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Biomedical subjects

B Dupont

Publications and source records attributed to B Dupont.

At least 289 records · Page 16Linked to original sources

Steroid 21-hydroxylase deficiency and the major histocompatibility complex.

Steroid 21-hydroxylase (21-OHase) deficiency is an HLA-linked recessive disorder of cortisol biosynthesis that can occur in several forms which differ in severity. Because they are in genetic linkage disequilibrium with different HLA antigens, the inheritance of these forms is consistent with the existence of several alleles at a single locus. When severe 21-OHase deficiency occurs in association with the HLA haplotype A3;Bw47;DR7, there is a simultaneous null allele at one of the C4 loci. This was hypothesized to result from a single deletion or rearrangement affecting the 21-OHase and C4 loci and perhaps the HLA-B gene as well. To test this hypothesis and identify the 21-OHase gene, a cDNA clone was isolated that encoded the cytochrome P450 specific for steroid 21-hydroxylation in the bovine adrenal gland. This clone hybridized to two genes in normal human DNA, but to only one gene in DNA from an individual homozygous for A3;Bw47;DR7. All individuals heterozygous for A3;Bw47;DR7 carry a heterozygous deletion of a cytochrome P450 gene. Cosmid clones have been used to locate the 21-OHase genes both in man and mouse. In both species, there are two 21-OHase genes each located immediately 3' of one of the two C4 genes, and oriented in the same direction as the C4 genes. In man, the gene located 3' of the C4B gene is deleted in 21-OHase deficiency on the Bw47 haplotype, but the gene 3' of the C4A gene is deleted in hormonally normal individuals on the A1;B8;C4AQ0, C4B1;DR3 haplotype. Thus the 21-OHase B gene is normally active in man, but the 21-OHase A gene is not.

Adrenal Hyperplasia, Congenital↗

A new supertypic HLA class II determinant (PL2) differentially expressed with DR7, DRw11(5), DRw13(w6), DRw14(w6), DR3, and DR2 and biochemically localized to DR7 molecules.

A monoclonal antibody, PL2, has been produced that reacts with a new supertypic determinant expressed on the peripheral blood B lymphocytes and B-leukemic cells (B-CLL) from all individuals who are HLA-DR7 and some individuals who are HLA-DR5 positive. The genetic linkage of the PL2 determinant to the HLA region was demonstrated by family segregation studies. When cultured Epstein-Barr virus (EBV) transformed B cell lines were examined, PL2 was again found to be expressed on all cell lines homozygous for HLA-DR7 and the DRw11(5) subtype of HLA-DR5 positive cells, while one DRw12(5) cell line was negative, suggesting PL2 may distinguish between these DR5 subtypes. In addition, using the panel of EBV-transformed B-cell lines, PL2 was also found to be weakly expressed on HLA-DRw14(w6), -DRw13(w6), -DR3, and -DR2 positive cells but was completely absent from HLA-DR1 and -DR4 positive cells, and is probably absent also from DRw8- and DRw10-positive cells. From titration analysis and quantitative absorption studies the PL2 determinant was found to be expressed at quantitatively different levels in the following order: DR7 greater than DRw11, DRw14 greater than DRw13 greater than DR3 greater than DR2. The molecules carrying the PL2 determinant on DR7 cells have been characterized biochemically to be a subpopulation of HLA class II molecules recognized by the DR specific monoclonal antibody, L243. Furthermore, by two-dimensional gel analysis, PL2 immunoprecipitated only two of three beta chains associated with the DR-apha chain, which are the same two chains that carry the DR7 allodeterminants.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

A unique epitope on the CD2 molecule defined by the monoclonal antibody 9-1: epitope-specific modulation of the E-rosette receptor and effects on T-cell functions.

Monoclonal antibody (MoAb) 9-1 shows unique binding properties to CD2 resulting in peculiar epitope specific changes. 9-1 shows competitive binding with MoAb to D66 epitope, and gives a similar staining pattern with T-cell populations, at a low density on resting T cells, and high density on thymocytes and activated T cells. However, 9-1 has the opposite effect on anti-D66 MoAbs on rosette formation, namely, 9-1 increases the stability of rosettes, but 9-1 plus anti-mouse Ig bound to T-cell surface blocks rosettes. 9-1 plus anti-mouse Ig, like anti-D66 MoAbs, induces further appearance of D66 and 9-1 epitopes but, contrary to anti-D66, induces appearance of T11(3) epitopes. Thus, binding 9-1 results in unique "epitope-specific modulation" events that are not solely artificial, but appear to mimic events naturally occurring during T-cell differentiation/activation. The effects of binding 9-1 on T-cell functions also display peculiarities. 9-1, like anti-D66 MoAbs, activates T cells when added in combination with anti-9.6/T11(1) MoAbs but not with anti-T11(3). To obtain full activation, monocytes are required; however, adding 9-1 alone do not inhibit specific T-cell cytotoxicity contrary to anti-D66 or anti-9.6/T11(1), although 9-1 inhibits NK activity of peripheral cells. Given the apparent complexities of the functions exerted by CD2, these data show that definite conformational changes or reorientation, which would be naturally produced by soluble and/or cell surface ligand(s), would be key events in determining how CD2 will influence T-cell functions.

Antibodies, Monoclonal↗

In vitro production of a human HLA alloantibody of restricted specificity (DQw2) via Epstein-Barr virus transformation.

This paper describes the in vitro production of the human alloantibody 454A.C5 with HLA-DQw2 specificity produced by a stable EBV-transformed cell line. Immune B cells for transformation were generated by planned immunization of a blood donor volunteer with repeated HLA-immunizations over the course of 9 yr. Reactivity of 454A.C5 was in exact concordance with the presence of the DQw2 antigen as defined by microcytotoxicity assay on a panel of 21 B lymphoblastoid cell lines with well-characterized HLA antigens. Family studies showed the segregation according to the HLA-DQw2 haplotype; thus we demonstrate by serological and formal genetics criteria, that the alloantibody is specifically directed against the DQw2. 454A.C5 antibody may be employed as a monospecific HLA typing reagent.

Antibody Formation↗

Structure of human steroid 21-hydroxylase genes.

We have determined the structure of cDNA and two genomic genes encoding steroid 21-hydroxylase [21-OHase; steroid 21-monooxygenase; steroid, hydrogen-donor:oxygen oxidoreductase (21-hydroxylating); EC 1.14.99.10]. If this cytochrome P-450 enzyme is defective, cortisol cannot be synthesized, resulting in congenital adrenal hyperplasia. The cDNA encoding this enzyme is 2.0 kilobases long, and the encoded protein is predicted to contain 494 amino acid residues with a molecular weight of 55,000. This enzyme is at most 28% homologous to other P-450 enzymes that have been studied. The 21-OHase genomic genes, which are located in the HLA major histocompatibility complex on chromosome 6, each contain 10 exons. This structure is distinct from other characterized P-450 genes, which contain 7 or 9 exons. Studies of individuals with homozygous deletions of the 21-OHase A or B genes suggest that only the B gene encodes an active enzyme. This is confirmed by the finding that the A gene has an 8-base deletion within codons 110-112, resulting in a frameshift that brings a stop codon into the reading frame at codon 130. A second frameshift and a nonsense mutation occur downstream. In contrast, the sequence of the exons of the B gene is identical to the cDNA sequence. The 21-OHase A gene is, therefore, a pseudogene.

Amino Acid Sequence↗

Evaluation of HLA-haplotype disparate parental marrow grafts depleted of T lymphocytes by differential agglutination with a soybean lectin and E-rosette depletion for the treatment of severe combined immunodeficiency.

The factors that impact upon successful bone marrow transplantation leading to immunologic reconstitution in severe combined immune deficiency (SCID). Wiskott-Aldrich syndrome, and in other lethal congenital immunodeficiencies are reviewed. Evidence is presented that graft-versus-host disease (GVHD) can be abrogated by the depletion of T cells, even from histoincompatible marrow grafts. However, graft resistance or restricted immune reconstitution has been observed with significant frequency. The bases for T cell reconstitution and limitations in B cell humoral immune recovery in the postgrafting period are reviewed, together with emerging evidence that pretransplant cytoreduction might obviate some of these problems.

Agglutination Tests↗

Frequent deletion and duplication of the steroid 21-hydroxylase genes.

Congenital adrenal hyperplasia due to 21-hydroxylase (21-OHase) deficiency is an HLA-linked disorder resulting from a mutation in the 21-OHase B gene encoding the adrenal cytochrome P450 specific for steroid 21-hydroxylation. To identify polymorphisms associated with 21-OHase deficiency, DNA samples from 22 unrelated patients with this disorder were examined with a human cDNA clone encoding the enzyme. Deletions of the active 21-OHase gene were found in almost one-fourth of classical 21-OHase deficiency alleles. In contrast, mild, "nonclassical" 21-OHase deficiency is associated with a duplicated 21-OHase gene.

Adrenal Hyperplasia, Congenital↗

Clonable T lymphocytes in T cell-depleted bone marrow transplants correlate with development of graft-v-host disease.

Early clinical trials using T lymphocyte-depleted human marrow for transplantation have reported that such grafts reduce, to varying degrees, both the incidence and the severity of graft-v-host disease (GVHD). However, to date, no clear estimates have been made as to what degree of T cell depletion is necessary to prevent GVHD in every case. To address this problem, we used a limiting dilution assay (LDA) to quantitate residual clonable T lymphocytes in human T cell-depleted bone marrow in 31 HLA-identical transplants for leukemia. The number of phytohemagglutinin -interleukin 2-responsive T lymphocytes determined by LDA and expressed as T cell per kilogram recipient weight was found to correlate with the subsequent development of GVHD: no patients who received less than 1 X 10(5) T cell per kilogram developed GVHD (N = 24). Of the seven patients who received 1 X 10(5) to 4.4 X 10(5) T cell per kilogram, four patients developed grade I or II skin GVHD. This study thus provides a quantitative estimate of the number of T lymphocytes necessary to initiate clinically detectable GVHD in an HLA-identical host.

Bone Marrow↗

Human leukocyte antigen associations in basal cell carcinoma.

Basal cell carcinoma is the most common form of skin cancer and is one in which both host and environmental factors are thought to play a role in its pathogenesis. For an investigation of the role of human leukocyte antigen (HLA)-associated variations in genetic susceptibility, thirty-one patients with multiple basal cell carcinomas were typed for HLA-A, B, C, and DR antigens. Patients were compared with both local and appropriate ethnic group controls. No statistically significant association with HLA-A, B, or C antigens was noted in any group. However, a significant increase in HLA-DR1 was noted in non-Irish, non-Ashkenazi patients. A tendency toward a decrease in HLA-DR3 was also noted among patients of Irish or Ashkenazi Jewish descent. The role of HLA-associated genetic factors in this form of skin cancer needs further investigation.

Basal Cell Carcinoma↗

Generation and regulation of autocytotoxicity in mixed lymphocyte cultures: evidence for active suppression of autocytotoxic cells.

Using limiting dilution analysis, we have detected both the generation and suppression of autocytotoxic cells following autologous or allogeneic stimulation in vitro. Assay conditions were established in which the cytotoxic response toward an allogeneic sensitizing cell was consistent with a traditional single-hit kinetic model. Under identical conditions, cytolytic activity toward autologous phytohemaglutinin-activated lymphoblasts exhibited a distinct biphasic response. At low responder cell doses, a clear autocytotoxic response was observed. However, at higher responder cell numbers, this autocytotoxic reaction disappeared. This biphasic pattern of autocytotoxicity developed after stimulation with allogeneic or autologous peripheral blood mononuclear leukocytes (PBL) or Epstein-Barr virus-transformed B cells. This pattern of response is consistent with the counterpoised actions of two distinct cell populations, an autoaggressive population and a lower frequency autosuppressor population. Autocytotoxicity was not the result of mitogenic or xenogeneic antigenic stimulation, as it was observed after stimulation with autologous PBL in autologous serum and an autologous interleukin 2 preparation. Thus, cells capable of autocytotoxicity are present in peripheral blood but at a lower frequency than allocytotoxic T lymphocytes. Furthermore, autoaggressive cells are down-regulated by an autologous suppressor population. These findings suggest that immunologic self-tolerance is, at least in part, an actively maintained condition. Disturbances in this autoregulatory network may have relevance to the pathogenesis of some autoimmune diseases and graft-versus-host disease.

B-Lymphocytes↗

Two genes encoding steroid 21-hydroxylase are located near the genes encoding the fourth component of complement in man.

Two genes encoding steroid 21-hydroxylase [21-OHase; steroid 21-monooxygenase; steroid, hydrogen-donor: oxygen oxidoreductase (21-hydroxylating); EC 1.14.99.10], a cytochrome P-450 enzyme, have been located within the HLA major histocompatibility complex. Congenital adrenal hyperplasia due to 21-OHase deficiency is a common inherited disorder of cortisol biosynthesis which is in genetic linkage disequilibrium with certain extended HLA haplotypes. These haplotypes include characteristic serum complement allotypes. A series of cosmid clones was isolated from a human genomic library by using a probe encoding part of the fourth component of complement, C4. These clones also hybridized with a probe encoding most of human 21-OHase. Restriction mapping and hybridization analysis showed that there are two 21-OHase genes, each located near the 3' end of one of the two C4 genes. Hybridization with probes specific for the 5' and 3' ends of the 21-OHase gene showed that the 21-OHase and C4 genes all have the same orientation. The 21-OHase genes 3' to C4A and C4B carry T aq I fragments of 3.2 and 3.7 kilobases (kb), respectively. Both of these fragments are found in genomic DNA of most individuals. In DNA from an individual with the severe, "salt-wasting" form of 21-OHase deficiency who was homozygous for HLA-A3;Bw47;C4A*1;C4B*Q0(null); DR7, the 3.7-kb Taq I fragment is absent, whereas hormonally normal individuals homozygous for HLA-A1;B8;C4A*Q0;C4B*1;DR3 do not carry the 3.2-kb Taq I fragment. These data suggest that the 21-OHase "B" gene (3.7-kb Taq I fragment) is functional, but the 21-OHase "A" gene (3.2-kb Taq I fragment) is not.

Chromosome Deletion↗

Cutaneous, ocular, and osteoarticular candidiasis in heroin addicts: new clinical and therapeutic aspects in 38 patients.

Of 38 heroin addicts treated for systemic candidal infections, 36 had metastatic cutaneous lesions (deep-seated scalp nodules and pustulosis in hairy zones), 15 had ocular localizations (mainly chorioretinitis), and 10 had osteoarticular involvement (vertebrae, costal cartilage, knees, and sacroiliac). Such cutaneous lesions have not previously been described in classical systemic candidiasis; we also observed hair invasion by candidal hyphae. Candida albicans was the exclusive species isolated, in contrast to other visceral candidiases in heroin addicts. All isolates were sensitive to amphotericin B, flucytosine, and ketoconazole. Thirty-one visceral localizations were treated only with ketoconazole. Results were favorable in 15 of 18 cutaneous, 6 of 6 ocular, and 4 of 7 osteoarticular cases of involvement. This outbreak coincided with introduction of a new heroin on the drug market in the Paris area. C. albicans was not isolated from the drug. Pathogenesis of this syndrome is unclear.

Adult↗