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EBV/C3d receptor (CR2) interacts by its intracytoplasmic carboxy-terminal domain and two distinct binding sites with the p53 anti-oncoprotein and the p68 calcium-binding protein.

EBV/C3d receptor (CR2) interacts with the p53 anti-oncoprotein expressed in the human B lymphoma cells, Raji but not in normal B cells, and with the p68 calcium-binding protein, expressed in normal B lymphocytes but not in transformed B lymphocytes. To characterize the CR2 domain interacting with these two intracellular proteins, we synthesized a 34-amino acid peptide, pep34, corresponding to its intracytoplasmic carboxy-terminal domain and analyzed its binding and antigenic properties. Binding of 125I-labeled p53 or 125I-labeled p68 on immobilized pep34 was specific, additive, and totally inhibited by unlabeled p53 or p68, respectively, but not by unlabeled p68 or p53, respectively. Antigenic properties of pep34 were analyzed by immunizing rabbits with particle-bound pep34. Polyclonal anti-pep34 Ab carried anti-CR2 specificities that recognized only the intracellular domain of CR2. In addition, anti-pep34 Ab also carried anti-p53 or anti-p68 specificities. Anti-p53 or anti-p68 specificities were not due to putative common structural or conformational antigenic determinants between the pep34 synthetic peptide and the p68 or p53 proteins. These anti-p53 and anti-p68 specificities were identified as anti-idiotypic anti-CR2 Ab mimicking either p53 or p68 binding sites of CR2. These data clearly establish that despite its short length, the intracytoplasmic C-terminal tail of CR2 is involved in direct protein-protein interactions with the two intracellular regulatory proteins, p53 and p68. An additional feature of these data is the demonstration that particle-bound pep34 triggered "in vivo" anti-Id Ab restricted to either p53 or p68 specificities.

Amino Acid Sequence↗

[CD21-independent infection of a human signet ring cell gastric carcinoma cell line by Epstein-Barr virus].

OBJECTIVE: To understand Epstein-Barr virus (EBV) infection of gastric carcinoma cells. METHODS: The authors tested the infection of a signet ring cell line HSC-39 derived from human gastric carcinoma with Akata and P3HR-1 strains of EBV. Akata and P3HR-1 infected of EBV cell clones were isolated by a limiting dilution method. RESULTS: EBV-encoded small RNAs (EBERs) were expressed in the infected cells with each EBV strain by in situ hybridization. The EBV infected parental cells and most clones expressed EBNA1, but not EBNA2, latent membrane protein (LMP) 1 and LMP2A. Both EBV strains infected parental cells and clones presented type I latency. The uninfected HSC-39 cells were negative for CD21 expression; however, the Akata but not P3HR-1-infected clones were positive for CD21 expression at mRNA level. CONCLUSION: These results demonstrated that EBV infecting HSC-39 by CD21-independent pathway. This study also defined a signet ring cell line as a new target for EBV.

Carcinoma, Signet Ring Cell↗

Regulation of MHC class I synthesis and expression by human neutrophils.

Human peripheral blood neutrophils (PMN) treated with granulocyte-macrophage CSF (GM-CSF) increase the amount of class I 42-kDa H chain and 12-kDa L chain, beta 2-microglobulin (beta 2m), that they synthesize by 2.1- and 2.6-fold, respectively. To determine whether the increase in translation was associated with an increase in levels of class I H chain transcript, RNA blot analysis was performed on PMN that had been cultured in the presence of GM-CSF. Under no conditions were there increased levels of class I H chain transcript when class I heterodimer protein synthesis was increased. In addition, there was neither an increase in the synthesis of H chain mRNA, as measured by transcription assay, nor an alteration in the degradation rates of class I H chain transcript in PMN cultured with GM-CSF. In situ hybridization demonstrated that both the percentage of PMN that expressed class I transcript and the relative amounts of transcript per cell in GM-CSF-cultured PMN were the same as those in control PMN. Although there is increased translation of class I heterodimer in PMN treated with GM-CSF, there is no increase in its expression on the plasma membrane. The maintenance of constant levels of class I on the plasma membrane is dependent on continued protein synthesis and is maintained by release of class I heterodimer and free beta 2m into the medium. Heterodimer is released in the context of plasma membrane-derived vesicles, whereas beta 2m is released as a soluble protein. Maintenance of constant levels of class I heterodimer on the plasma membrane is also regulated by constitutive internalization. Up to 30% of class I molecules bearing 125I-Fab-labeled mAb to class I are internalized over 2 h at 37 degrees C. Therefore, inducible synthesis of class I by PMN is likely a consequence of post-transcriptional regulation, whereas the continued synthesis of class I heterodimer is required for maintenance of its expression. Furthermore, there is no increase in class I expression, in spite of increased synthesis, due to the release of class I heterodimer and beta 2m and the internalization of class I heterodimer from the plasma membrane. Thus, PMN are capable of post-transcriptional regulation of protein synthesis and are able to modulate the expression of plasma membrane proteins by regulated expression, release, and internalization.

Antigens, Differentiation, B-Lymphocyte↗

Identification of sites for distinct DNA binding proteins including Oct-1 and Oct-2 in the Cr2 gene.

The murine Cr2 gene produces two distinct products in a variety of murine cell types. Both of these transcripts appear to initiate from the same position within the gene but vary from one another via an alternative splicing event within the coding exons. An analysis of those gene sequences that might control the cell specific expression of the Cr2 gene has identified a region of Cr2 5' of the transcription start site that is conserved in both the murine Cr2 and human CR2 genes. When this region was examined using the gel shift assay with nuclear extracts from cells expressing Cr2 (B cells) and those that do not (T cells and fibroblasts), at least four distinct proteins were identified that bound to at least three distinct sites. The DNA sequence recognized by two of these proteins is the octamer sequence recognized by a family of transcriptional regulators including the B cell specific Oct-2 protein. During an acute bacterial infection, the levels of Oct-2 and Cr2 mRNA are both depressed. This suggests that the Oct-2 protein directly controls the transcriptional activity of the Cr2 gene and that during such an infection, the levels of Ag receptors on B cells (Ig and complement receptors) are diminished.

Animals↗

Activation of mitogen activated protein kinases via complement receptor type 2.

BACKGROUND: Complement receptor type 2 (CR2) is the receptor for C3d and C3dg and for Epstein-Barr virus. The aim of our study was to explore whether CR2 can independently mediate the activation of mitogen-activated protein kinases (MAPKs, including ERK, JNK, and p38MAPK), and to highlight the molecular mechanism of CD4+ cell deletion in AIDS. METHODS: HOS cells (HOS-CR2) and HOS-CD4 cells (HOS-CD4CR2) stably expressing CR2 were established and then identified by FACS and Western blotting. Activation and blocking tests of MAPKs were assessed by Western blot. Cell proliferation was determined using Cell Titer 96((R)) Aqueous One Solution Reagent. RESULTS: FACS results showed that the positive rates of HOS-CR2 and HOS-CD4CR2 cells were greater than 96%, and Western blot showed that the CR2 expression levels on HOS-CR2 and HOS-CD4CR2 cells were high. Activation and blocking tests of MAPKs (ERK, JNK, and p38MAPK) were carried out in HOS-CR2, HOS-CD4, and HOS-CD4CR2 cells. The activation of MAPKs in HOS-CR2 cells stimulated with PMA (100 ng/ml) and NHS (10%) was identical. The activation of MAPKs increased at 5 minutes, reached a peak at 10 minutes, and decreased to baseline within 30 minutes, all in a time-dependent manner; the activation of MAPKs was blocked by anti-CR2 McAb, PD98059 (inhibitor of ERK), and Wortmanin (inhibitor of PI-3K), respectively. In HOS-CD4 cells, MAPKs were activated by HIV-gp160. In HOS-CD4CR2 cells, MAPK activation was induced by HIV-gp160, 10% NHS, and HIV-gp160 + 10% NHS; phosphorylation of p38MAPK was dramatically induced by HIV-gp160 + NHS, and lasted for 1 hour. The cell proliferation results showed that HIV-gp160 inhibited the proliferation of HOS-CD4 and HOS-CD4CR2 cells (P < 0.01) and that NHS enhanced the effect of HIV-gp160 (P < 0.01). CONCLUSIONS: The activation of MAPKs is independently mediated by CR2 and that anti-CR2 McAb, PD98059, and Wortmanin block the activation of MAPKs, respectively. The results of the signal transduction and cell proliferation assays of HOS-CD4CR2 cells show that CR2 plays a role in the pathogenesis of HIV infection, especially in the inhibition of CD4+ cell proliferation.

Cell Division↗

[C3d enhances the immune response against HBV-preS2/S following gene immunization in mice].

OBJECTIVE: To investigate whether C3d can enhance the immune response to HBV-preS2/S induced by direct injecting naked plasmid containing three copies of C3d and HBV-preS2/S in fusion form. METHODS: HBV-preS2/S coding sequence was introduced into the eukaryotic expression vectors TR421 and TR421-C3d3 containing 3 copies of C3d respectively. PCR was used to identify the direction of insertion, DNA sequencing analysis was used on the positive clones. The recombinant plasmids TR421-preS2/S and TR421-preS2/S-C3d3 were transfected into the human breast cancer cells of the line 4T1 as a transient expression system. Semi-quantitative RT-PCR was used to detect the expression of HBV-preS2/S protein. TR421-preS2/S and TR421-preS2/S-C3d3 were injected into the anterior tibial muscles of female BALB/c mice, 6 in each group, 3 times at an interval of 3 weeks. Six mice were injected with blank plasmid TR421 as controls. The total blood was collected from the mice. ELISA was used to detect the level of specific anti-HBs antibody. The splenocytes of the immunized mice were collected and stimulated with HbsAg protein and then harvested to analyze the specific lympho-proliferative response by (3)H-thymidine incorporation assay. CR2 positive Raji cells were added with plasmid transfected and mouse anti-HBs serum. Flow cytometry was used to detect the integration of preS2/S-C3d3 fusion protein. RESULTS: The 4T1 cells transfected with TR421-preS2/S and TR421-preS2/S-C3d3 effectively expressed HBV-preS2/S, with the expression level of TR421-preS2/S-C3d3 lower by 15.25% than that of TR421-preS2/S. Twelve weeks after immunization, the specific anti-HBs-IgG level (A(490nm)) was 0.81 +/- 0.09 in the TR421-preS2/S primed mice, significantly higher than that in the blank plasmid injected mice (0.49 +/- 0.02, P < 0.05); and the specific anti-HBs-IgG level (A(490nm)) was 1.24 +/- 0.29 in the TR421-preS2/S-C3d3 immunized mice, significantly higher than that of the TR421-preS2/S primed mice (P < 0.001). The lympho-proliferative response of the TR421-preS2/S primed mice was significantly stronger than that of the blank plasmid injected mice (P < 0.05) and the lympho-proliferative response of the TR421-preS2/S-C3d3 primed mice was significantly stronger than that of the TR421-preS2/S primed mice (P < 0.05). Surface binding of protein could be detected only in the TR421-preS2/S-C3d3 transfected supernatant. About 43.19% of the CR2 positive Raji cells integrated C3d fusion protein. TR421-preS2/S transfected supernatant and negative control did not show obvious integration. CONCLUSION: C3d enhances the humoral and cell-mediated immune responses against HBV induced by gene immunization.

Animals↗

The BCR signalosome: where cell fate is decided.

B cell antigen receptor (BCR) engagement results in the assembly of a multimolecular complex at the cytosolic side of the plasma membrane, known as signalosome. Here we briefly review the current knowledge on the molecules which participate in the BCR signalosome and on the response modulators which control the final signal output by enhancing or dampening BCR signaling.

Adaptor Proteins, Signal Transducing↗

Binding of CD 35, CD 21 and CD 11B monoclonal antibodies and EAC complexes to lymphocytes. A comparative histochemical study.

Using cryostat sections of human tonsils after various pretreatments, the adherence of sheep erythrocyte--antisheep erythrocyte (EA) complexes coated with either fresh mouse complement (EACm) or fresh human complement (EACh) has been compared with the binding of monoclonal antibodies (MAbs) against C3b (CD 35), C3d (CD 21) and iC3b (CD 11b) receptors (clusters). After periodic acid oxidation the binding of MAbs to CD 35, CD 21 was well preserved, whereas EACm and EACh complex adherence and CD 11b binding were abolished. These findings seem to prove that the binding sites for EACm and EACh complexes, as well as those for CD 35, CD 21 clusters (antigenic structure of the C3b and C3d receptors) are different.

Animals↗

[Molecular adjuvant C3d up-regulates both B7-1 and B7-2 expression on Raji cells].

To explore modulation of the molecular adjuvant C3d in the hCGbeta -C3d3 fusion protein in costimulatory molecule expression on Raji cells by linking to the surface molecule CD21. Raji cells, B cell line, were incubated with the purified hCGbeta-C3d3, hCGbeta or C3d3 protein for 15 hours respectively in the interference of anti-CD21 monoclonal antibody or not. The culture concentration of each group was 10, 30, or 90 microg/ml respectively. The expression of both B7-1 and B7-2 on Raji cells were analyzed by flow cytometric assay. It was observed that compared to hCGbeta or C3d3 protein, hCGbeta-C3d3 up-regulated both B7-1 and B7-2 expression on the Raji cells, and the effect was in a dose-dependent manner. The up-regulation effect was blocked efficiently by anti-CD21 mAb. The results showed that molecular adjuvant C3d may up-regulate both B7-1 and B7-2 expression on Raji cell via C3d/CD21/CD19 complex, thus enhance the antigen presentation of B cell, and the interaction between B cell and T cell.

Animals↗

Expression of CR2 (the C3dg/EBV receptor, CD21) on normal human peripheral blood T lymphocytes.

The expression of CR2 (the C3dg/EBV receptor, CD21) on normal human T lymphocytes was investigated using purified peripheral blood T cells and indirect immunofluorescence with biotinylated anti-CR2 mAb and streptavidin-phycoerythrin. Thirty to 40% of normal peripheral blood T lymphocytes expressed CR2 Ag. The cells expressed three nonoverlapping epitopes of CR2. The specificity of the staining for CR2 epitopes was demonstrated by the ability of unlabeled anti-CR2 mAb but not of anti-CR1 mAb of the same isotype to compete for the binding of biotinylated anti-CR2 mAb to T cells. The intensity of staining of T lymphocytes with anti-CR2 mAb was approximately 10-fold lower than that of peripheral blood B cells. CR2 was immunoprecipitated from purified T lymphocytes as a single protein of apparent Mr 145,000. The presence of CR2 on normal human T lymphocytes suggests that the receptor may modulate the function of T cells in the immune response and the susceptibility of the cells to infection by lymphocytotropic viruses.

Antibodies, Monoclonal↗

Characterization of the human complement receptor 2 (CR2, CD21) promoter reveals sequences shared with regulatory regions of other developmentally restricted B cell proteins.

Expression of human complement receptor 2 (CR2, CD21, C3d,g/EBV receptor) is developmentally restricted on human B lymphocytes to cells of the late-pre and mature stages. CR2 is also a member of the genetically linked regulators of complement activation family found on human chromosome 1q32. Regulators of complement activation proteins are variably expressed in plasma, on cell membranes, and in nonvascular extracellular fluid sites. To begin to understand the mechanisms that control both tissue specific and B cell developmental restriction of CR2 expression, we have cloned and characterized the CR2 promoter upstream of a single apparent transcriptional initiation site. Within this region are sequences with significant similarity to previously characterized TATA, SP1, AP-2, AP-1-like, and Ig enhancer E motif DNA protein binding sites, in addition to direct and inverted repeats. Significant regions of identity are also found between CR2 promoter sequences and those of the CD23 promoter, another protein whose expression is developmentally restricted on B cells. The CR2 promoter will direct transcription of the reporter gene chloramphenicol acyltransferase when transiently transfected into the human Raji B cell line. Therefore, we have identified the promoter for a human B cell protein whose expression is developmentally restricted. Further analysis of this region and the transcriptional regulation of CR2 gene expression should lead to significant insights into the molecular mechanisms by which B cells mature and are activated.

Antigens, CD↗

[Follicular dendritic cell sarcoma: a clinicopathologic study of five cases].

OBJECTIVE: To study the clinical pathological features and immunophenotype of follicular dendritic cell sarcoma (FDCS) with discussion on its diagnostic clues to improve diagnostic level. METHODS: Five cases of FDCS were analyzed by clinical, pathologic and immunohistochemistry methods. RESULTS: Five cases of FDCS were located in the cervical lymph node. Microscopically, the normal architectures were effaced by ovoid, spindle-shaped with fascicular, diffuse or whorled patterns and with rich lightly eosinophilic cytoplasm, syncytial appearance. Nuclei tend to show irregular clustering, scattered multinucleated giant cell. Nucleoli often distinct, sometimes prominent. Mitotic count variable, may show significant cellular pleomorphism. Immunohistochemical studies show that the tumor cells were positive for CD21, CD35, but negative for CD1a, CD34, CK and HMB45. Under electron microscopy, the tumor cells possessed long villus cytoplasmic processes and desmosome-like junctions, Birbeck granules were absent. CONCLUSIONS: FDCS is a rare malignant tumor and differential diagnosis includes Langerhans cell sarcoma, interdigitating dentric cell sarcoma, malignant fibrous histocytoma, melanoma, metastatic spindle cell carcinoma and others. Immunohistochemistry and electron microscopy are necessary for a correct diagnosis.

Adult↗

The CD19 complex of B lymphocytes. Activation of phospholipase C by a protein tyrosine kinase-dependent pathway that can be enhanced by the membrane IgM complex.

We have investigated the mechanism by which the membrane protein complex of the B lymphocyte that contains CD19 and CR2 activates phospholipase C (PLC) to induce a rise in [CA2+]i. The CD19 complex resembled the membrane IgM complex in that three protein tyrosine kinase inhibitors suppressed increases in [Ca2+]i and inositol bisphosphate and inositol triphosphate generation. However, the activation of PLC by the CD19 complex could be distinguished from that by the membrane IgM complex by slower kinetics of generation of inositol phosphates, resistance to inhibition by activators of protein kinase C, and different pattern of tyrosine-phosphorylated cellular substrates. Western blot analysis of lysates from cells stimulated by the CD19 complex demonstrated a single new phosphotyrosine-containing protein of 85 kDa, whereas multiple other phosphotyrosine-containing proteins were present in cells activated by the mIgM complex. In particular, PLC-gamma 1, which is a substrate for the protein tyrosine kinase activated by the mIgM complex, was not tyrosine-phosphorylated in cells stimulated by the CD19 complex. Cross-linking the two complexes together caused a synergistic increase in [CA2+]i which was neither suppressed by activation of protein kinase C nor associated with increased tyrosine-phosphorylation of PLC, characteristic of the CD19 pathway. Therefore, the B cell has two signal transduction complexes, associated with membrane IgM and CD19, that activate PLC by different mechanisms and that can synergistically interact to enhance this function by the CD19 pathway.

Antigens, CD↗

Human complement regulatory proteins expressed on mouse A9 cells containing a human chromosome 1.

The structural genes of human complement regulatory proteins are clustered on chromosome 1 at position q3.2. Human chromosome 1 was transferred into a mouse fibroblast cell line, A9 [designated as A9(neo-1)], and the surface expression of its gene products participating in complement regulation, namely C3b/C4b receptor (CR1, CD35), decay-accelerating factor (DAF, CD55), membrane co-factor protein (MCP, CD46) and C3d/EB virus receptor (CR2, CD21), were assessed using respective monoclonal antibodies by flow cytometry. CR1 became positive within 7 days of culture. MCP appeared in a small population of cells by Day 3 and, together with DAF, began to increase on Day 7. CR2 appeared on Day 14. The order of the expression was CR1 greater than DAF = MCP greater than CR2. On Day 42, however, all became negative except for MCP, which was markedly diminished. These human regulatory proteins were specifically associated with the presence of human chromosome 1, since none of them were expressed on human chromosome 12-transferred A9 cells [A9(neo-12)]. Intact A9 and A9(neo-12) cells activated human complement via the alternative pathway. The activation of this pathway was suppressed in the A9(neo-1) cells that expressed CR1, DAF and MCP. Slight protective activity was still observed in the 42-day cultured A9(neo-1) cells expressing only trace MCP. These results suggest that human complement regulators, expressed via the transferred human chromosome 1, can protect heterologous cells from complement, overcoming their ability to activate the human alternative pathway.

Animals↗

Follicular dendritic cells contain a unique gene repertoire demonstrated by single-cell polymerase chain reaction.

Follicular dendritic cells (FDCs) form a dense network between B cells within the germinal center and are thought to be an important component of this B-cell microenvironment. Previous immunophenotypic studies have been inconclusive in determining the cellular origin of FDCs. Gene coexpression within individual and highly enriched FDCs was determined using polymerase chain reaction. FDCs contain a very restricted mRNA pattern with high levels of message for the C3d receptor (CR2, Epstein Barr-virus/EBV receptor, CD21) and lack of mRNA for CD20, CD45, CD4, fibronectin, and platelet-derived growth factor receptor alpha and beta. These observations are consistent with the hypothesis that FDCs may not be of classical hematopoietic or fibroblastic origin. The absence of interferon-gamma, tumor necrosis factor-alpha, interleukin-3, and interleukin-6 mRNA provides preliminary evidence that these cells might produce only a very restricted set of cytokines limited to the germinal center.

Antigens, CD↗

Differential effects of the stimulation of complement receptors CR1 (CD35) and CR2 (CD21) on cell proliferation and intracellular Ca2+ mobilization of chronic lymphocytic leukemia B cells.

The regulatory role of CR1 and CR2 on B cell activation and proliferation has been investigated by using B cells from patients with chronic lymphocytic leukemia. The chronic lymphocytic leukemia B cells are clonal expansions of B lymphocytes frozen at specific stages of activation. They displayed two patterns of response upon surface Ig (sIg) cross-linking in terms of in vitro proliferation and intracellular free Ca2+ mobilization: cells from patient F (first pattern) proliferated in the presence of mitogenic anti-mu antibodies, whereas cells from patient A (second pattern) did not respond to sIg cross-linking but proliferated in the presence of low m.w. B cell growth factor and IL-2. Coculture of A or F cells with C3b-bearing SRBC led to a two- to four-fold increase in thymidine incorporation in cultures containing low m.w. B cell growth factor but not in cultures containing rIL-2. This enhanced proliferation was inhibited by F(ab')2 polyclonal rabbit antihuman CR1 antibodies. Only cells which proliferated in the presence of anti-mu (cells F) responded to cross-linking of sIg with a rise in intracellular Ca2+. No increase in calcium mobilization was observed after co-cross-linking of CR1 and sIg on A and F cells with mAb or polyclonal anti-CR1 antibodies. Co-cross-linking of CR2 with sIg only led to an enhanced intracellular Ca2+ rise in F cells but not in A cells. The lack of CR2-mediated synergy in Ca2+ rise in A cells indicates that the synergy occurs only if there is a proper coupling of sIg to phospholipase C. CR1-induced proliferation of B cells does not involve the signaling pathways of sIg. These results provide additional evidences for the role of C3 fragments in modulation of human B cell activation.

Antigens, CD↗

[Hairy cell leukemia expressing SIgM+, SIgG-, CD11b+ and CD21+ and accompanying lymphadenopathy without splenomegaly].

Hairy cell leukemia (HCL) expressing both surface monocytoid antigen and IgM (kappa) was reported. A 62-year-old male was admitted to our hospital in September 21, 1989 because of leukocytosis. Physical examinations showed axillary and inguinal lymphadenopathy but no hepato-splenomegaly. The leukocyte count was 12,600/microliters with 73% of abnormal cells like large lymphocytes which had abundant cytoplasm and hairy appearance under phase microscopy. They had ruffles with microvilli under electron microscope. Bone marrow puncture showed normocellular marrow with 71.2% of abnormal cells similar to the peripheral blood. Surface markers were CD11b+, CD21+, HLA-DR+, Tac- and IgM (kappa). They were positive for ++acid phosphatase staining, but negative for peroxidase and tartrate-resistant acid phosphatase staining. He was diagnosed as Japanese type HCL. HCL expressing both surface monocytoid antigen and IgM is rare and the clinical features of our case are compared with those reported in Japan.

Antigens, Differentiation, B-Lymphocyte↗