed in wild-type controls. However, in C1q-deficient MRL/Mp(+/+) animals an acceleration of both the onset and the severity of antinuclear Abs and glomerulonephritis was seen. Disease was particularly pronounced in females, which developed severe crescentic glomerulonephritis accompanied by heavy proteinuria. In addition, the C1q-deficient MRL/Mp(+/+) mice had an impairment in the phagocytic clearance of apoptotic cells in vivo. These data demonstrate that the expression of autoimmunity in C1q-deficient mice is strongly influenced by other background genes. The work also highlights the potential value of the C1q-deficient MRL/Mp(+/+) strain as a tool with which to dissect further the underlying mechanisms of the autoimmune syndrome associated with C1q deficiency.

Animals↗

The follicular dendritic cell restricted epitope, FDC-M2, is complement C4; localization of immune complexes in mouse tissues.

We have identified the murine follicular dendritic cell (FDC) marker, FDC-M2, recognized by monoclonal antibody mAb209, as complement component C4. Consistent with this, FDC-M2 was detectable at sites of immune complex-mediated inflammatory disease. Analysis of FDC-M2 distribution in complement-deficient mice highlighted the differences in immune complex clearance between these mice, andshowed that a population of uncharacterized FDC-M2+ reticular and perivascular cells in the spleen, distinct from FDC, are also involved in immune complex capture and possibly retention. These results demonstrate that mAb209, in addition to its role as an FDC marker, is a valuable reagent for the analysis of complement deposition in vivo.

Animals↗

Defective Fc-dependent processing of immune complexes in patients with systemic lupus erythematosus.

OBJECTIVE: To explore the Fc receptor-dependent handling of immune complexes (ICs) by the fixed mononuclear phagocytic systems (MPS) in patients with systemic lupus erythematosus (SLE). METHODS: The processing in vivo of soluble model (123)I-hepatitis B/ anti-hepatitis B ICs was studied in 12 healthy subjects and 10 patients with active SLE. ICs that fixed complement poorly were prepared specifically in order to explore Fc receptor-dependent clearance mechanisms. Clearance kinetics and organ uptake were assessed by computer-aided gamma scintigraphy and serial blood sampling. RESULTS: In both patients and controls, the main site of IC clearance was the liver; only 2-6% of injected ICs were taken up in the spleen. The kinetics of initial IC clearance were similar in both groups, but defective hepatic retention of ICs was demonstrated in patients with SLE. At 1 hour, hepatic activity in patients had fallen to 56% of maximum, compared with 74% in controls (P = 0.0002). Precipitation studies performed on serum samples using staphylococcal protein A-Sepharose indicated that antibody-complexed tracer was released from the liver 20-50 minutes after injection. CONCLUSION: These results indicate that Fc-mediated clearance of ICs is defective in patients with SLE and suggest that ligation of ICs by Fc receptors is critical for their efficient binding and retention by the fixed MPS in the liver.

Adult↗

Nephrotoxic nephritis is mediated by Fcgamma receptors on circulating leukocytes and not intrinsic renal cells.

BACKGROUND: There is evidence that mesangial cells express Fcgamma receptors in vitro, but the in vivo relevance of this is not known. FcRgamma-/- mice lack the gamma chain signaling subunit and therefore do not express the activator Fcgamma receptors (FcgammaRI and FcgammaRIII) or the high affinity IgE receptor, FcepsilonRI. FcRgamma-/- mice were protected from renal inflammation following the induction of accelerated nephrotoxic nephritis using sheep anti-mouse glomerular basement membrane anti-serum in mice sensitized to sheep IgG. METHODS: In order to test whether Fcgamma receptors had a role on intrinsic renal cells during nephritis, bone marrow cells were transplanted between wild-type (WT) mice and mice with a gene-targeted deletion of FcRgamma. Donor marrow reconstitution was confirmed by flow cytometric analysis of peripheral blood for FcgammaRIII, and the susceptibility of the transplanted mice to accelerated nephrotoxic nephritis was tested. RESULTS: Following the induction of nephrotoxic nephritis, FcRgamma-/- mice transplanted with WT bone marrow developed as much renal disease as WT mice transplanted with WT bone marrow. In contrast, WT mice transplanted with FcRgamma-/- marrow were completely protected from glomerular crescents, thrombosis, albuminuria and renal impairment, as were FcRgamma-/- mice transplanted with FcRgamma-/- marrow. Mice with FcRgamma-/- marrow had prolonged survival, but by day 28 after nephrotoxic serum injection they had developed mesangial hypercellularity and a macrophage influx caused by non-FcRgamma dependent mechanisms. CONCLUSION: Despite previous evidence that mesangial cells express Fcgamma receptors in vitro, they have no role in an FcRgamma-dependent model of glomerulonephritis in vivo.

Animals↗

C1q, autoimmunity and apoptosis.

Deficiency of classical pathway complement components displays a hierarchical association with the development of systemic lupus erythematosus (SLE). Individuals with deficiency of C1q, the first component of the classical pathway of activation, have the highest prevalence of SLE and the most severe manifestations of the disease. However, complement is also implicated in the effector inflammatory phase of the autoimmune response that characterizes SLE. Complement proteins are deposited in inflamed tissues causing consumption of complement. In addition, autoantibodies to C1q develop as part of the autoantibody response. Understanding how C1q deficiency results in the autoimmune phenotype of SLE may provide valuable clues to the role of the complement system in the maintenance of immune tolerance. In this review firstly we discuss the relationship between C1q deficiency and/or consumption and lupus. Secondly, we consider the links between apoptosis and complement. Finally we review the lessons we have learned from a murine model of C1q deficiency discussing the experimental evidence in support of the hypothesis that C1q may critically influence the immune response to self-antigens contained within the surface blebs generated by apoptotic cells.

Animals↗

Increased susceptibility of C1q-deficient mice to Salmonella enterica serovar Typhimurium infection.

The role of the complement system in host defense against Salmonella infection is poorly defined. Bacterial cell wall O-antigen polysaccharide can activate the alternative pathway in vitro. No studies, however, have elucidated the role of the classical pathway in immunity to Salmonella spp. in vivo. C1q-deficient mice (C1qa(-/-)) on a 129/Sv genetic background and strain-matched controls were infected intraperitoneally and intravenously with Salmonella enterica serovar Typhimurium and monitored over a 14-day period. After inoculation by either route, the C1qa(-/-) mice were found to be significantly more susceptible to Salmonella infection. Hepatic and splenic bacterial counts, performed at various time points, showed increased numbers of colonies in complement-deficient mice compared to controls. Analysis of blood clearance showed no difference between the two experimental groups during the first 15 min. However, after 20 min and until 6 h postinfection, numbers of circulating bacteria were significantly higher in complement-deficient mice. In vitro experiments using either resident or thioglycolate-elicited peritoneal macrophages showed a significant increase in the number of bacteria inside C1q-deficient macrophages compared to controls irrespective of the serum used for opsonizing the bacteria. These findings could not be explained either by an increased bacterial uptake, analyzed in vitro and in vivo using green fluorescent protein-tagged salmonellae, or by a defect in the respiratory burst or in NO production. The data presented here suggest the possibility of novel pathways by which C1q may modulate the pathogenesis of infectious diseases caused by intracellular pathogens.

Animals↗