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Biomedical subjects

D Charron

Publications and source records attributed to D Charron.

At least 163 records · Page 9Linked to original sources

Determination of DRB alleles using PCR amplification and allele-specific primers.

HLA class-II allelic diversity is commonly defined using polymerase chain reaction (PCR) in combination with sequence-specific oligotyping (PCR-SSO) or the combination of PCR and restriction fragment length polymorphism methods (PCR-RFLP). Nevertheless, the identification of the DRB polymorphism by PCR-SSO is a time-consuming procedure and the PCR-RFLP is cumbersome. A rapid technique which allows a precise and extensive HLA-DRB typing is required, particularly in order to study the role of class-II matching in organ transplantation. A DRB typing method based on the detection and length of PCR products amplified using combination of allele specific primers has been developed. Thirty-four DRB alleles (29 DRB1, 4DRB3, 1DRB4) can be detected using 29 primers distributed into 19 amplification mixtures.

Alleles↗

HLA-DRB and -DBQ typing by PCR amplification using sequence-specific primers (PCR-SSP): assessment after 1 year of routine use by three laboratories.

Using sequence-specific amplifications, a practical and fast technique for DRB and DQB typing has been developed. The primers are chosen in order to amplify groups of alleles corresponding to the same serological specificity. In a second step, precise allelic determination is obtained by studying the restriction fragment length polymorphism of the PCR products. The experience of three laboratories using this technique in the context of organ or bone marrow transplantation is reported.

Alleles↗

HLA class II alleles in isocyanate-induced asthma.

Studying genetic factors that control human immune responsiveness may further our understanding of specific types of asthma in which the role of immune factors is uncertain to date. HLA Class II gene products are involved in the control of immune responses. Therefore, we investigated whether HLA Class II genetic markers contribute to susceptibility or resistance to isocyanate-induced asthma (IAA) in exposed workers. We collected venous blood samples from two groups of unrelated white adults: (1) patients with isocyanate-induced asthma documented by a positive inhalation challenge; and (2) exposed individuals with no history of IAA. The second exon of DQA1, DQB1, DPB1, and DRB genes was selectively amplified by the polymerase chain reaction (PCR) method. HLA typing was carried out by the PCR-RFLP method, which allowed discrimination of most HLA DQA1, DQB1, DPB1, and DRB alleles. No significant difference was found in the distribution of DPB1 alleles between patients and control subjects. Allele DQB1*0503 and allelic combination DQB1*0201/0301 were associated with susceptibility to the disease. Conversely, allele DQB1*0501 and the DQA1*0101-DQB1*0501-DR1 haplotype conferred significant protection to exposed healthy control subjects. Our results are consistent with the hypothesis that immune mechanisms are involved in isocyanate-induced asthma and that specific genetic factors may increase or decrease the risk of developing IAA in exposed workers.

Adult↗

HLA class II-mediated aggregation is associated with the proliferation of B lymphocytes.

We have studied the role of LFA-1 antigens in human B lymphocyte aggregation, proliferation, and Ig production induced by a short stimulation via class II antigens. Cell stimulation with either bacterial superantigens or anti-DR mAbs rapidly induced homotypic cell aggregation. In response to IL-4, an increase in cell proliferation and Ig production was observed only when aggregation preceded addition of IL-4. The involvement of LFA-1 molecules in class II-induced aggregation was supported as LFA-1-deficient cells or B cells incubated with anti-LFA-1/ICAM-1 mAbs failed to aggregate after stimulation. The association between aggregation and subsequent Ig production and proliferation was further supported as, after IL-4 stimulation, in both LFA-1-deficient cells and B cells incubated with anti-LFA-1 mAbs, class II-mediated signals failed to increase Ig production or cell proliferation. These data suggest that in class II-stimulated cells, LFA-1-dependent aggregation has a major role in IL-4-dependent Ig production and proliferation of B cells.

B-Lymphocytes↗

Characterization of lymphocyte subpopulations in cord blood.

Twenty-seven cord blood samples from healthy newborns were processed according to a "whole blood" flow cytometric analysis. The CD3-positive T cells were a variable subpopulation representing 44.8 +/- 13.3% of lymphocytes. The majority of the CD3+ cells are CD38+. Newborn T cells have lower levels of both IL-2 receptors and HLA-DR than do adult T cells. The CD4-positive T cells represented 31.0 +/- 10.8% of lymphocytes with a great prevalence of the CD4+/CD45RA+ population. The CD3+/CD8+/CD11b+ cells are increased to 23.4 +/- 7.1% of lymphocytes. The CD57 antigen is not expressed. The NK population, CD16+/CD56+, is increased to 25 +/- 11% of lymphocytes. Of CD19+ cord blood B lymphocytes 68% coexpressed CD5. Thus "suppressive" and "naive" cells are prominently represented in cord blood.

Antigens, CD↗

Summary report from the first international workshop on soluble HLA antigens. Paris, August 1992.

The First International Workshop on Soluble HLA antigens focused on the comparison of immunoassay procedures for quantitation of soluble HLA (sHLA) class I antigens and the selection of a sHLA class I antigen international standard. Several sets of serum, plasma, and cell culture supernatant specimens were assayed blindly for levels of sHLA class I antigens by 15 participating laboratories using different immunoassay formats. The sandwich ELISA using (i) for antigen capture: an anti-HLA class I heavy chain monoclonal antibody (mAb) specific for a monomorphic epitope, and (ii) for antigen detection: an anti-beta 2 microglobulin antibody-enzyme conjugate, was the assay format of choice. There was a high inter-laboratory correlation among the majority of laboratories. All serum and plasma specimens from normal donors, and from a single transplant patient, had detectable levels of sHLA class I antigens. Paired serum and plasma specimens had similar levels of sHLA class I antigens, although plasma sHLA antigens seemed more stable than serum sHLA antigens. sHLA-A2 and sHLA-B7 antigens were detected in all specimens from HLA-A2 and HLA-B7 donors, respectively, using allele-specific ELISAs. No difference in reactivity was observed for quantitation of native sHLA class I antigens whether the capture mAb was TP25.99 (alpha 3 domain-specific) or W6/32 (alpha 2 + alpha 3-specific). However, a human-mouse chimeric sHLA class I antigen reacted weakly in assays which used TP25.99 mAb. The wide variation among laboratories in their reporting of micrograms/ml units pointed to the need for an inter-laboratory standardization based on a calibrated sHLA antigen preparation. T.sB7, an sHLA-B7 antigen derived from a cell line transfected within human beta 2 microglobulin and HLA-B7 genes, was accepted as the First sHLA class I Antigen International Standard at the workshop meeting.

Alleles↗

HLA class II polymorphism and IDDM susceptibility in the Greek population.

The frequencies of HLA-DQA1, DQB1 and DRB1 alleles were compared between 50 Insulin-Dependent Diabetes Melitus (IDDM) patients and 49 healthy controls in the Greek population. Statistically significant difference in the frequencies of HLA-DQA1*0501-DQB1*0201 (P = 10(-4)), DQA1*0301-DQB1*0201 (P = 0.01) and DQA1*0301-DQB1*0302 (P = 0.001) were observed. The DRB1*0405-DQA1*0301-DQB1*0201 was the only DR, DQ combination significantly associated with the disease. The unexpected increase of DRB1*0405 observed in the Greek IDDM may suggest as reported in Chinese and Japanese IDDM a contribution of DR beta and DQ alpha in susceptibility. Moreover, in contrast to the Asians, in the Greek, the DR beta, DQ alpha are found with the usual DQ beta 57-ve.

Adolescent↗

Trans-encoded DQ alpha beta heterodimers confer susceptibility to myasthenia gravis disease.

Myasthenia gravis (MG) is an autoimmune disease associated with thymic abnormalities (hyperplasia and thymoma). With classical typing method, no clear association was observed between HLA class II and MG disease except in a subgroup of patients with hyperplasia. The aim of our work was to investigate a possible correlation between HLA class II alleles and MG disease using molecular typing which was proved to be much more informative in many diseases. Using polymerase chain reaction and 75 sequence-specific oligonucleotide probes, frequencies of HLA-DRB1, B3, B4, DQA1, DQB1 and DPB1 alleles were identified in 47 Caucasian MG patients and 105 healthy controls. None of the HLA class II alleles identified, was significantly increased in the group of patients compared to controls. However, further analysis of DQA1-DQB1 genotype demonstrated that susceptibility to the disease is associated with two trans DQ alpha beta heterodimers encoded by DQA1*01-DQB1*0201 or DQA1*01-DQB1*0301 combinations (72% in patients vs 29% in controls, RR = 6.2, Pc < 0.001). DQA1*01 group of alleles (DQA1*0101, 0102 or 0103 allele) encode DQ alpha chains sharing long polymorphic sequence including non-charged glycine and positively charged arginine residues at positions 55 and 64, respectively. DQB1*0301 and DQB1*0201 encode a DQ beta chain bearing a negatively charged glutamic acid at position 45 and 46, respectively. A combination of such DQ alpha and DQ beta chains may form susceptibility peptide-binding groove. In MG patients with thymic hyperplasia an additional association with DQA1*0501 in linkage disequilibrium with DQB1*0201 and DQB1*0301 alleles was observed (RR = 17.2, Pc < 0.001). Our data indicate that MG, like other autoimmune diseases, is associated with particular HLA-DQ alpha beta heterodimers, independently of clinical parameters. A role for DQA1*0501 allele in the manifestation of thymic hyperplasia disorders is suggested.

Adolescent↗

[Demonstration of transcriptional regulation of protein kinase C by class II anti-HLA antibodies in human CA cells of the lymphoblastoid line].

HLA class II antigens are involved in signal transduction in B lymphocytes. We have previously reported that the ligation of HLA class II antigens in B cells results in an increase of cytosolic and membrane PKC activity [3]. Unlike TPA, no translocation of the cytosolic PKC was observed following anti HLA class II antibody treatment. However, an increase of both PKC activity (cytosolic and membrane) and quantity was observed. These effects are completely abolished by actinomycin D treatment. Northern blot analysis and PCR reaction revealed that anti HLA class II antibodies induce an increase of the PKC beta level which is significant after 20 minutes of stimulation and rose to a maximum after 60 minutes. Taken together, our results show that anti HLA class II antibodies exert a transcriptional regulation of PKC in human B lymphocytes.

Antibodies, Monoclonal↗

Evidence for a viral superantigen in humans.

Superantigens bind class II major histocompatibility proteins and stimulate powerful proliferative responses of T lymphocytes bearing particular V beta sequences as part of their alpha beta antigen receptor. Exogenous bacterial superantigens are responsible for food poisoning and toxic shock syndrome. Murine virus-encoded self-superantigens induce clonal deletion of T lymphocytes. Although superantigen-like properties have been suggested for human immunodeficiency virus-1, no viral superantigen has been identified in humans. Here we report that the nucleocapsid of the rabies virus is an exogenous superantigen specific for V beta 8 human T lymphocytes which binds to HLA class II alpha-chains.

Antigen-Presenting Cells↗

Specific polypeptide markers in chronic B cell malignancies detected by two-dimensional gel electrophoresis.

Two-dimensional polyacrylamide gel electrophoresis (2-D PAGE) analysis of silver stained polypeptides was used to discriminate the cell protein profiles in chronic B cell malignancies. We identified 5 distinct polypeptides (H1 to H5) present in hairy cell leukemia (HCL) (14 cases) and absent in most chronic lymphocytic leukemia (CLL) and normal B lymphocytes. Two polypeptides, H2 and H5, were absolutely specific of HCL. The 2-D PAGE profiles found in 3 splenic lymphoma with villous lymphocytes (SLVL) and 2 HCL variants (HCL-V) were similar to HCL with a unique additional peptide present in 3/3 SLVL and 1/2 HCL-V. When HCL and SLVL were assessed for the CLL stage-specific 2-D PAGE patterns, HCL was related to stage A/B while SLVL was related to stage C. In conclusion, 2-D PAGE analysis of the molecular pattern of B lymphocytes provides a new means to recognize the leukemic origin of the sample and distinguish HCL from CLL and SLVL.

Adult↗

Class II MHC antigens in normal human skeletal muscle.

Class II MHC antigen expression has been investigated in muscle tissue and cultured cells from normal human skeletal muscle by light and electron immunocytochemistry. In muscle tissue, these antigens were detected in satellite cells, interstitial cells, and blood vessels. In cultures, muscle cells were stained with a pan-reactive anti-HLA class II antibody and with isotypes specific for DP, DQ, and DR. The staining was present on mononucleated cells and persisted on myotubes; it was stronger for DR and DQ isotypes than for DP. At the subcellular level, staining was located not only at the cell surface, but also next to the endoplasmic reticulum and in the cytosol. Thus, myosatellite cells and aneurally cultured cells from human normal skeletal muscle express class II MHC antigens. Moreover, the myotube staining and the presence of gold particles inside the cells suggested synthesis of these antigens after myoblast fusion.

Fluorescent Antibody Technique↗

HLA class-II-mediated homotypic aggregation: involvement of a protein tyrosine kinase and protein kinase C.

Homotypic aggregation of B-lymphocytes, B-cell lines and class-II-positive T cells via HLA class II molecules was examined. Signaling via DR antigens induced rapid aggregation in a dose- and time-dependent manner, maximum and stable aggregation was induced within 20 minutes. On the contrary, rapid signaling via DP or DQ required prestimulation with either PMA or anti-sIg. Aggregation was temperature and energy dependent. [Ca2+] and [Mg2+] concentrations and an intact cytoskeleton were required while neither mRNA or protein synthesis were required. Furthermore, FACS analysis revealed that aggregation was not directly correlated with cell surface expression of HLA class II molecules. Our results demonstrate that aggregation was mediated through a protein tyrosine kinase (PTK)-dependent pathway that preceded activation of protein kinase C (PKC) and failure to generate either the PTK signal or the PKC signal prevented aggregation. The contribution of a tyrosine kinase was further demonstrated by the total inhibition of aggregation following treatment with an anti-CD45 mAb.

Antibodies, Monoclonal↗