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D Marcus-Bagley

Publications and source records attributed to D Marcus-Bagley.

16 recordsLinked to original sources

The [HLA-B18, F1C30, DR3] conserved extended haplotype carries a susceptibility gene for IgD deficiency.

We showed previously that the conserved extended MHC haplotype [HLA-B8, SCO1, DR3] carries recessive susceptibility genes for IgA and IgG4 deficiency and dominant genes for IgD and IgG3 deficiency. [HLA-B18, F1C30, DR3] has similar class II and III regions to [HLA-B8, SC01, DR3] and is common in the Basques. We therefore studied serum immunoglobulin concentrations in Basque homozygotes, heterozygotes, and noncarriers of (FIC30, DRB1*0301, DRB3*02, DQA1*0501. DQB1*0201) (F1C30, DR3). As shown by others, no subjects were deficient in IgA, IgM, or IgG subclasses. In contrast, 29% of homozygotes and three of seven double heterozygotes with (SC01, DRB1*0301, DRB3*0101, DQA1*0501, DQB1*0201) (presumed homozygotes for IgD deficiency susceptibility genes) were IgD deficient. Thus, 32% of presumed homozygotes were IgD deficient compared with 1.6% of noncarriers. Of haplotype heterozygotes, 25% were IgD deficient. The high frequency of IgD deficiency in both homozygotes and heterozygotes for (F1C30, DR3) suggests a partially penetrant dominant susceptibility gene for IgD deficiency on [HLA-B18, F1C30, DR3].

Diabetes Mellitus, Type 1↗

Prospective analysis suggests susceptibility genes for deficiencies of IgA and several other immunoglobulins on the [HLA-B8, SC01, DR3] conserved extended haplotype.

The extended major histocompatibility complex (MHC) haplotype [HLA-B8, SC01, DR3] is increased in frequency among patients with immunoglobulin (Ig)A deficiency and common variable immunodeficiency. Because the genomic region from HLA-B to HLA-DR/DQ is virtually the same on all instances of the haplotype in the general population, we reasoned that all independent instances of [HLA-B8, SC01, DR3] carry MHC susceptibility genes for these disorders. To define immunoglobulin deficiencies determined by genes on this haplotype and their mode of expression and penetrance, serum immunoglobulin class and IgG subclass concentrations were determined prospectively in homozygotes and heterozygotes of this haplotype and in Caucasian controls. Prevalence of individual immunoglobulin deficiencies in persons with [HLA-B8, SC01, DR3] ranged from 13% to 37%, significantly higher than rates in non-carriers or general controls. We found significantly increased frequencies of IgA and IgG4 deficiency only in homozygotes (13.3% and 30%, respectively) compared with heterozygotes (1.7% and 3.4%) or non-carriers (1.6% each), suggesting recessive expression. In contrast, IgD and IgG3 deficiencies were significantly more common in both homozygotes (36.7% and 30%) and heterozygotes (20.3% and 17.5%) compared with controls (4.9% and 3.4%), suggesting dominant inheritance. These results indicate multiple distinct susceptibility genes, some recessive and others dominant, for deficiency of IgA, IgD, IgG3 or IgG4 (but not for IgE, IgG1, IgG2 or IgM) on [HLA-B8, SC01, DR3]. These observations may also help to explain the observed associations of [HLA-B8, SC01, DR3] with both IgA deficiency and common variable immunodeficiency and the common occurrence of IgG subclass deficiencies in some patients with IgA deficiency.

Common Variable Immunodeficiency↗

Relationship between protein complotypes and DNA variant haplotypes: complotype-RFLP constellations (CRC).

From the study of 52 families and 15 homozygous typing cells, 234 MHC complement haplotypes were characterized for features in the DNA of the complotype region: C2/Sst I (2.75, 2.70, 2.65, and 2.40 kb), BF/Taq I (6.6 and 4.5 kb), C4 5'/Bgl II (15 and 4.5 kb), C4 5'/Taq I (7.0, 6.4, 6.0 and 5.4 kb) and C4 3'/Xba I/BamH I (11 and 4 + 7 kb) restriction fragment length polymorphisms (RFLP's), by the presence or absence of C4A, C4B, CYP21A and CYP21B genes and by duplications. Nineteen (of over 1000 theoretically possible) complotype-RFLP constellations (CRC's) were found. The 9 CRC's with two C4 and CYP21 genes were designated A through I. CRC's Bdup and Ddup were like B and D but had duplicated C4B-CYP21B genes. The remaining CRC's had deletions of C4 and/or CYP21 genes and were designated Bdel, Cdel and the like. Individual complement alleles and complotypes were nor randomly distributed among the CRC's. Some complotypes, such as SC01, SC02 and FIC30, were restricted to only 1 CRC; others, such as SC31, FC31, and SC30, were found in several CRC's. Some of the CRC's contained a single complotype, others contained several. Remarkably, there are about 30 CRC-specified complotypes with frequencies of .01 or higher and 14 of .02 or higher. A number of evolutionary origins of complement alleles and complotypes are suggested by the relationships among CRC's. Approximate normal frequencies of the undeleted CRC's were A = .27, B = .19, Bdup = .02, C = .17, D = .07, Ddup = .02, E = .06, F = .05, and G = .02. Thus, CRC's without deletions accounted for 88% of normal complotypes. Since the frequency of Bdel, with a deletion of C4A, was .12, 10 CRC's accounted for all observed normal caucasian MHC haplotypes.

Chromosome Mapping↗

Tumor necrosis factor (TNF) microsatellite haplotypes in relation to extended haplotypes, susceptibility to diseases associated with the major histocompatibility complex and TNF secretion.

TNFabc microsatellite haplotypes were determined on normal, type I diabetes and multiple sclerosis Caucasian MHC haplotypes in family studies. Although independent examples of conserved extended haplotypes usually had the same TNFabc haplotypes, there were a number of exceptions, suggesting that these loci are more mutable than most loci in the human MHC. Some TNFabc haplotypes were characteristic of only one extended haplotype, whereas others were shared by several different extended haplotypes. From the analysis of TNFabc on extended haplotype fragments, and assuming that the fragments arose by ancient homologous crossing over, it was possible to "map" TNF and how that it was somewhat closer to HLA-B than the complement region, corresponding to the physical map of this region. TNF haplotype associations with type I diabetes and multiple sclerosis were attributable to the known extended haplotype associations of these diseases. There was also a trend for higher TNF-alpha secretion by peripheral blood mononuclear cells from individuals homozygous for [HLA-B8, SC01, DR3] than from individuals homozygous for [HLA-B7, SC31, DR2].

Alleles↗

Normal HBsAg presentation and T-cell defect in the immune response of nonresponders.

Lymphocytes from nonresponders to HBsAg fail to proliferate in vitro in the presence of HBsAg-pulsed antigen presenting cells. We studied four pairs of major histocompatibility complex (MHC)-matched, mixed lymphocyte reaction-negative individuals discordant for HBsAg response. For each pair, responder lymphocytes proliferated in the presence of nonresponder antigen-pulsed antigen presenting cells. Responder and nonresponder antigen presenting cells were equally effective. There was no evidence for inhibition of responder T-cell proliferation by nonresponder lymphocytes or antigen presenting cells. The defect is thus in the helper T cells of nonresponders and not in the antigen processing or binding of processed peptides to MHC molecules on antigen presenting cells.

Adult↗

Linkage of familial dysalbuminemic hyperthyroxinemia to the albumin gene in a large Amish kindred.

Familial dysalbuminemic hyperthyroxinemia (FDH) is the most common cause of inherited euthyroid hyperthyroxinemia in Caucasians. Transmitted as an autosomal dominant trait, it is always associated with high serum total T4 (TT4) and more rarely with elevated total T3 (TT3) and/or rT3 (TrT3) concentrations. Free T4, by dialysis, and TSH levels are normal, suggesting the presence of a T4-binding protein abnormality. The abnormal serum T4 carrier shares some physical and immunological properties with albumin, suggesting that it may be albumin itself. Here we show linkage between FDH and the albumin gene in a large Amish family of Swiss descent, using as markers a SacI polymorphism in the coding sequence of the albumin gene and the group-specific component (Gc) gene, located less than 1 centimorgan from the albumin gene. Blood samples were obtained from 160 members of this kindred, and 22 had FDH identified by the pattern of T4 binding to serum proteins separated by isoelectric focusing. Serum TT4 values were above the normal range in all subjects expressing the FDH phenotype, and TrT3 levels were above the normal range in only one half. TT4 concentrations correlated positively with TrT3 and TT3. All TT3 values were, however, within the normal range. Free T4 and TSH levels were normal, confirming the euthyroid state in these subjects. FDH was associated with the albumin SacI(+)/Gc 1S haplotype, yielding a LOD (logarithm of the odds ratio) score of 5.53, with a recombination frequency of 0. These data provide strong support that a variant albumin is the cause of FDH in this kindred.

Base Sequence↗

Common major histocompatibility complex class II markers in clinical variants of cicatricial pemphigoid.

Cicatricial pemphigoid (CP) is a chronic autoimmune blistering disease affecting multiple mucous membranes derived from stratified squamous epithelium and occasionally the skin. CP has a wide spectrum of disease manifestations. Patients with oral pemphigoid (OP) have a benign self-limited disease in which pathological changes are restricted to the oral mucosa. On the other hand, patients with ocular cicatricial pemphigoid (OCP), a chronic condition marked with relapses and remissions, have ocular involvement and also perhaps involvement of other mucous membranes. All clinical subsets are characterized by the presence of a similar anti-basement zone autoantibody. The factors that determine the development of one form of CP or the other are not known. In a previous study, we described the association between OCP and the DQB1*0301 allele (P = 0.006). In this study, we have analyzed 22 Caucasian patients with OP and their family members for major histocompatibility complex DRB generic, DQA1, and DQB1 allele associations by PCR-sequence-specific oligonucleotide probe hybridization. The results were compared to those obtained from 17 Caucasian patients with OCP and to control Caucasian alleles and haplotypes. The DQB1*0301 allele frequency was 38.6% in OP, 52.9% in OCP, and 17.8% in controls. Statistically significant associations were detected between the DQB1*0301 allele and both OP (P = 0.0047) and OCP (P < 0.0001). In addition, DRB1*04 showed a statistically significant association (P = 0.005) with OCP when compared to controls. Analysis of major histocompatibility complex class II haplotypes showed significant statistical associations between both OCP and OP and the HLA-DRB1*04, DRB4*0101, DQA1*03, DQB1*0301 haplotype (P < 0.0001 and P = 0.0012, respectively). Our results indicate that DQB1*0301 is a marker of both oral and ocular forms of CP. The analysis of the amino acid sequence of the DQB1 alleles present in both OP and OCP suggested that amino acid residues at position 57 and positions 71-77 may also be markers of CP.

DNA Probes↗

Major histocompatibility complex susceptibility genes for dermatitis herpetiformis compared with those for gluten-sensitive enteropathy.

Dermatitis herpetiformis (DH) shares some clinical features and major histocompatibility complex (MHC) markers with gluten-sensitive enteropathy (GSE). We compared MHC haplotypes in 27 patients with DH, 35 patients with GSE, and normal controls. As in GSE, the frequencies of two extended haplotypes, [HLA-B8, SC01, DR3] and [HLA-B44, FC31, DR7], were increased in patients with DH. Distributions of fragments of extended haplotypes, consisting of some but not all of the elements of complete extended haplotypes, were analyzed to attempt to localize a susceptibility gene. Besides complete extended susceptibility haplotypes, (DR3, DQ2) and (DR7, DQ2) fragments were most common in GSE. In contrast, DH showed only a few such fragments but many instances of the fragment (SC01). The differences in distribution of these fragments in the two diseases were highly significant (P < 0.002). HLA-DQ2 and DR3 had the highest odds ratios for GSE, but the highest odds ratio for DH was for the complotype SC01. These findings suggest that the MHC susceptibility gene for DH is between class II and complotype regions, closest to the complotype, whereas that for GSE is in the class II region.

Celiac Disease↗

Cellular recognition and HLA restriction of a midsequence HBsAg peptide in hepatitis B vaccinated individuals.

Vaccination with native HBsAg results in both a humoral and a cellular immune response in humans. In individuals who responded to vaccination, the HBsAg (S region) specific response, as measured by cell proliferation, diminished significantly after 12 weeks, a time when the antibody response was still vigorous. Reduced and nonreduced HBsAg were equivalent in eliciting lymphocyte proliferation. Anti-MHC class II monoclonal antibodies were used in blocking studies to demonstrate that anti-HLA-DR but not anti-HLA-DQ or anti-HLA-DP inhibited specific lymphocyte proliferation to HBsAg. Both the monomer (reduced) and dimer (nonreduced) forms of an immunodominant midsequence HBsAg peptide (amino acid residues 139-146) produced lymphocyte proliferation roughly comparable to that induced by whole HBsAg in 6 of 7 responders immunized with whole HBsAg and the peptide-induced proliferation was blocked by anti-HLA-DR but not by anti-HLA-DP antibodies. These results suggest that HBsAg p 139-146 is a major immunodominant peptide of HBsAg and is restricted by HLA-DR.

Amino Acid Sequence↗

The immune response to hepatitis B vaccine in humans: inheritance patterns in families.

We have recently shown that the human antibody response to the hepatitis B virus surface antigen (HBsAg) vaccine is major histocompatibility complex (MHC) associated. In studies of nonresponders to the vaccine, we found an increased incidence of individuals homozygous for human histocompatibility leukocyte antigen (HLA) proteins associated with the extended (conserved) haplotype [HLA-B8,SC01,DR3]. In later prospective vaccination trials, we showed that none of five individuals homozygous for this haplotype developed more than 1,300 radioimmunoassay (RIA) units of antibody (mean, 467 RIA units), while all heterozygotes made at least 2,500 RIA units (mean antibody level, 15,608 units). Our results suggested that [HLA-B8,SC01,DR3] lacks an immune response gene for HBsAg, and that response is inherited in a dominant fashion. To provide further evidence for this hypothesis, we have now analyzed the results of HBsAg immunization in families. 43 members of 10 families were immunized with the hepatitis B vaccine, including seven families where at least one member bore the haplotype [HLA-B8,SC01,DR3], and three families where one member had already received, but failed to respond to, the vaccine. In two of these three families, the presence of [HLA-B8,SC01,DR3] was subsequently found. Of nine MHC-identical sibling pairs in the study, both members of eight pairs had similar antibody responses (five nonresponder and three responder pairs). In all families with such sibling pairs, including the discordant pair, rank-ordering members by antibody level demonstrated that no relative's value came between the sibling pair values. Furthermore, of nine [HLA-B8,SC01,DR3]-haplotype-homozygous individuals, six were nonresponders, and two others had only low-normal responses. [HLA-B8,SC01,DR3]-heterozygous family members always had higher levels of antibody than their homozygous relatives. Linkage analysis of nonresponse to HLA haplotypes revealed a maximum likelihood LOD (logarithm of the odds) score of 6.3 at a recombination fraction of 0.1. The MHC association with lack of antibody response to HBsAg was not seen with tetanus immunization, where 1 of 20 HBsAg responders and 1 of 21 poor or nonresponders had tetanus titers of less than 1:512; both tetanus nonresponders were [HLA-B8,SC01,DR3] heterozygotes. Our results indicate that: (a) response to the HBsAg vaccine is MHC linked, and inherited in a dominant fashion; (b) an abnormal or missing immune response (Ir) gene for HBsAg is a characteristic of most examples of the extended haplotype [HLA-B8,SC01,DR3]; and (c) other haplotypes also have abnormal or missing Ir genes for HBsAg.

Female↗

HLA-DR2, [HLA-B7, SC31, DR2], and [HLA-B8, SC01, DR3] haplotypes distinguish subjects with asthma from those with rhinitis only in ragweed pollen allergy.

MHC haplotypes were determined for 52 patients with ragweed pollen allergy, with and without asthma, and 27 non-atopic controls. Total IgE levels were unimodally distributed in all study groups and were higher in atopic patients in general compared with non-atopics. There was no difference in total IgE levels in patients with rhinitis only compared with those with rhinitis and asthma. IgE anti-Amb a V was detected (after subtraction of values representing the means + 2 SD of the non-atopics) in 9 of 20 asthmatics but only 3 of 32 patients with only rhinitis and was thus associated with asthma. Mean anti-Amb a V was much higher in the antibody-positive asthmatics (1710 U/ml) than in the positive patients with rhinitis only (469 U/ml). The extended MHC haplotype [HLA-B7, SC31, DR2] and its possible DR-containing fragment (SC31, DR2), were found almost exclusively among the patients with IgE anti-Amb a V and were significantly elevated in patients with asthma. DR2 in general, but not DR2 without SC31, was significantly increased in frequency in patients with anti-Amb a V. In contrast, the extended haplotype [HLA-B8, SC01, DR3] and DR3 in general were increased among patients with rhinitis only and patients without IgE anti-Amb a V compared with general controls. Thus, [HLA-B8, SC01, DR3] and DR3 appear to be "protective" for the production of this antibody and the occurrence of asthma. The findings are consistent with an MHC-linked gene or genes on [HLA-B7, SC31, DR2] (but not necessarily DR2, Dw2, or DQw6 in general) controlling the IgE immune response to Amb a V and associated with asthma in ragweed pollen-sensitive subjects. In patients with rhinitis alone and generally undetectable levels of IgE anti-Amb a V, the increase in [HLA-B8, SC01, DR3] and DR3 may mark a response to an as yet unidentified Ag associated with ragweed allergy and rhinitis only.

Asthma↗

The effect of ethnicity on major histocompatibility complex complement allotypes and extended haplotypes in patients with systemic lupus erythematosus.

Previous studies of patients with systemic lupus erythematosus (SLE) have shown an increased frequency of certain major histocompatibility complex (MHC) markers, including HLA-DR2, DR3, and C4AQ0 (C4A-null), in Caucasian patients. However, most of these studies were of randomly selected, unrelated patients; families were not included, and haplotypes were not determined. In order to define more accurately the possible role of MHC genes in lupus susceptibility, HLA-A, B, C, and DR, as well as BF, C2, C4A, C4B, and GLO, markers were determined in 62 Caucasian patients of known ethnic background, and in the members of their families. The distributions of extended haplotypes (fixed combinations of HLA-B, DR, and complotype alleles), fragments thereof, and individual alleles were determined in SLE patients and controls. The MHC distributions in all patients were compared with haplotypes in a normal Caucasian population. There were no statistically significant differences between the frequencies of any MHC marker, fragment, or extended haplotype in the patients compared with the controls. The patients were categorized into 2 groups of European ancestry (English/Irish; other Europeans), and each group was compared with a group of ethnically matched controls. There was a statistically significantly increased frequency of the alleles C4AQ0 and DR3 and the complotype SC01 in SLE patients of English/Irish descent as compared with ethnically matched controls. The increase in C4AQ0 and DR3 could be accounted for by the fact that they were part of the extended haplotype [HLA-B8;SC01;DR3] and/or its fragment (SC01;DR3). No increase in any MHC marker was observed in the other patients.(ABSTRACT TRUNCATED AT 250 WORDS)

Complement System Proteins↗

Complotypes in individuals of African origin: frequencies and possible extended MHC haplotypes.

We analyzed the frequency distribution of 106 complotypes [four allele sets of the major histocompatibility complex (MHC) genes for the complement proteins factor B, C2, C4A, and C4B] from 32 Black families residing in Boston and Washington, DC. Twenty-five different complotypes were identified, among which there were four complotypes that had not been previously observed in our large database of complotypes compiled from family studies of Boston Caucasians and that are, presumably, unique to individuals of African origin. These four African-derived complotypes are FC(1,90)0, FC63, S1C2, 17, and SC(3,2,90)0. The frequencies of two of these four unique Black complotypes, FC(1,90)0 and FC63, were increased significantly when compared to Caucasians (pcorr less than 0.00042, pcorr = 0.00294, respectively). The complotype FC(1,90)0 was in positive linkage disequilibrium with HLA-DR3 haplotypes containing the B locus antigens Bw42, Bw52, Bw53, and Bw58, while FC63 was associated with HLA-Bw70, -DR5. These findings demonstrate the extensive polymorphism of complotypes in Blacks, and also suggest that it may be possible to define unique extended haplotypes of African origin.

Alleles↗

HLA extended haplotypes in childhood and adult onset HLA-DR4-associated arthropathies.

Alpha HLA-DR4 extended haplotypes have been established by family studies in children and adults with chronic arthritis, the children having polyarticular juvenile rheumatoid arthritis and the adults rheumatoid arthritis. These diseases are probably the same disorder presenting at different ages. The results demonstrate age-related differences in the frequency of HLA-DR4 extended haplotypes between the two groups of patients. The childhood onset was associated with the presence of the HLA-B44, SC30, DR4 extended haplotype, whereas the adult form was more strongly associated with the HLA-Bw62, SC33, DR4 haplotype. These results suggest that differences in the age at onset are influenced by the MHC in addition to the presence of the HLA DR4 gene itself.

Adult↗

Genetic prediction of nonresponse to hepatitis B vaccine.

In previous studies of the antibody response to hepatitis B vaccine in 598 subjects who received a full course of vaccination, we observed a bimodal response, with about 14 percent producing less than approximately 1000 radioimmunoassay (RIA) units. An analysis of the major histocompatibility complex (MHC) HLA and complement types of 20 of the subjects with the lowest responses indicated a greater-than-expected number of homozygotes for the extended or fixed MHC haplotype [HLA-B8, SC01, DR3]. This finding suggested that the lack of a normal response was a recessive MHC-linked trait. In this study, we prospectively vaccinated five homozygotes and nine heterozygotes for this haplotype in the expectation that the homozygotes would produce much lower levels of antibody than the heterozygotes. When the antibody response was assessed two months after the third injection, four of the five homozygotes had produced very low levels (approximately 1000 units or less) of antibody (mean, 467 RIA units; range, less than 8 to 1266), whereas all nine heterozygotes produced more than 2500 RIA units (mean, 15,608; range, 2655 to 28,900) (P less than 0.01). We conclude that the usual response to hepatitis B surface antigen is due to the presence of a dominant immune-response gene in the MHC and that a low response is due to the absence of such a gene and the presence on both chromosomes of MHC haplotypes (such as [HLA-B8, SC01, DR3]) that indicate such a response.

Adolescent↗