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Enhanced binding of immune complexes processed by erythrocyte CR1 (CD 35) receptors to purified CR2 (CD 21) receptors from tonsillar mononuclear cells.

The binding of immune complexes (IC) opsonized by serum complement (C) and IC processed by CR1 (CD 35) receptors on human erythrocytes (E) to purified CR2 (CD 21) receptors was compared. Soluble CR2 was prepared from tonsillar mononuclear cells and purified by antibody affinity chromatography. Solid phase CR2 as well as CR2 subjected to PAGE and blotted onto nitro-cellulose membranes bound 125I-labelled BSA anti-BSA IC which had been opsonized by C and processed by CR1 up to ten times more efficiently than IC reacted with serum only. Radiolabelled monomeric C3d also bound to solid phase CR2. The binding of IC to purified and solid phase bound CR2 could be inhibited by anti-CR2 antibodies or by preincubation of the IC with polyclonal antibodies reacting with C3d or C3b/iC3b. Thus, both C3dg and iC3b appeared to mediate binding of IC to CR2. Preincubation of solid phase CR2 with purified monomeric C3d did not inhibit the subsequent binding of E-CR1 processed IC. The data indicate that E-CR1 have an important role in generating IC which bind effectively to CR2 receptors on B lymphocytes.

Animals↗

Structure of complement receptor 2 in complex with its C3d ligand.

Complement receptor 2 (CR2/CD21) is an important receptor that amplifies B lymphocyte activation by bridging the innate and adaptive immune systems. CR2 ligands include complement C3d and Epstein-Barr virus glycoprotein 350/220. We describe the x-ray structure of this CR2 domain in complex with C3d at 2.0 angstroms. The structure reveals extensive main chain interactions between C3d and only one short consensus repeat (SCR) of CR2 and substantial SCR side-side packing. These results provide a detailed understanding of receptor-ligand interactions in this protein family and reveal potential target sites for molecular drug design.

Amino Acid Sequence↗

Suppression of the immune response by a soluble complement receptor of B lymphocytes.

The CD19-CR2 complex of B lymphocytes contains proteins that participate in two host-defense systems, the immune and complement systems. The ligand for the subunit of the immune system, CD19, is not known, but the complement receptor subunit, CR2 (CD21), binds activation fragments of the C3 component of the complement system and may mediate immunopotentiating effects of complement. A recombinant, soluble CR2 was prepared by fusing the C3-binding region of the receptor to immunoglobulin G1 (IgG1). The (CR2)2-IgG1 chimera competed with cellular CR2 for C3 binding and suppressed the antibody response to a T cell-dependent antigen when administered to mice at the time of immunization. This inhibitory effect of (CR2)2-IgG1 demonstrates the B cell-activating function of the CD19-CR2 complex and suggests a new method for humoral immunosuppression.

Amino Acid Sequence↗

C3d of complement as a molecular adjuvant: bridging innate and acquired immunity.

An optimal immune response should differentiate between harmful and innocuous antigens. Primitive systems of innate immunity, such as the complement system, may play a role in this distinction. When activated, the C3 component of complement attaches to potential antigens on microorganisms. To determine whether this alters acquired immune recognition, mice were immunized with a recombinant model antigen, hen egg lysozyme (HEL), fused to murine C3d. HEL bearing two and three copies of C3d was 1000- and 10,000-fold more immunogenic, respectively, than HEL alone. Thus, C3d is a molecular adjuvant of innate immunity that profoundly influences an acquired immune response.

Adjuvants, Immunologic↗

Dependence of germinal center B cells on expression of CD21/CD35 for survival.

Affinity-driven selection of B lymphocytes within germinal centers is critical for the development of high-affinity memory cells and host protection. To investigate the role of the CD21/CD35 coreceptor in B cell competition for follicular retention and survival within the germinal center, either Cr2+ or Cr2null lysozyme-specific transgenic B cells were adoptively transferred into normal mice immunized with duck (DEL) or turkey (TEL) lysozyme, which bind with different affinities. In mice injected with high-affinity turkey lysozyme, Cr2null B cells responded by follicular retention; however, they could not survive within germinal centers. This suggests that CD21 provides a signal independent of antigen that is required for survival of B cells in the germinal center.

Adoptive Transfer↗

X-ray crystal structure of C3d: a C3 fragment and ligand for complement receptor 2.

Activation and covalent attachment of complement component C3 to pathogens is the key step in complement-mediated host defense. Additionally, the antigen-bound C3d fragment interacts with complement receptor 2 (CR2; also known as CD21) on B cells and thereby contributes to the initiation of an acquired humoral response. The x-ray crystal structure of human C3d solved at 2.0 angstroms resolution reveals an alpha-alpha barrel with the residues responsible for thioester formation and covalent attachment at one end and an acidic pocket at the other. The structure supports a model whereby the transition of native C3 to its functionally active state involves the disruption of a complementary domain interface and provides insight into the basis for the interaction between C3d and CR2.

Amino Acid Sequence↗

Candida albicans and Candida stellatoidea, in contrast to other Candida species, bind iC3b and C3d but not C3b.

It was demonstrated that complement-coated sheep erythrocytes bind to Candida albicans cells grown in serum-free RPMI 1640 medium. Testing of purified complement components proved that iC3b and C3d were responsible for the reaction, whereas C3b and C3b-H reacted only slightly if at all. Binding occurred only to C. albicans and C. stellatoidea, not to other species pathogenic to humans. There was evidence of a lectinlike nature of the effect.

Animals↗

Identification of C3d receptors on Candida albicans.

Pseudohyphal but not yeast forms of Candida albicans possess both iC3b and C3d receptors, as determined by rosetting with erythrocytes carrying iC3b (EAC3bi) or C3d (EAC3d). Rosetting with EAC3d was markedly reduced when pseudohyphae were heat killed or treated with trypsin or pronase but was not inhibited by several saccharides or aminosaccharides, including alpha-methyl-D-mannoside, or by pretreatment of pseudohyphae with concanavalin A. However, mannoproteins obtained by concanavalin A affinity chromatography of whole pseudohyphal extracts inhibited the attachment of EAC3d to C. albicans, whereas soluble (nonmannosylated) proteins were less active. Thus, although the C3d receptors appeared to be glycosylated, the oligosaccharide component of the receptor was apparently not involved in the recognition of C3d. To isolate these receptors, whole-cell extracts were separated by DEAE-Trisacryl chromatography. Fractions that inhibited rosetting were pooled and affinity purified by C3d-Thiol-Sepharose chromatography. The eluate from this affinity column inhibited attachment of C. albicans to EAC3d. Monoclonal antibodies to C. albicans were prepared, and three of these antibodies blocked rosetting. Western blotting (immunoblotting) with these antibodies indicated the presence of 62- and 70-kilodalton receptors for C3d in the extracts purified by C3d affinity chromatography and separated by sodium dodecyl sulfate-polyacrylamide gel electrophoresis.

Antibodies, Monoclonal↗

Candida albicans C3d receptor, isolated by using a monoclonal antibody.

Pseudohyphae of Candida albicans possess a receptor for C3d, a fragment of the complement component C3. This receptor was partially purified by using a monoclonal antibody (CA-A) that previously had been shown to inhibit the binding of C3d to C. albicans pseudohyphae. Purified immunoglobulin G from ascites fluid (CA-A) was coupled to a cyanogen bromide-activated Sepharose column, and an affinity-purified fraction (A2) from C. albicans pseudohyphae was obtained. This fraction inhibited rosetting of the EAC3d receptor by pseudohyphae and appeared to contain glycoprotein, since receptor activity could be removed when A2 was incubated with lectins specific for mannose and glucose. A2 was analyzed by sodium dodecyl sulfate-polyacrylamide gel electrophoresis, and two polypeptides of approximately 60 and 70 kilodaltons (kDa) were consistently identified in reducing gels. The 60-kDa protein was identified as a glycoprotein by concanavalin A binding. A2 was further analyzed by high-pressure liquid chromatography (HPLC). Of three fractions obtained by HPLC, one containing the 60-kDa protein was found to have receptor activity. When analyzed by HPLC, this protein was found to contain mannose and glucose in approximately equal amounts. Both immunofluorescence and electron microscopy of pseudohyphae treated with CA-A identified A2 as a surface moiety. Thus, the C3d receptor of C. albicans, isolated with CA-A, is a glycoprotein of approximately 60 kDa.

Antibodies, Monoclonal↗

Purification and characterization of the extracellular C3d-binding protein of Candida albicans.

A C3d-binding glycoprotein was purified from the culture filtrate of Candida albicans by preparative isoelectric focusing. The protein possessed a pI of 3.9 to 4.1 and could inhibit rosetting of EAC3d (sheep erythrocytes conjugated to C3d) by pseudohyphae of C. albicans. When analyzed by polyacrylamide gel electrophoresis in the presence of sodium dodecyl sulfate and mercaptoethanol, the protein migrated as a doublet with apparent molecular masses of 55 and 60 kilodaltons (kDa) and as a 50-kDa band in nonreducing gels. These results were observed with Aurodye stain for proteins. Western immunoblot, and concanavalin A stain, which indicates that both bands contain carbohydrate as well as antigenic determinants. The treatment of purified glycoprotein with endoglycosidase F but not endoglycosidases H, N, and O resulted in a complete conversion of the doublet into a faster-migrating broad band with an apparent molecular mass of 45 kDa. When the amino acid analysis of the C3d-binding protein was compared with that of the CR2 from B lymphocytes, significant differences were observed. These data indicate that C. albicans secretes a C3d-binding protein during growth in vitro which appears to be different from the mammalian C3d receptor.

Amino Acids↗

Reduced expression of the functionally active complement receptor for iC3b but not for C3d on an avirulent mutant of Candida albicans.

Pseudohyphae of Candida albicans bear surface receptors for iC3b and C3d. In order to determine a possible role for these receptors in the pathogenesis of candidiasis, a spontaneous C. albicans mutant, m-10, which exhibits reduced ability to adhere in vitro to fibrin platelet clots and epithelial cells or to cause endocarditis in a rabbit model, and its parent wild-type (wt) strain were compared for receptor expression in rosetting assays with sheep erythrocytes carrying iC3b (EAC1423bi) or C3d (EAC1423d). An equally high attachment to wt and m-10 was seen with EAC1423d, whereas rosetting with EAC1423bi was reduced by 53% in m-10 compared with wt. In inhibition studies, rosetting of wt with EAC1423bi was markedly inhibited by culture filtrate, hyphal-cell extract, and DEAE-fractionated material prepared from wt (54, 87, and 70% decreases in rosetting, respectively), thus suggesting the presence of the soluble, functionally active iC3b receptor of C. albicans in each of these preparations. Minimal inhibition of iC3b rosetting, however, was seen with the identical materials from m-10 (21, 5, and 12%, respectively). All of the preparations from the two strains were equally effective in their inhibitory activities against rosetting of C3d. A human serum specimen obtained from a patient with chronic mucocutaneous candidiasis blocked iC3b rosetting of the wt strain almost completely. When used in an immunoblot, this serum recognized proteins of 68 to 71, 55, and 50 kilodaltons (kDa) in hyphal-cell extracts of the wt. With the same preparation of the avirulent mutant, only weak reactions with the 68- to 71-kDa and 55-kDa proteins occurred, while the 50-kDa protein was not detectable. Taken together, these results indicate that the expression of the functionally active iC3b receptor on C. albicans may be involved in the virulence of the organism, possibly by mediating adherence to mammalian cells.

Antigens, Differentiation, B-Lymphocyte↗

Evidence for expression of the C3d receptor of Candida albicans in vitro and in vivo obtained by immunofluorescence and immunoelectron microscopy.

The complement conversion product C3d binds to a receptor on the cell surface of Candida albicans. While the function of this receptor is still uncertain, we investigated whether it is expressed during a murine infection. Rabbit antiserum raised against purified receptor was used in conjunction with immunofluorescence microscopy and immunocolloidal gold electron microscopy to examine kidney tissue and peritoneal lavages from infected mice for receptor expression by C. albicans in vivo. Specificity of the antiserum was indicated by reactivity with purified receptor (55 to 60 kDa) and with a protein of similar molecular mass from whole hyphal extracts in Western blots (immunoblots). In vitro analysis by immunofluorescence microscopy showed that the antiserum reacted with both yeast and pseudohyphal forms of the organism, but reactivity was strongest with pseudohyphae. Immunocolloidal gold electron microscopy of fungal cells from peritoneal lavages revealed intense staining of mother cells of germinative forms, germ tubes, and pseudohyphae. Staining of the mother cells was heaviest at the innermost layers of the cell wall but only scant on the cell surface. In contrast, staining was observed throughout the cell walls of germ tubes and pseudohyphae. In kidney, expression of the C3d receptor was found primarily on the cell walls of hyphae and pseudohyphae, although some staining was observed in the cytoplasm. These data support that the C3d receptor of C. albicans is expressed in vivo.

Animals↗

Pneumococcal polysaccharides complexed with C3d bind to human B lymphocytes via complement receptor type 2.

The immunoregulatory function of the complement system has been the focus of many investigations. In particular, fragments of complement factor C3 have been shown to play a role in B-lymphocyte activation and proliferation, lymphokine production, and the generation of in vitro antibody production. Purified pneumococcal polysaccharides (PS) can induce direct activation of C3 via the alternative pathway. Using sera of C1q-deficient patients and healthy subjects, we demonstrated that C3d, a split product of C3 that is generated after degradation of iC3b, can be bound to PS antigens. The binding of C3d to PS can occur in the absence of specific antibodies. Subsequently, we showed that PS complexed with C3d can be recognized by complement receptor type 2 that is expressed on B cells. Treatment of B cells with a monoclonal antibody recognizing the C3d-binding site of complement receptor type 2 reduces the binding of PS-C3d to the cells. In addition, we showed that PS4 complexed with C3d exerted an increased immunogenicity compared with free PS4. Our results show that the complement system plays a role in the activation of PS-specific B cells, carrying membrane receptors for C3d. Consequently, the complement system plays a regulatory role in the antibody response to T-cell-independent type 2 antigens such as PS.

Adult↗

Expression of the C3d-binding protein (CR2) from Candida albicans during experimental candidiasis as measured by lymphoblastogenesis.

The complement C3d-binding protein (CR2) of Candida albicans has been purified by immunoaffinity chromatography, and its specificity has been characterized by immunoblotting with monoclonal antibodies to the C. albicans CR2 and the mammalian CR2. Recent studies with immunoelectron microscopy indicated that the CR2 was expressed during a systemic infection in a murine model of candidiasis. As a continuation of these observations, the immunogenicity of the C. albicans CR2 was investigated in a lymphoblastogenesis assay. Lymph node cells as well as splenic lymphocytes from mice infected subcutaneously with viable blastoconidia of C. albicans reacted to the C. albicans CR2 to a significantly greater extent than did lymphocytes from uninfected mice (P less than 0.01). The maximum stimulation of splenic lymphocytes by the purified receptor occurred at a concentration of 0.54 micrograms of protein per ml after 72 h of incubation of lymphocytes and receptor. Also, splenocytes from infected or CR2-immunized mice exhibited significantly reduced responses to the T-cell-dependent mitogen phytohemagglutinin (P less than 0.01). These data indicate that lymphocytes from infected mice respond to the C. albicans CR2 in a lymphoproliferation assay to a greater extent than do lymphocytes from uninfected mice, indicating that the CR2 is expressed in vivo.

Animals↗

Cell extracts of Candida albicans block adherence of the organisms to endothelial cells.

Cell extracts of Candida albicans were fractionated by concanavalin A affinity chromatography. Eluted mannosylated proteins (fraction II) and nonbinding, nonmannosylated proteins (fraction I) were collected and assayed directly for inhibition of adherence of C. albicans to endothelium. Fraction II blocked blastospore adherence to endothelial cells. Fraction I blocked both blastospore and germ tube adherence to endothelial cells. Monoclonal antibody OKM-1 (anti-CR3) and an anti-C. albicans monoclonal antibody, CA-A (anti-CR2), reacted in Western blots with proteins from fraction I, suggesting the presence of the CR2- and CR3-like proteins that have been previously identified on C. albicans germ tubes.

Adhesiveness↗

Analysis of mannoproteins from blastoconidia and hyphae of Candida albicans with a common epitope recognized by anti-complement receptor type 2 antibodies.

Mannoproteins of approximately 50 kDa from blastoconidia and 60 kDa from hyphae of Candida albicans reacted in Western blots (immunoblots) with either a polyclonal rabbit antiserum (CA-7) or a monoclonal antibody (CA-A) to the C. albicans C3d-binding protein (complement receptor type 2). The glycosylated nature of these proteins was demonstrated by their reactivity with concanavalin A and by selective labeling with the biotin-hydrazide reagent following periodate oxidation. Differences in the oligosaccharides of these proteins were observed in regard to their reactivity with lectin-peroxidase reagents and sensitivity to glycosidases such as N-glycanase or endoglycosidase F (but not endoglycosidase H). The 60-kDa mannoprotein reacted with wheat germ agglutinin, while the 50-kDa mannoprotein did not. Treatment of the 60-kDa mannoprotein with the glycosidases mentioned above resulted in its conversion into a species of 40 to 45 kDa. Enzyme treatment had no obvious effect on the electrophoretic mobility of the 50-kDa species from blastoconidia. Both the 50- and 60-kDa glycoproteins remained immunoreactive after treatment with the glycosidases. Reactivities of the two mannoproteins to neuraminidase also differed. Finally, the 50-kDa (blastoconidia) and the 60-kDa (hyphae) mannoproteins were purified by using ion-exchange chromatography and electroelution. The purified proteins differed in net charge, the 60-kDa species having a more acidic pI. Functional activity of the purified mannoproteins was demonstrated, as each inhibited the rosetting of antibody-sensitized sheep erythrocytes conjugated with iC3b or C3d by hyphae. Thus, an epitope(s) common to both a mycelial and blastoconidial mannoprotein is associated with a structurally different oligosaccharide for each growth form.

Animals↗

Isolation of avirulent clones of Candida albicans with reduced ability to recognize the CR2 ligand C3d.

Four clones of the yeast Candida albicans, isolated on the basis of their tolerance to clotrimazole, were compared with their parental strains in terms of growth, morphology, virulence, and cell surface complement receptor activity. In a newly described synthetic medium, these clones, designated C1, C2, N, and P, produced germ tubes or pseudohyphae, but no true hyphae, in a pattern which was specific for each strain. The growth of each clone at 37 degrees C, under conditions which favor the filamentous growth form of the organism, was equal to that of the parental strain (H12). The pathogenicity of each clone was tested in an intravenous mouse model. None of the mice infected with the tolerant clones but all of the mice infected with H12 developed severe renal candidiasis after infection with 1.4 x 10(6) to 2.0 x 10(6) CFU/ml. The number of CFU of each clone from the mouse kidney was reduced about 3 or 4 orders of magnitude in comparison with the wild type. As a correlate, we measured the complement receptor activity (CR2 and CR3) of each clone. The C3 ligands, iC3b and C3d, were conjugated to sheep erythrocytes (E) sensitized with antibody (A) to the erythrocytes (EA). We found that all tolerant clones showed reduced recognition of C3d-bearing sheep erythrocytes (EAC3d) in rosetting assays. Clone P showed more than an 80% reduction in rosetting of EAC3d in comparison with H12 cells. In contrast, recognition of iC3b (EAiC3b) by each of the clones was similar to that by H12 cells. When dithiothreitol extracts of clone P and H12 were compared by immunoblot, both quantitative and qualitative differences in reactivities were observed with antibodies specific for the Candida C3d receptor and with antiserum from a patient with chronic mucocutaneous candidiasis.

Animals↗

Comparative study of the C3d receptor and 58-kilodalton fibrinogen-binding mannoproteins of Candida albicans.

Using polyclonal antibodies (PAbs) raised against the Candida albicans C3d receptor (CR2; PAb anti-CR2) and the 58-kDa fibrinogen-binding mannoprotein (mp58; PAb anti-mp58) as well as ligand interactions, we have studied the relationship between these two receptors. In an indirect immunofluorescence assay with germ tubes, greater intensity was observed on the mother blastoconidium when PAb anti-CR2 was used, whereas greater intensity was localized to the hyphal extension when PAb anti-mp58 or binding of soluble fibrinogen was used. No competition or change in the fluorescence pattern was observed in dual-labeling experiments with PAb anti-CR2 and either fibrinogen or PAb anti-mp58. Binding competition also was not observed in an enzyme-linked immunosorbent assay using the components present in a beta-mercaptoethanol extract from the cell wall of germ tubes. In immunoblots, PAb anti-CR2 recognized three different discrete bands with apparent molecular masses of 21, 40, and 66 kDa in the beta-mercaptoethanol extracts from the cell wall, whereas a different, single, broader band with an apparent molecular mass of 58 kDa was detected with PAb anti-mp58. However, when nondenaturing conditions were used to separate the materials present in the cell wall extracts, no reactivity could be detected on Western blots (immunoblots) with PAb anti-mp58. When PAb anti-CR2 was used for analysis, a single band migrating in the area corresponding to approximately 40 kDa was detected. These observations suggest a higher molecular weight for mp58 and one or more of the components detected with PAb anti-CR2 in their native state.

Adhesins, Bacterial↗