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G J Silverman

Publications and source records attributed to G J Silverman.

At least 19 recordsLinked to original sources

Structural basis of the gp120 superantigen-binding site on human immunoglobulins.

B cell superantigens (SAg) interact with normal human nonimmune Igs (Igs), independently of the light chain isotype, and activate a large proportion of the B cell repertoire. Recently, the major envelope protein of HIV-1, gp120, was found to exhibit SAg-like properties for B cells with potential pathologic consequences for the infected host. This unconventional mode of interaction contrasts with its binding to immunization-induced Abs, which requires the tertiary structure of the heavy and light chain variable regions. In this report, we have examined the structural basis of the interaction between human Igs and gp120. We found that gp120 binding is restricted to Igs from the V(H)3 gene family and that the two V(H) genes 3-23 and 3-30, known to be overutilized during all stages of B cell development, frequently impart gp120 binding. We also provide evidence that the viral gp120 SAg can interact with only a subset of the human V(H)3+ Igs that can convey binding to the prototypic bacterial B cell SAg protein A from Staphylococcus aureus. Finally, we have identified amino acid positions present primarily in the first and third framework regions of the Ig heavy chain variable region, outside the conventional hypervariable loops, which correlate with gp120 binding. In a three-dimensional sequence-homology model, these residues partially overlap with the predicted SAg protein A binding site for V(H)3+ Igs.

Amino Acid Sequence

The dual phases of the response to neonatal exposure to a VH family-restricted staphylococcal B cell superantigen.

In vitro studies of several naturally occurring proteins have characterized VH family-specific B lymphocyte binding and stimulatory properties that appear analogous to those of T cell superantigens. To examine the in vivo consequences of exposure to a putative B cell superantigen, we treated neonatal BALB/c mice with a form of staphylococcal protein A (MS) devoid of Fcgamma binding activity, which retains the clan VHIII Fab binding specificity. In naive adults, about 5% of peripheral B cells and >13% of splenic IgM-secreting cells display MS binding activity, in association with high IgM and low IgG circulating anti-MS Ab titers. Neonatal exposure to MS elicited two distinct temporal phases of immune responsiveness. The early phase, representing the first approximately 5 wk of life, was associated with MS-specific B cell and T cell tolerance. Microfluorometric assays revealed that exposure caused a dramatic MS-specific B cell clonal loss in bone marrow and spleen, but levels normalized by about 3 wk of life. The late phase (>6 wk of age) was associated with spontaneous priming for MS-specific T cell responses and production of MS-specific IgG1 Abs despite long term persistently depressed in vivo and in vitro MS-specific IgM responses. In vivo challenge during the late phase induced high frequencies of MS-specific IgG-secreting cells, indicating recruitment of highly focused Ab responses that were predominantly encoded by rearrangements of the S107 family, a member of the VHIII clan. These studies document the immunodominance of the VH-restricted Fab binding site on staphylococcal protein A and demonstrate the diverse effects of a B cell superantigen on the emerging peripheral B cell compartment.

Animals

B cell superantigens: possible roles in immunodeficiency and autoimmunity.

Lymphocyte antigen receptors have evolved for the discrimination of self and non-self structures and consequently the unconventional binding activities of superantigens pose a special set of potential hazards and opportunities for the immune system. This review presents recent evidence that certain naturally occurring proteins have the properties of B cell superantigens by virtue of their unconventional variable-region mediated interactions with soluble and membrane-bound immunoglobulins. The implications for B lymphocyte activation and clonal selection are discussed and we speculate how superantigens may influence the development of lymphocyte repertoires and the immune responses associated with certain autoimmune and immunodeficiency diseases.

Animals

B-cell superantigens: molecular and cellular implications.

B cell superantigens are proteins that are capable of immunoglobulin variable region mediated binding interactions with the naive B cell repertoire at frequencies that are orders of magnitude greater than occur for conventional antigens. Within this review we discuss recent observations regarding the molecular basis of these interactions and the distribution of superantigen binding capacities in different human B cell populations. These findings and current predictions regarding the relevance of these proteins to the physiologic development of immune repertoires are also discussed.

Aging

Repertoire cloning of lupus anti-DNA autoantibodies.

To investigate the autoantibody repertoire associated with SLE, we have created phage display IgG Fab libraries from two clinically active SLE patients and from the healthy identical twin of one of these patients. The libraries from the lupus discordant twins were found to both include unusually large representations of the V(H)5 gene family. By panning with DNA, the SLE libraries each yielded IgG anti-double-stranded (ds) DNA autoantibodies, which are characteristic of lupus disease. These included a V(H)5 autoantibody from the affected twin, that has a targeted cluster of mutations that potentially improves binding affinity. The recovered IgG anti-dsDNA autoantibodies expressed the same idiotypes associated with the in vivo IgG anti-dsDNA response of the respective SLE donor. Heavy-light chain shuffling experiments demonstrated a case in which the in vitro creation of anti-dsDNA binding activity required restrictive pairing of a heavy chain with Vlambda light chains similar to those in circulating anti-dsDNA autoantibodies. By contrast, IgG anti-ds autoantibodies could not be recovered from the library from the healthy twin, or from shuffled libraries with heavy chains from the healthy twin. These repertoire analyses illustrate how inheritance and somatic processes interplay to produce lupus-associated IgG autoantibodies.

Amino Acid Sequence

An endogenous sialoprotein and a bacterial B cell superantigen compete in their VH family-specific binding interactions with human Igs.

Staphylococcal protein A (SpA), a bacterial membrane protein, and protein Fv (Fv binding protein (pFv)), a human sialoprotein involved in gut-associated immunity, have both recently been shown to have unconventional V(H) family-restricted binding interactions with Igs. To determine whether these Ig binding proteins interact with related structures, we performed a series of comparative binding studies. The results confirmed that both molecules are bound by most V(H)3 IgM, but pFv is also recognized by V(H)3 and V(H)6 Ig that do not interact with SpA. We discovered that pFv and SpA (or a single domain of SpA) can compete for binding to a V(H)3 Ab, which suggests that they can recognize the same (or adjacent) V(H) sites. For both SpA and pFv, binding is less frequent among IgG than IgM. However, V(H)3 IgG more commonly possess Fab-mediated binding activity for pFv than for SpA. Binding studies of denatured Ig suggested that both pFv and SpA interact with conformationally dependent V(H) sites, although in certain cases pFv binding is more permissive than SpA binding. Taken together, these results indicate that the superantigen properties of SpA, a microbial protein, and those of pFv, an endogenous sialoprotein, involve binding interactions with overlapping and at times functionally equivalent sites in the V(H) domain, indicating that self and foreign proteins can employ highly conserved strategies to create superantigens for the Ag receptors of B lymphocytes.

Antigens, Bacterial

Differential binding avidities of human IgM for staphylococcal protein A derive from specific germ-line VH3 gene usage.

Human IgM that express the variable region genes of the VH3 family bind staphylococcal protein A (SPA). We previously reported that the SPA-binding IgM can be divided into two groups based on the differential binding avidities for solid-phase SPA. To study the molecular basis for these differences, we cloned B cells from human blood by EBV transformation. The nucleotide sequences of the expressed Ig heavy chain genes were determined on 20 B cell clones that produce SPA-binding IgM. The germ-line VH3 gene usage in IgM with high avidities for SPA were distinct from the germ-line VH3 genes used in IgM with low avidities for SPA. There was no correlation in the usage of D or JH genes or in the usage of light chains in IgM according to the SPA binding avidity. These results suggest that the differential binding avidities for SPA are at least partly due to specific germ-line VH3 gene usage. An investigation of direct binding of SPA to the synthetic peptides corresponding to the portions of the variable regions of SPA-binding and non-SPA-binding IgM showed that the peptides corresponding to the VH3 family specific framework region 3 sequences had significant SPA binding capacities, while the peptides corresponding to the other subdomains and those corresponding to framework region 3 of the reported VH3 sequences from non-SPA-binding IgM showed little or no binding. It is of interest that the Ig-framework region 3 subdomain corresponds to the fourth hypervariable region, which in the TCR-beta chain has been implicated as a critical site for T cell superantigen binding.

Adult

Complement activation by a B cell superantigen.

Staphylococcal protein A (SpA), acting as a B cell superantigen, binds to the Fab region of human VH3+ Igs. Using SpA abrogated of its IgG Fc binding activity (Mod SpA) as a model B cell superantigen, we determined whether such an interaction causes complement activation. Addition of Mod SpA to human serum led to complement consumption and the generation of C3a. To determine whether this complement activation 1) was due to an interaction between VH3+ Igs and the Fab binding site of SpA and 2) proceeded via the classical complement pathway, we tested a panel of monoclonal IgM proteins for the ability to hind C1q following interaction with SpA. C1q binding was restricted to SpA-reactive, VH3+ IgM proteins. To formally determine whether the binding of SpA to the reactive VH3+ IgM proteins led to complement activation, we reconstituted the serum from a hypogammaglobulinemic patient with monoclonal IgM proteins and measured complement consumption and C3a generation following the addition of Mod SpA. We observed complement consumption and C3a production only in Mod SpA-treated serum reconstituted with a VH3+, SpA-binding, IgM protein. Taken together, these results provide compelling evidence that the interaction of the Fab binding site of SpA and VH3+ Igs can lead to complement activation via the classical pathway. This novel interaction may have significant implications for the in vivo properties of a B cell superantigen.

Adult

Immunostimulatory DNA sequences necessary for effective intradermal gene immunization.

Vaccination with naked DNA elicits cellular and humoral immune responses that have a T helper cell type 1 bias. However, plasmid vectors expressing large amounts of gene product do not necessarily induce immune responses to the encoded antigens. Instead, the immunogenicity of plasmid DNA (pDNA) requires short immunostimulatory DNA sequences (ISS) that contain a CpG dinucleotide in a particular base context. Human monocytes transfected with pDNA or double-stranded oligonucleotides containing the ISS, but not those transfected with ISS-deficient pDNA or oligonucleotides, transcribed large amounts of interferon-alpha, interferon-beta, and interleukin-12. Although ISS are necessary for gene vaccination, they down-regulate gene expression and thus may interfere with gene replacement therapy by inducing proinflammatory cytokines.

Amino Acid Sequence

VH3 family antibodies bind domain D of staphylococcal protein A.

Staphylococcal protein A (SpA) is a 45-kDa bacterial membrane protein that can interact with either Fc gamma, a constant region portion of IgG, or with the Fab portion that also mediates conventional Ag binding. In recent reports, SpA has been shown to specifically interact with Fab derived from the VH3 family and is little affected by VH CDR3, JH, or light chain usage. To identify a site on SpA responsible for VH3 Fab binding, we cloned and expressed in Escherichia coli the 61 amino acid sequence of SpA that represents domain D, and this small protein exhibited both the VH3 Fab and Fc gamma binding specificities. Surface plasmon resonance measurements demonstrated that domain D and native SpA had the strongest binding interactions with an IgM-kappa encoded by the germline configuration of the VH3 gene VH26c. In contrast, the apparent affinities for Fc gamma binding were at least fivefold weaker. A variant of domain D was also created that is devoid of the three-codon insertion that distinguishes domain D from all other domains in SpA. Although this deletion did not significantly affect the VH3 Fab-mediated SpA binding activity, it did improve the affinity of Fc gamma binding by an order of magnitude. These observations characterize a site on SpA responsible for binding interactions with B cell Ag receptors that are highly analogous to that of superantigens for T cell receptors.

Amino Acid Sequence

Human autoantibody recognition of DNA.

Combinatorial IgG Fab phage display libraries prepared from a systemic lupus erythematosus (SLE) donor and a healthy donor were affinity selected against human placental DNA. Human monoclonal antibody Fab fragments specific for DNA were isolated from both libraries, although Fabs of the highest affinity were isolated only from the lupus library. Generally, apparent affinities of the Fabs for human placental DNA, purified double-stranded DNA, and denatured DNA were approximately equivalent. Surface plasmon resonance indicated Fab binding constants for a double-stranded oligodeoxynucleotide of 0.2-1.3 x 10(8) M-1. The higher-affinity Fabs, as ranked by binding to human placental DNA or to the oligonucleotide probe, tested positive in the Crithidia luciliae assay commonly used in the diagnosis of SLE, and interestingly the genes encoding the heavy-chain variable regions of these antibodies displayed evidence of only minimal somatic hypermutation. The heavy chains of the SLE Fabs were characterized by a predominance of basic residues toward the N terminus of complementarity-determining region 3 (CDR3). The crucial role of heavy-chain CDR3 (HCDR3) in high-affinity DNA recognition was suggested by the creation of DNA binding in an unrelated antibody by HCDR3 transplantation from SLE antibodies. We propose that high-affinity DNA-binding antibodies can arise in SLE without extensive somatic hypermutation in the variable-region genes because of the expression of inappropriate HCDR3s.

Amino Acid Sequence

Preferred usage of specific immunoglobulin gene segments in chronic lymphocytic leukaemia cells of three HLA-identical sisters.

We report three family members, including a set of identical twins, who developed CD5 positive B-CLL. The patients are female Ashkenazi Jews sharing an identical HLA phenotype. Two of the HLA loci (B35 and Cw4) were common with those already described as being shared by Ashkenazi Jews with an increased incidence of CLL. The rearranged immunoglobulin genes of the malignant cells of all three patients were found to express genetically related VH regions belonging to the VH3 subgroup, and chromosomal studies suggest a process of clonal evolution in one of the twins.

Aged