PubMed Health⌕ Search

Biomedical subjects

V Pascual

Publications and source records attributed to V Pascual.

At least 37 records · Page 2Linked to original sources

The human antibody repertoire: heavy and light chain variable region gene usage in six alloantibodies specific for human HLA class I and class II alloantigens.

Peripheral blood B lymphocytes have been isolated from healthy individuals who were immunized with lymphocytes from HLA-incompatible donors and transformed with Epstein-Barr virus to produce human monoclonal cell lines specific for human HLA molecules. The cell lines have been previously characterized and are known to bind to various class I and class II alloantigens. In this report we describe the molecular characterization of the heavy and light chain variable region gene segments that are utilized by these monoclonal antibodies. Using the polymerase chain reaction and primer pairs specific for the respective constant region and VH or VL family, rearranged variable region gene segments were amplified from cDNA from individual cell lines. Products were then subcloned, sequenced and analysed for gene usage and apparent somatic mutation. The results show that the VH3 gene family predominates in a group of six heavy chains (four out of six) with one VH1 and one VH4 gene segment. The light chain variable region gene family usage is more diverse with 2 V kappa 3, 1 V kappa 1, 2 V lambda 2 and 1 V lambda 3. The extent of apparent somatic mutation is minimal, relative to our previous observations in a group of high affinity human monoclonal antibodies specific for pathogenic organisms.

Amino Acid Sequence↗

Staphylococcal protein A induces biased production of Ig by VH3-expressing B lymphocytes.

Staphylococcal protein A (SPA) is known to bind preferentially to the VH3 family of Ig heavy chain variable gene products. The current studies were conducted to examine the functional capacity of SPA to induce Ig production by VH3-expressing human B cells preferentially. Human peripheral blood B cells stimulated with anti-CD3-activated T cells or the Wood 46 strain of Staphylococcus aureus, which lacks SPA, expressed IgM containing all VH families, as detected by reverse transcription-PCR. In contrast, stimulation with SPA containing S. aureus or SPA-Sepharose resulted in biased expression of VH3 containing IgM. Similarly, cord blood B cells that require costimulation for Ig production induced by anti-CD3-activated T cells produced only VH3 containing IgM on costimulation with SPA containing S. aureus. The sequences of 21 VH3 IgM gene products derived from different B cell sources were determined and found to include at least nine members of the VH3 family, which were both in germ-line configuration and somatically mutated. Use of DH and JH was diverse. Analysis of these VH3 gene products revealed conserved residues in FR1 and 3'CDR2/FR3, which are candidates to play a role in SPA-mediated activation of VH3-expressing B cells. Like T cell superantigens, SPA probably interacts with residues in the partially solvent exposed regions of the heavy chain molecule outside the classical Ag binding site and provides a signal that can lead to Ig production by human B cells expressing VH3.

Amino Acid Sequence↗

Analysis of somatic mutation in five B cell subsets of human tonsil.

Using a series of phenotypic markers that include immunoglobulin (Ig)D, IgM, IgG, CD23, CD44, Bcl-2, CD38, CD10, CD77, and Ki67, human tonsillar B cells were separated into five fractions representing different stages of B cell differentiation that included sIgD+ (Bm1 and Bm2), germinal center (Bm3 and Bm4), and memory (Bm5) B cells. To establish whether the initiation of somatic mutation correlated with this phenotypic characterization, we performed polymerase chain reaction and subsequent sequence analysis of the Ig heavy chain variable region genes from each of the B cell subsets. We studied the genes from the smallest VH families (VH4, VH5, and VH6) in order to facilitate the mutational analysis. In agreement with previous reports, we found that the somatic mutation machinery is activated only after B cells reach the germinal center and become centroblasts (Bm3). Whereas 47 independently rearranged IgM transcripts from the Bm1 and Bm2 subsets were nearly germline encoded, 57 Bm3-, and Bm4-, and Bm5-derived IgM transcripts had accumulated an average of 5.7 point mutations within the VH gene segment. gamma transcripts corresponding to the same VH gene families were isolated from subsets Bm3, Bm4, and Bm5, and had accumulated an average of 9.5 somatic mutations. We conclude that the molecular events underlying the process of somatic mutation takes place during the transition from IgD+, CD23+ B cells (Bm2) to the IgD-, CD23-, germinal center centroblast (Bm3). Furthermore, the analysis of Ig variable region transcripts from the different subpopulations confirms that the pathway of B cell differentiation from virgin B cell throughout the germinal center up to the memory compartment can be traced with phenotypic markers. The availability of these subpopulations should permit the identification of the functional molecules relevant to each stage of B cell differentiation.

Antigens, CD↗

Nucleotide sequence analysis of natural and combinatorial anti-PDC-E2 antibodies in patients with primary biliary cirrhosis. Recapitulating immune selection with molecular biology.

We have analyzed at the nucleotide level the variable region gene sequences of five human mAbs and five recombinant Fab fragments derived from the mesenteric lymph nodes of patients with primary biliary cirrhosis. Both mAbs and Fabs were monospecific for dihydrolipoamide acetyltransferase, the E2 subunit of the pyruvate dehydrogenase complex, which has been shown to be the major autoantigen of primary biliary cirrhosis. We found that although the mAbs, mainly of the IgM isotype, were encoded by a diverse array of VH and VL gene segments either as direct copies of germline genes or somatically mutated, the recombinant IgG Fabs expressed clonally related heavy chains displaying a high number of somatic mutations that very likely occurred in the context of Ag selection. Combinatorial pairing of clonally related heavy chains with highly homologous light chains suggests that the IgG anti-pyruvate dehydrogenase complex repertoire of primary biliary cirrhosis patients is the result of the clonal expansion of a restricted set of B cells.

Amino Acid Sequence↗

Analysis of Ig H chain gene segment utilization in human fetal liver. Revisiting the "proximal utilization hypothesis".

The utilization of Ig H chain gene segments during ontogeny is postulated to result from an immature recombination machinery that preferentially rearranges genes according to chromosomal position. We have tested the "proximal utilization hypothesis" using the two functional members of the VH5 family as a model. Nucleotide sequence analyses of transcripts involving these VH gene segments in 11- to 12-wk fetal liver samples revealed that they were utilized frequently, even though they are 500 kb apart. Although 50% of the H chain rearrangements in our study use the DQ52 gene segment, the most 3' end proximal human D segment, the preference for rearranging D gene segments based on 3' end proximity does not apply to other D segments because different members of the DLR family that are interspersed throughout the D locus are equally rearranged in our sample. The recurrent utilization of the DQ52 and JH4 gene segments and a propensity to preserve the two nucleotides flanking the 3' end of the VH gene segment to generate the amino acid residue at the V-D junction appear to be the major biases in the generation of an otherwise diverse fetal repertoire.

Amino Acid Sequence↗

Molecular characterization of a cross-reactive idiotope on human immunoglobulins utilizing the VH4-21 gene segment.

The anti-idiotypic (anti-Id) antibody (Ab) 9G4 binds a cross-reactive idiotope (CRI) present in a select group of human autoantibodies. This Id has been localized to the portion of immunoglobulin (Ig) heavy (H) chains encoded by the VH4-21 gene segment, a member of the human VH4 family. This gene segment is utilized by essentially all cold agglutinin (CA) Abs with I/i specificity isolated from patients with CA disease stemming from chronic lymphoproliferative disorders. In this study, mutational analysis of a CA has been used to determine the structural basis for 9G4 binding to Abs utilizing the VH4-21 gene segment. Recombinant CA H chain mutants were produced and their 9G4 reactivity determined. Mutants were generated by exchanging VH4-21 sequences in the FR1, CDR1, and CDR2 with corresponding sequences from a closely related gene segment V71-2, a VH4 family member that is associated neither with Abs having CA activity nor with Abs that react with 9G4. The results indicate that the motif AVY at amino acid positions 23-25 in FR1 defines the 9G4 idiotope. Reaction of these recombinant Abs with a polyclonal rabbit anti-CA antiserum absorbed to render it specific for a CA CRI also maps predominantly to FR1. These findings indicate that the solvent-exposed FR1 plays an important role in eliciting an immune response to Igs.

Agglutinins↗

Synovial IgG rheumatoid factors show evidence of an antigen-driven immune response and a shift in the V gene repertoire compared to IgM rheumatoid factors.

We have established IgG rheumatoid factor (RF)-secreting hybridoma cell lines from the synovial tissues of three patients from whom we have previously characterized several IgM RF. The IgG RF bind human and rabbit IgG and form intracellular complement-fixing complexes indicative of a self association process in vivo. Nucleotide sequence analysis revealed that two IgG RF used VHIII gene segments, while one used a VHI gene segment. The VL gene usage consisted of a V kappa 1, a V lambda 2 and a V kappa 4/V kappa 6 hybrid, confirming our previous findings that many different VL genes can contribute to RF specificity. Although the IgG RF used VH genes from the same families that dominated the IgM RF response, two of the actual gene segments employed were not found among the IgM RF. In contrast to IgM RF, which in general were not very mutated, the IgG RF showed somatic mutations characteristic of an antigen-driven immune response.

Amino Acid Sequence↗

Complementarity-determining region 2 is implicated in the binding of staphylococcal protein A to human immunoglobulin VHIII variable regions.

Staphylococcal protein A (SPA) has two distinct binding sites on human immunoglobulins. In addition to binding to the Fc region of most IgG molecules, an "alternative" binding site has been localized to the Fab region of human immunoglobulins encoded by heavy chain variable gene segments belonging to the VHIII family. Comparison of amino acid sequences of closely related SPA-binding and -non-binding proteins suggested that VHIII-specific residues in the second complementarity-determining region (CDR2) were likely responsible for SPA binding activity. Site-directed mutagenesis of a single amino acid residue in CDR2 converted an IgM rheumatoid factor which did not bind SPA to an SPA binder. These findings, therefore, locate a critical site involved in SPA binding to the CDR2 of human immunoglobulins encoded by VHIII family gene segments.

Amino Acid Sequence↗

Nucleotide sequence of a human autoantibody to the alternative pathway C3/C5 convertase (C3NeF).

The production of autoantibodies to the alternative pathway C3/C5 convertase or C3 Nephritic Factor (C3NeF) is one characteristic of membranoproliferative glomerulonephritis. The complete nucleotide sequences of the heavy and light chain variable regions of an IgG C3NeF produced by an EBV transformed B cell line derived from a patient with membranoproliferative glomerulonephritis were determined. The VH and VL gene segments used by this C3NeF are extensively mutated suggesting that antigenic selection and affinity maturation may occur during the generation of these autoantibodies.

Amino Acid Sequence↗

Analysis of human antitopoisomerase-I idiotypes.

Antibodies to topoisomerase-I are present in approximately 26% of patients with scleroderma and are rarely found in patients with other diseases. In the current study, the expression of the antitopoisomerase-I (antitopo-I) idiotype from two scleroderma patients (E.M. and S.G.) and from a healthy individual (N.M.) were studied. Idiotype EM-SCL was restricted to the three classes of antitopo-I, whereas idiotypes SG-SCL and NM were found in all classes of antitopo-I as well as in their non-antitopo-I Igs. Sera from 9 of 10 antitopo-I-positive unrelated scleroderma patients expressed idiotype SG-SCL and some also expressed idiotype NM. Sera from N.M.'s 3 daughters and from 7 of 18 nonrelated normals expressed idiotype NM in the three immunoglobulin classes of non-antitopo-I. Two of the antitopo-I antibodies expressed a cross-reacting idiotype (CRI) that is present in non-antitopo-I antibodies from the same donor. Contrary to the natural CRI, SG-SCL's CRI is closely associated with the antigen binding site. Antitopo-I idiotypes are on the heavy chains. Like many other autoantibodies, Id-SG-SCL use VH4.2-1, DXP1, and JH4 in germline configuration.

Aged↗

VH restriction among human cold agglutinins. The VH4-21 gene segment is required to encode anti-I and anti-i specificities.

We previously reported that human autoantibodies with cold agglutinin activity contained a single human VH gene segment (VH4-21) which was also responsible for the cross-idiotypic specificity characteristic of the cold agglutinin response. To confirm and extend this observation we have analyzed at the nucleotide level the H and L chains of six new cold agglutinin molecules derived from different patients. We found that regardless of whether the antibody recognizes the i or the I red cell Ag, restriction at the VH gene segment level is absolute. We also found that even in the absence of somatic mutation the VH4-21 gene segment can encode both anti-i and anti-I specificities. Finally, although the VH4-21 gene segment is essential for cold agglutinin activity, the other genetic elements that contribute to the V region of the antibody molecules can be extremely diverse. The structural information provided in this report sharply restricts the requirement for encoding pathogenic cold agglutinin activity to one of the components of the H chain V region, specifically the VH gene segment. The implications of this apparently absolute requirement for a single VH gene segment, unprecedented in the human autoimmune response, are discussed.

Aged↗

Clonally related IgM rheumatoid factors undergo affinity maturation in the rheumatoid synovial tissue.

Using hybridoma technology we established a panel of human monoclonal rheumatoid factors (RF) from the synovial tissues of two patients with rheumatoid arthritis (RA), and one patient with polyarticular juvenile RA. Nucleotide sequence analysis of the V regions of these RF indicates that two independently derived antibodies from one of the RA patients are clonally related. One of these antibodies appears to be close to germ-line configuration, whereas the other has accumulated a total of 36 substitutions in both H and L chains. Measurements of the affinity for human IgG of the two RF show that the extensively mutated RF has 100-fold higher affinity for IgG than the RF close to germline. These findings indicate that IgM RF in RA can undergo affinity maturation and suggest that certain RF may be the product of an Ag-driven immune response.

Amino Acid Sequence↗

Anti-CD3-stimulated T cells induce the production of multiple Ig H chain isotypes by individual human peripheral B lymphocytes.

Polyclonal activation of human B cells is achieved by coculture with T cells stimulated by mAb to the CD3 molecular complex. By formal limiting dilution analysis, approximately 60% of human peripheral blood B cells were found to produce Ig in this system. When individual B cells were cultured in microtiter wells with anti-CD3-activated T cells, more than one-third of cultures producing Ig contained multiple Ig H chain isotypes. Similar results were observed when individual IgM-expressing B cells, selected and dispersed by FACS were cultured with anti-CD3-activated T cells. The clonality of the B cells producing multiple Ig isotypes was supported by L chain analysis of the secreted Ig. Of the wells containing more than one H chain isotype, nearly 85% contained only a single L chain type. Clonality was further examined by polymerase chain reaction amplification of cDNA harvested from cultures originally seeded with individual B cells. In general, only a single VH gene family could be amplified from cultures producing more than one Ig isotype. Three separate VH regions were cloned and sequenced. One, a VHIV-mu was nearly identical to a previously described VH gene VH71.4; as second, a VHIV-gamma was very similar to a previously described VH gene segment V-79, whereas a third, a VHIII-gamma differed by 14% in nucleotide sequence from its closest germline counterpart VH3005. These results indicate that anti-CD3-activated T cells not only stimulate the majority of B cells to secrete Ig, but also induce individual B cells to produce multiple Ig H chain isotypes. Additionally, the procedure described provides a reliable method to sample a large proportion of the human peripheral B cell repertoire.

Amino Acid Sequence↗

Human monoclonal striational autoantibodies isolated from thymic B lymphocytes of patients with myasthenia gravis use VH and VL gene segments associated with the autoimmune repertoire.

The production of autoantibodies reactive with components of skeletal muscle is characteristic of myasthenia gravis (MG) and is strongly associated with the presence of thymic epithelial tumors in patients with MG. The nucleotide sequences of the heavy and light chain variable regions (VH and VL) of three human monoclonal striated muscle antibodies (StrAb) isolated from thymic B lymphocyte lines from two patients with MG and thymoma were analyzed. The VH and VL gene segments used by these anti-striated muscle antibodies appear to be derived from the same repertoire of gene segments as have been found in other autoantibodies isolated from patients with a number of different autoimmune diseases. While the IgM StrAb SA-1A is a direct copy of germ-line VH and VL gene segments, analysis of the IgG StrAb SA-4A and SA-4B, which may be more representative of antibodies found in the serum of MG patients, suggests that the processes of antigenic selection and somatic mutation may contribute to the generation of autoantibodies in MG.

Actins↗

Human anti-acetylcholine receptor antibodies use variable gene segments analogous to those used in autoantibodies of various specificities.

The production of autoantibodies to the nicotinic acetylcholine receptor are responsible for many of the neurological symptoms observed in myasthenia gravis. An understanding of the structural organization of the anti-receptor antibodies may help to define the role of these antibodies in the pathogenesis of this disease. The nucleotide sequences of the heavy and light chains of three human monoclonal anti-receptor antibodies isolated from peripheral blood lymphocytes from two patients with myasthenia gravis were analyzed. In addition, the structure of an anti-idiotypic antibody was studied. The VH and VL gene segments used in the anti-receptor antibodies appear to be derived from the same repertoire as gene segments that have been found in other autoantibodies isolated from patients with various autoimmune diseases. The IgM anti-receptor antibodies are direct copies of germline gene segments, while the structures of the IgG anti-receptor antibody and the anti-idiotypic antibody appear to be mutated suggesting that they have undergone antigenic selection.

Amino Acid Sequence↗

Nucleotide sequence analysis of rheumatoid factors and polyreactive antibodies derived from patients with rheumatoid arthritis reveals diverse use of VH and VL gene segments and extensive variability in CDR-3.

The heavy and light chain nucleotide sequences of 17 monoreactive and polyreactive rheumatoid factors largely derived from the inflamed synovial tissue of two patients with rheumatoid arthritis are described. Some of these sequences have been the subject of a previous report from our laboratories. Additionally, a few rheumatoid factors from the peripheral blood of patients with systemic lupus erythematosus and Sjogren's syndrome as well as a normal individual are included. A review of our previous results as well as the new data provided within this paper lead to the following major conclusions: (1) Rheumatoid factors and polyreactive antibodies derive from a diverse array of VH and VL gene segments; (2) While many rheumatoid factors and polyreactive antibodies are direct or nearly direct copies of germline genes, some show clear evidence of somatic mutation; (3) The CDR3 of all of these antibodies is extraordinarily diverse in length and composition. Certain 'restrictions' do appear in this very large sample: (a) the polyreactive antibodies are exclusively lambda, and (b) there seems to be a preponderance of a particular subset of VH3 genes beyond that one would expect based on random utilization.

Amino Acid Sequence↗