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Identification of a CD21 receptor-deficient, non-Ig-secreting peripheral B lymphocyte subset in HIV-seropositive drug abusers.

We have studied 61 HIV-seropositive heroin addicts (18 asymptomatic, 20 ARC, and 23 AIDS cases), 26 HIV-seronegative heroin addicts, and 45 healthy blood donors, matching the groups each other for age and sex. We have focused on the phenotypic characteristics of B subpopulations in the peripheral blood of HIV-seropositive and -seronegative drug abusers, paying particular attention to the consistence of the "CD20+" B cell subset, which poorly expresses the CD21 membrane receptor for the C3d and Epstein-Barr virus (EBV) (referred to as "CD20 + CD21-" subset). In healthy blood donors, the ratio CD20 + CD21-/CD20+ x 100 is extremely low (mean +/- SEM = 8.1 +/- 0.9) and rarely exceeds the value of 20. On the contrary, in HIV seropositives, the values are much more dispersed, with higher mean values (mean +/- SEM = 25.8 +/- 1.8) ranging from 50 to 60. An intermediate situation characterizes the class of HIV-seronegative heroin addicts, whose values are slightly higher and more dispersed than that of normal controls (mean +/- SEM = 11.6 +/- 1.3). The extent of the amplification of the CD20 + CD21- subset in HIV-seropositive individuals does not apparently correlate with the progression of the disease and represents an early event in the clinical course of HIV infection. For each subject of the study group, the number of CD20 + CD21- B lymphocytes is not correlated to other early markers of HIV infection, as the T4 lymphocyte number, or total Ig levels in sera. A functional characterization of the CD20 + CD21- B cell subset indicates that, in HIV-seropositive patients, these cells are unable to produce specific and nonspecific immunoglobulins (Ig's), either spontaneously or after pokeweed mitogen stimulation. Furthermore, this cell subset is characterized by poor expression of surface Ig's. The data reported suggest that this cell subset can be regarded as situated at an early level of B cell lineage differentiation.

Adolescent↗

Modulation and intracellular transport of CD20 and CD21 antigens induced by B1 and B2 monoclonal antibodies in RAJI and JOK-1 cells--an immunofluorescence and immunoelectron microscopy study.

By fluorescence microscopy (FM), flow cytometry (FCM) and immunoelectron microscopy (IEM) we have shown that B1 and B2 monoclonal antibodies (MoAbs) were able to induce modulation of CD20 and CD21 in RAJI and JOK-1 cell lines. Redistribution and internalization of both antigens (Ags) after binding with MoAbs was readily demonstrated by FM, and by IEM CD20 and CD21 were found to be processed by the pathway of receptor-mediated endocytosis. The rate of intracellular transport varied: CD21 > CD20 and RAJI > JOK-1. Approximately 65 and 55% of CD20 and 60 and 45% of CD21 were cleared from the surface of RAJI and JOK-1 cells, respectively (FCM and IEM). These values, however, clearly exceeded those corresponding to internalization (11, 9, 24 and 16%) indicating shedding of Ag-MoAb complexes. No evidence of recycling was found. The present data support the hypothesis that the kinetics of modulation vary from one Ag to another and probably also reflect the stage of differentiation of the malignant B-cells. The results are discussed in the context of the possible usefulness of B1 and B2 MoAbs in the therapy of B-cell malignancies.

Antibodies, Monoclonal↗

Complement C3 receptors: structure and function.

Significant progress has been made during the past few years toward elucidating the structure and function of various C3 receptors. Better understanding of the biochemical basis of the immune adherence phenomenon has been achieved. The availability of polyclonal and monoclonal antibodies to C3 receptors allowed more accurate studies of the cellular distribution of these receptors. Finally, advances in our knowledge of the functional properties of the C3 receptors and their relationship to specific cell surface molecules was facilitated by recognition of a patient deficient in various receptor-mediated functions. All together these developments will soon make it possible to describe in detail the molecular events involved in the modulation of complement receptor coupled cell functions.

Animals↗

Cell cycle control of activated, synchronized murine B lymphocytes--roles of macrophages and complement C3.

Three restriction points control the cell cycle of activated murine B lymphocytes in a synergistic way. The first is controlled by the occupancy of surface immunoglobulin either by antigen- or by immunoglobulin-specific antibodies. The second is controlled by the complement C3d receptor CR2 which can be occupied by cross-linked C3b or C3d to stimulate the entry into S phase, or by soluble C3d or a C3 alpha-chain peptide, binding to the CR2 receptor, which inhibit the entry into S phase. Macrophages produce so-called alpha factors which also control the B-cell cycle at the same point. Thus, it is suspected that macrophages produce components of the early pathway of complement activation which finally lead to cross-linking of CR2 receptors on B cells. The third restriction point is controlled by unknown receptors that recognize so-called beta factors produced by helper T lymphocytes.

Animals↗

Covalent binding of non-proteolysed C3 to Jurkat T cells.

Purified C3 binds covalently to Jurkat T cells upon incubation at neutral pH. This binding does not appear to involve proteolysis of C3; it leads to high-molecular-weight associations, preferentially through ester linkages, which are disrupted upon incubation with hydroxylamine at alkaline pH. Part of the association also appears to involve disulfide links between C3 and Jurkat cells. Similarly, plasma membranes purified from these cells bind C3 with no evidence for proteolysis of C3. Binding of C3 appears to be "catalysed" by Jurkat cells, and is not due to the well-known spontaneous hydrolysis of C3. Binding of C3 involves hydrolysis of its thioester bond, as titratable--SH groups are available in soluble C3 after incubation of purified C3 with Jurkat plasma membranes; loss of C3 haemolytic activity confirms this finding. These observations give evidence for the binding of C3b-like C3 to Jurkat cells, conferring on these cells the potential to interact with other complement receptor-bearing cells such as B cells.

Antigens, Differentiation, B-Lymphocyte↗

Lymphocyte subset abnormalities in German shepherd dog pyoderma (GSP).

Peripheral blood lymphocyte subpopulations were studied in 12 German shepherd dogs suffering from deep pyoderma (GSP). Twelve other healthy but matched dogs were used as controls. GSP was found to be associated with an imbalance in the CD4 and CD8 subsets (respectively 37.3 +/- 8.7% and 28.6 +/- 6.6%, as compared to 47.5 +/- 8.8% and 19.3 +/- 4.0% in the controls). The activation markers were not affected by GSP. Moreover, analysis of the B-cell populations showed a striking decrease in the level of CD21 cells (5.5 +/- 3.3% of CD21+ lymphocytes, compared to 12.2 +/- 6.0 in the controls). This study suggests that the immunological imbalance observed in GSP may be associated with defective helper cells, and provides further evidence that dogs suffering from GSP are not immunologically normal reactors.

Animals↗

Phenotype characteristics of human B cells studied by Epstein-Barr virus infection. II. C3 receptor switching during human B cell differentiation.

Our experiments showed that two C3 receptors (C3-R) appeared on membrane surfaces in a distinct sequence during the differentiation of human B cells. The experimental results supporting this conclusion were (1) the lymphoblastoid cells established from immature B cells expressed more EACm-R (C3bi and C3d receptors) than EACh-R (C3b receptor), (2) the lymphoblastoid cells originated from mature B cells showed more EACh-R than EACm-R, (3) the above characteristic expression of C3-R was demonstrated on every clone isolated in soft agar from cells in B cell lineage at various differentiation stages, indicating that a cell line consists of homogeneous population in terms of C3-R expression. From these results, it was concluded that C3-R switched from EACm-R to EACh-R during B cell differentiation.

B-Lymphocytes↗

Proliferation of resting B cells is modulated by CR2 and CR1.

Absence of the third component of complement, C3, is associated with impaired ability to synthesize antibody, particularly in the presence of limiting antigen [1-9]. The mature B lymphocyte bearing the surface immunoglobulin receptor transduces signals for proliferation and differentiation upon binding of specific antigen. This mature B cell also bears two related membrane proteins, CR2 (the C3d/Epstein-Barr virus receptor) (CD35) [15], which can mediate the binding of ligands to which appropriate cleavage fragments of C3 have become attached [16]. It has been suggested that these receptors play a direct role(s) in B cell activation [17-25]. In light of previous in vivo observations we decided to assess the function of CR2 and CR1 in relation to B cell activation through the membrane IgM receptor. Highly purified splenic B cells were prepared. No contaminating T cells or macrophages were detected by flow cytometric analysis and no proliferative activity was present upon PHA or ConA stimulation of the purified cells. The B cells were separated into low (activated), medium (preactivated) and high density (resting) fractions by Percoll gradient density centrifugation [26]. The responses of the B cell subpopulations to various concentrations of anti mu (DA4.4 monoclonal antibody) [27] were examined for proliferation at 72 h and for IgM/IgG production at 7 days. Low density B cells were maximally stimulated and no concentration of anti-mu was effective in enhancing their responses. High density B cells proliferated to anti-mu in a concentration dependent manner. When substimulatory concentrations of anti-mu were employed, concomitant crosslinking of CR2 (with either of 2 distinct monoclonal antibodies HB-5 [28] or OKB7 [17]) resulted in a 45% enhancement of B cell proliferation above that observed by crosslinking of SIgM alone. In these studies, total IgM and IgG did not increase in the absence of T cells or T cell factors, indicating that terminal differentiation did not occur. In contrast, when a monoclonal antibody to CR1(44D) [29] was employed in an identical experiment, B cell proliferation was completely inhibited. Antibodies to CR2 or CR1 either alone or in crosslinked form did not enhance B cell proliferation. Immune complexes may crosslink the B cell surface in a manner analogous to our model when the immunoglobulin receptor and CR2 are simultaneously engaged. This activation signal may be particularly important in eliciting antibody responses when the quantity of specific antigen or the affinity for antigen is low. The marked inhibition of proliferation induced by CR1 suggests an alternate role for this receptor in modulation of B cell responses.

Animals↗

Ligands of CR2 do not interfere with C3 fragment fixation or enhanced NK sensitivity of Raji cells treated with human serum.

Raji cells activate the alternative complement pathway (ACP) and fix C3 fragments when incubated in human serum (HS). Earlier experiments have shown that CR2 molecules are involved in this phenomenon and the opsonized cells have elevated sensitivity to the lytic effect of CR3-bearing NK cells. We show here that Raji cells treated with CR2 site-specific ligands, (C3d, OKB-7 and HB-5 mAbs, and a synthetic peptide which binds to CR2) generated and bound C3 fragments after exposure to HS. The elevated lytic sensitivity of HS-treated cells was not altered by the presence of the various CR2 ligands. Thus, the membrane-bound C3 fragments are not fixed at the C3dg receptor binding site.

Antibodies, Monoclonal↗

Reduced CD21 (CR2) and CD54 (ICAM-1) expression in MT2 cells with HIV-1 or HIV-2 strains.

Alterations in the expression of cell-surface receptors have been reported in HIV-infected cells for CD4, CD25 (IL-2 receptor), CD2, CD3 and CD8 and CD26. In the present study we provide evidence that CD21 is down-regulated in the human T-lymphoblastoid cell line MT2 after infection with HIV-1 and -2 isolates. The same effect was observed with ICAM-1 (CD54). CD21 expression was monitored by means of fluorescence intensity, its functional ability to bind to C3d and by quantitative measurement of CD21-antigen in supernatants and cell lysates using an immunoassay. In addition, the decrease of CD21 and ICAM-1-specific mRNA suggests a mechanism at a transcriptional level. Our data suggest that HIV might have a direct influence on the receptor expression.

Cell Line, Transformed↗

CD21+ (B2 antigen+) cell decrement and CD4+CD29+ (helper-inducer) cell increment suggest an activation of cell immune reactivity in multiple sclerosis.

Two-color flow cytometric analysis on peripheral blood lymphocytes of 35 untreated multiple sclerosis (MS) patients, 17 other medical disease (OMD) patients and 14 healthy control (HC) subjects was performed to evaluate the levels of different T and B cell subpopulations. In MS patients we observed an increase in CD4+CD29+ helper-inducer cells but this increase was not related to the different phases of the disease. We hypothesize that this change is related to the reduction of CD21+ cells expressing B2 antigen, a 140 kDa molecule disappearing after B cell activation. An increased level of CD4+CD45RA- (helper-inducer-like cells) and a reduction of CD4+CD29- (suppressor-inducer-like cells) were also present in our patients. These findings demonstrate an immune 'disequilibrium' in MS, which is linked with an increased level of CD25+ cells expressing the interleukin-2 (IL-2) receptor. IL-2, besides being a T cell growth factor, is also a B cell growth factor. These data let us hypothesize that an activation of the immune response is present in MS.

Adult↗

The evolution of mouse and human complement C3-binding proteins: divergence of form but conservation of function.

Despite the fact that the early components of the mouse and human complement cascades are very similar, there are marked differences between the two species in the structure of C3 receptors and the molecules that control homologous lysis. Here, Michael Holers, Taroh Kinoshita and Hector Molina compare and contrast the mouse and human RCA region products and conclude that the receptor and regulatory roles are conserved despite the structural variation.

Animals↗

The CD19/CD21 signal transduction complex of B lymphocytes.

CD19 and CD21 are B-cell surface molecules that associate with each other and with CD81 and Leu-13 to generate a signal transduction complex that is independent of the antigen receptor. Current studies, reviewed here by Thomas Tedder, Liang-Ji Zhou and Pablo Engel, indicate an important biological role for this protein complex in the regulation of B-cell development and activation.

Amino Acid Sequence↗

The CD19-CR2-TAPA-1 complex, CD45 and signaling by the antigen receptor of B lymphocytes.

A paradigm describing the response of T lymphocytes to antigen holds that signals from antigen receptors must be modulated by non-antigen-specific, accessory membrane proteins for an appropriate cellular response to occur, such as differentiation, activation and tolerance. Recent studies suggest that this paradigm applies also to B lymphocytes. Signaling through membrane IgM in these cells requires CD45, a phosphotyrosine phosphatase, and is amplified by a complex containing CD19, complement receptor 2 (CD21), and TAPA-1, which recruits the intracellular enzyme, phosphatidylinositol 3-kinase.

Animals↗