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Biomedical subjects

E H Sasso

Publications and source records attributed to E H Sasso.

At least 19 recordsLinked to original sources

Effect of 51p1-related gene copy number (V1-69 locus) on production of hepatitis C-associated cryoglobulins.

Monoclonal IgM in type II mixed cryoglobulins (MC) preferentially use 51p1-related immunoglobulin VH genes. In normal preimmune B lymphocytes, 51p1-related gene expression is proportional to the germ-line gene dosage, which can be 0-4. To determine whether 51p1-related gene dosage influences the occurrence of type II MC or the VH gene bias in cryoglobulin IgM, we studied 47 patients chronically infected with hepatitis C virus (HCV), 24 MC+, 23 MC-. By Western analysis, 11 cryoprecipitate IgM (46%) were detected by G6 (a marker for 51p1-related gene products), eight (33%) by Staphylococcal Protein A (a VH3 family marker), and five (21%) by neither, indicating a 23-fold bias favouring 51p1-related genes. All 11 MC+, G6+ patients possessed > or = 1 copy of a 51p1-related gene; nine of the 36 others had none. The mean copy number of 51p1-related genes was greater in MC+ than MC- patients, and in MC+, G6+ patients versus the 36 others (P < 0.04), but significant differences were not seen in analyses restricted to patients with > or = 1 copy of a 51p1-related gene. We conclude that when a 51p1-related gene is present, a strong bias favours G6+ IgM in HCV-associated type II MC, but this bias is not greatly increased by a high dosage of 51p1-related genes. Furthermore, patients lacking 51p1-related genes also produce MC, but with G6- IgM.

Adolescent↗

Immunoglobulin binding properties of the Prosorba immunadsorption column in treatment of rheumatoid arthritis.

Studies of the humoral effects of the Prosorba column were conducted in conjunction with the Phase 3 trial of Prosorba versus sham therapy for rheumatoid arthritis (RA). When perfused with normal human plasma in vitro, Prosorba bound predominantly IgG with a maximal capacity of approximately 462 g of Ig per Prosorba column, equal to about 1.5% of circulating IgG. Prosorba treatment did not alter the concentrations of albumin, IgG, IgM, and IgA in 3 RA patients, except for a small dilutional effect. Kinetic studies demonstrated that Prosorba removed IgG > IgM, IgA, and IgM rheumatoid factor (RF) during the initial moments of apheresis and almost exclusively IgM RF after 15 min. No net protein removal occurred at > or = 60 min. Mean values of circulating immune complexes (CICs) were not significantly decreased by 12 weekly treatments. Complement was activated by the apheresis system upstream of the Prosorba column without changing C3 or C4 levels. We conclude that the Prosorba mechanism of action in RA is not bulk removal of Ig, but might involve modification of the CIC repertoire and could include, but not be limited to, effects related to complement activation.

Antigen-Antibody Complex↗

The rheumatoid factor response in the etiology of mixed cryoglobulins associated with hepatitis C virus infection.

Studies of mixed cryoglobulins (MC) from patients infected with hepatitis C virus (HCV) show that the principal constituents in cryoprecipitate are IgM rheumatoid factors (RF), polyclonal IgG anti-HCV antibodies, and HCV RNA. The HCV-induced RF response is biased to produce IgM RF encoded by a restricted set of Ig V genes, predominantly the VH/VL gene pair 51p1/kv325. The propensity of such IgM RF to cryoprecipitate is likely a coincidental property of their V region sequences, but the clinical effect of this bias is increased by the persistence of circulating HCV-IgG immune complexes. These complexes might induce production of cryoprecipitable IgM RF and furnish multi-molecular structures that favor binding by cryoprecipitable IgM RF. The V gene sequences of HCV-induced IgM RF have features seen in other RF responses, suggesting a common immunological mechanism that is independent of HCV. B cell proliferation is probably enhanced by HCV-specific properties, however, including the ability of HCV proteins to bind to CD81 on the B cell surface, and to influence intracellular regulatory functions following viral entry into B cells. The V gene bias in HCV-induced RF is most apparent among the B cells in monoclonal expansions responsible for type II cryoglobulins, but it might originate early the polyclonal RF response, before MC are detectable. Monoclonal B cell expansions and lymphomatoid bone marrow infiltrates in HCV+ patients predominantly involve CD5-negative IgM RF B cells. Non-RF B cells can also be expanded, including producers of IgG1 and IgG3 that are likely anti-HCV antibodies. The initial site of B cell clonal expansion may be in the liver, where lymphoid aggregates are abundant and RF are produced. Sorting out how MC formation is influenced by properties that are inherent to the RF response, or specific to HCV infection, will be a challenge to future HCV research.

Antigen-Antibody Complex↗

Expression of the immunoglobulin VH gene 51p1 is proportional to its germline gene copy number.

51p1 is an immunoglobulin VH gene that is frequently expressed in B cell chronic lymphocytic leukemia and early in B cell ontogeny. The 51p1 gene locus is highly polymorphic, consisting of 13 alleles that can be classified as being either 51p1-related or hy1263-related, based on distinctive sequence motifs in the second complementarity determining region. Two of the 51p1-related genes usually occur as a linked pair on the same haopltype, resulting from gene duplication. Consequently, a person can have a total of zero to four copies of 51p1-related genes. These genes are detectable in genomic DNA by sequence-specific RFLP analysis using oligonucleotide probes. Ig encoded by nonmutated 51p1-related genes can be detected by G6, a murine antiidiotypic mAb. We have now studied lymphocytes from 35 human tonsils to examine the relation between the number of 51p1-related germlime gene copies and the proportion of IgD-bearing tonsillar B cells that react with G6. All subjects who had zero copies of 51p1-related genes lacked any G6-reactive B cells, whereas those with four copies of 51p1-related genes had the highest proportions of G6-positive IgD B cells, up to 11.4%. Subjects with intermediate gene doses had intermediate proportions of G6-reactive B cells. Over the entire data set, the percentage of IgD-bearing B cells that reacted with G6 was proportional to the 51p1-related gene copy number (r = 0.92, p < 0.001), with each copy accounting for 2.4-4.0% of the IgD-bearing B cells. We conclude that 51p1-related genes are expressed by a relatively large percentage of IgD+ tonsillar B cells and this percentage is proportional to the germline copy number of 51p1-related genes.

Adult↗

Ethnic differences of polymorphism of an immunoglobulin VH3 gene.

The VH26 germline gene occupies two different loci, due to gene duplication, and is one of the most frequently expressed human immunoglobulin VH genes. This report identifies the alleles of each VH26 locus and describes distinct patterns of VH26 polymorphism in three ethnic groups. Oligonucleotide probes targeting VH26 were used in sequence-specific RFLP analysis of DNA from 72 Caucasians, 52 Asians, 35 American Blacks, and members of six families. The A locus, on a 7.0-kb TaqI band, was detected in 89% of Caucasians, 75% of Asians, and 26% of Blacks (chi2 = P < 0.0005). The B locus, detected on a 5.0-kb band in nearly all subjects, was found to have additional alleles occurring at 6.8 kb in 10% of Asians and 3% of Blacks (chi2 = 7.8, P < 0.02) and at 3.7 kb in 1.4% of Caucasians, 21% of Asians, and (9% of Blacks (chi2 = 13.8, P < 0.001). In Asians, only, the 3.7-kb hybridization band represented a multiple-duplication unit containing three or four gene copies. Duplications of other VH26 alleles, and mull alleles of the B locus, were also seen. An exact VH26 sequence was cloned from the 5.0-kb allele and likely exists in the 7.0- and 6.8-kb alleles. A novel sequence cloned from the 3.7-kb allele differed from VH26 by nine nucleotides and appears to have evolved by gene conversion in CDR2. The total diploid gene dose of the A and B loci ranged from one to as many as six copies of VH26-containing genes, and from zero to as many as six to eight copies of the 3.7-kb allele. We conclude that ethnic differences in polymorphism exist at both VH26 loci. These differences could influence VH26 expression because they involve variations in gene copy number and coding region sequence.

Alleles↗

The structural basis of germline-encoded VH3 immunoglobulin binding to staphylococcal protein A.

The ability of human VH3 immunoglobulins (Ig) to bind to staphylococcal protein A (SPA) via their Fab region is analogous to the binding of bacterial superantigens to T cell receptors. The present report establishes the structural basis for the interaction of SPA and VH3 Ig. We have studied a panel of 27 human monoclonal IgM that were derived from fetal B lymphocytes. As such, these IgM were expected to be encoded by unmutated germline genes. Binding to SPA in ELISA occurred with 15 of 15 VH3 IgM, but none of 12 IgM from the VH1, VH4, VH5, or VH6 families. The VH sequences of the 27 IgM were derived from 20 distinct VH elements, including 11 from the VH3 family. Use of D, JH, and CL genes was similar among VH3 and non-VH3 IgM. A comparison of the corresponding VH protein sequences, and those of previously studied IgM, identified a probable site for SPA binding that includes VH3 residues in framework region 3 (FR3), and perhaps FR1 and 3' complementary determining region 2. The results thus demonstrate that among human IgM, specificity for SPA is encoded by at least 11 different VH3 germline genes. Furthermore, like the T cell superantigens, SPA likely binds to residues in the VH framework region, outside the classical antigen-binding site of the hypervariable loops.

Amino Acid Sequence↗

Chromosomal organization of the human VH4 gene family. Location of individual gene segments.

To investigate the organization and evolution of VH gene segments, we characterized the elements belonging to the VH4 gene family from the germline of a single subject. One hundred sixty VH4-carrying lambda-phage clones were isolated from a genomic library. A combination of hybridization and sequence analysis yielded 13 distinct VH4 clones. Six of these elements had one or more nucleotide substitutions that distinguished them from previously identified VH4 genes, whereas seven elements were identical to previously described VH4 genes. In four of the six new sequences, nucleotide substitutions resulted in amino acid replacements. One pseudogene was identified. On the basis of sequence-specific hybridization using oligonucleotide probes corresponding to these sequences, each of the elements could be assigned to a specific band in a BglII digest. Since the VH4-carrying BglII bands have been mapped in genomic DNA, it was also possible to assign chromosomal locations to the specific VH4 elements. The results indicate that the majority of VH4 elements are located in a region of approximately 500 kb, extending from approximately 500 to 1000 kb 5' of the JH locus. The distribution of shared structural motifs among the VH4 elements indicates that the VH4 gene family has evolved through repeated duplication and gene conversion events.

Amino Acid Sequence↗

A fetally expressed immunoglobulin VH1 gene belongs to a complex set of alleles.

The immunoglobulin VH gene 51p1, a member of the large VH1 gene family, is preferentially expressed by B cells in the fetus and in chronic lymphocytic leukemia (CLL) and appears to be the source for many cryoglobulin rheumatoid factors. Polymorphism of 51p1 may therefore be functionally important. We have studied the germline representation of 51p1 and closely related VH elements to establish their prevalence and allelic relationship. A panel of oligonucleotide probes directed to the complementarity determining regions (CDR1 and CDR2) of 51p1 and a similar gene, hv1263, was used in restriction fragment polymorphism analysis of 48 unrelated individuals and six families. 13 VH alleles to the 51p1 locus were identified, each distinguished by its restriction fragment size, hybridization profile, or both. On some haplotypes the locus was duplicated. Null alleles were not seen. The 13 alleles were cloned, yielding nine distinct nucleotide sequences that were > 98.2% identical and included 51p1 and hv1263. These germline variations could influence specificity for antigen, because the corresponding protein sequences differed by up to five amino acids, including three nonconservative changes in the CDR. Two of the most prevalent variants contained 51p1. These findings expand the spectrum of polymorphism seen among human VH genes and elucidate the germline origin of VH1 sequences frequently expressed in autoantibodies and CLL. We conclude that the 51p1 locus is polymorphic, and that the 51p1 element is the predominant member of a complex set of alleles.

Alleles↗

Emerging human B cell repertoire. Influence of developmental stage and interindividual variation.

In B cell precursors developing in fetal lymphopoietic tissue, the selection of VH, DH, and JH gene segments for initial H chain gene assembly is biased. The present study was designed to determine whether these biases persist in fully developed human fetal B cells and to examine specificities encoded by the favored elements. B cells were prepared from two sites representing different stages of development, i.e., fetal liver as a source of cells newly generated in that lymphopoietic environment and fetal spleen as a source of more mature cells, potentially subject to selective environmental factors. The expressed repertoires were sampled by two methods. EBV transformation so binding and structure could be examined simultaneously and generation of cDNA from individual, sorted, unstimulated B cells. We found that mature B cells in liver and secondary lymphoid tissue exhibit the same degree of bias in VH use we previously reported in lymphopoietic tissue of the same gestational age. However, the pattern of DH and JH use more nearly resembled that of the adult, suggesting that some constraints imposed by the rearrangement process are normalized rapidly. Sequences recovered from EBV-transformed clones were not distinguishable from transcripts recovered from single cells by direct amplification. Among antibodies expressed by the EBV clones, binding to self-Ag was common, binding profiles varied, and, in contrast to mice, there was little relationship between specificity and VH element. Interestingly, the two individuals studied differed in the VH element most commonly used. One resembled previously studied fetal repertoires in that VH56p1 encoded about 20% of expressed antibodies, whereas the other did not express VH56p1 and used VH26 in 25% of expressed antibodies. This was found to reflect a lack of the genomic VH56p1 allele, suggesting that genetic variation at the VH locus may significantly influence the emerging human antibody repertoire.

Antibody Diversity↗

Chromosomal organization of the heavy chain variable region gene segments comprising the human fetal antibody repertoire.

The adult repertoire of antibody specificities is acquired in a developmentally programmed fashion that, in mouse and man, parallels the ordered rearrangement of a limited number of germ-line heavy chain variable region (VH) gene segments during development. It has been hypothesized that this developmental bias is a consequence of gene organization. In the mouse, rearrangement of VH gene segments proximal to the heavy chain joining region (JH) locus precedes rearrangement of genes located more distal to the JH locus. Similarly, in man, two VH elements located proximal to JH are expressed during fetal development. To test further this hypothesis in man, we have determined in a single individual the positions of an additional eight distinct VH elements known to comprise a significant fraction of the human developmental repertoire. These developmentally expressed VH elements were found to be dispersed over a region of 890 kilobases of the VH locus and were interspersed with other VH elements that are not known to be developmentally expressed. Thus, the ordered developmental expression of VH gene segments in man must involve mechanisms beyond physical proximity to the JH locus. Further, these results support the notion that fetal expression of VH gene segments is a regulated process and suggest that this regulation is important in the acquisition of immunocompetence.

Base Sequence↗

VH genes in tandem array comprise a repeated germline motif.

In a study of human VH gene heterogeneity, we have previously used sequence-specific oligonucleotide probes to demonstrate polymorphism of 56pl and three highly homologous VH3 germline elements. We now extend these findings with VH nucleotide sequences obtained from a person who possesses restriction fragments corresponding to each of these four VH3 genes. From a lambda-phage library of genomic DNA, distinct phage clones containing putative 56pl, hv3005, 1.9III, and hv3019b9 genes were selected by screening with oligonucleotide probes. PCR amplification, subcloning, and sequencing from the respective clones 3d216, 3d24, 3d28, and 3d277, yielded exact 56p1, hv3005, 1.9III, and hv3019b9 nucleotide sequences. A panel of oligonucleotide probes was shown to hybridize to these cloned VH3 genes with exact specificity, demonstrating the ability of the probes to predict the sequence of detected target DNA. Based on their chromosomal organization and their previously determined distribution in the population, these VH3 genes represent at least three distinct loci. From each of the VH3-containing phage clones, a VH4 element was also identified and sequenced. Linked to 3d24 and 3d28, respectively, were VH4 sequences identical to hv4005 and 1.9II, corroborating previous reports. The VH4 elements linked to 3d216 and 3d277 were distinct from published VH4 sequences. Nucleotide sequence homology was 97 to 99% among the VH3 sequences, and 93 to 99% among the VH4. These findings indicate that the VH3-VH4 gene pairs we have identified are a repeated germline motif, apparently resulting from multiple duplications of tandemly arrayed VH genes.

Amino Acid Sequence↗

Immunoglobulin V genes in rheumatoid arthritis.

Recent studies have revealed that a broad spectrum of Ig V genes (VH, V kappa, V lambda) contribute to the rheumatoid factor (RF) and non-RF produced by B cells in patients with rheumatoid arthritis (RA). This result contrasts with the restricted V gene use of paraprotein IgM RF. Certain VH and VL genes, however, appear more often in RA than expected from random expression, including some of the paraprotein-associated V genes. Many V genes expressed in RA are the same as those found in the fetal/CD5+ repertoire, suggesting an important role for CD5+ B cells in RA. Somatic mutations suggest that the B-cell response in RA is at least in part antigen-driven, although many Ig in RA have little or no mutation. Improved detection of V-gene polymorphisms now enable study of Ig V gene RFLP in RA.

Arthritis, Rheumatoid↗

Human IgA and IgG F(ab')2 that bind to staphylococcal protein A belong to the VHIII subgroup.

Staphylococcal protein A (SPA) is a bacterial membrane protein that possesses, in addition to its Fc gamma-binding activity, a distinct specificity for the Fab region of some IgM, IgA, IgG, and IgE. The Fab site that binds to SPA has been localized to the V region of the Ig H chain. In a previous study of human monoclonal and polyclonal IgM, we demonstrated that binding to SPA was highly restricted to molecules of the VHIII subgroup, and that nearly all VHIII IgM were able to bind SPA. The present study examines the VH composition of SPA-binding and SPA-nonbinding fractions of purified human polyclonal IgA, and IgG F(ab')2 fragments. We found that 22% of the IgA and 15% of the IgG F(ab')2 bound to SPA-agarose. Analysis with VH subgroup-specific antisera indicated that the SPA-binding fraction of IgA was dominated by the VHIII subgroup, and the SPA-binding fraction of IgG F(ab')2 contained only VHIII molecules. Furthermore, substantial portions of the total VHIII protein in IgA and in IgG F(ab')2 bound to SPA. We conclude that Fab binding to SPA is both restricted to and highly prevalent among human VHIII molecules, regardless of Ig class. These results suggest that protein A is an Ig superantigen.

Antibody Specificity↗

Polymorphism of the human Ig VH4 gene family.

In this study, we analyze the human VH4 gene family and find it to exhibit a level of polymorphism similar to that of the much larger VH3 family. A cloned VH4 probe detected an average of 10 hybridizing BgIII restriction fragments in genomic DNA derived from 75 unrelated individuals and a total of 15 distinct bands. Of these 15 restriction fragments, 12 were polymorphic, as demonstrated by band absence in some individuals. Oligonucleotide probes specific to CDR1 and CDR2 sequences of known VH4 genes detected limited numbers of bands and revealed sequence polymorphisms that correlated with several of the RFLP detected by the cloned probe. The prevalence of the individual polymorphic restriction fragments was highly variable, ranging from 1% to 97%, with a mean prevalence of 51%. These values resemble those previously observed among VH3 elements. Analysis of linkage disequilibrium suggests that most VH4 gene segments are in genetic equilibrium. These results indicate that the VH4 loci, like those of VH3, are dominated by relatively few, perhaps two to four, alleles/locus and further suggest that the haplotype organization of the human VH locus is very complex.

Alleles↗