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Biomedical subjects

L Degos

Publications and source records attributed to L Degos.

At least 127 records · Page 7Linked to original sources

Localization of the conformational alteration of MHC molecules induced by the association of mouse class I heavy chain with a xenogeneic beta 2-microglobulin.

Changes in the antigenicity of major histocompatibility complex (MHC) class I molecules resulting from the association of bovine beta 2-microglobulin (beta 2-m) with mouse class I heavy chains were investigated. Mice (H-2b) were immunized with syngeneic Concanavalin A (Con A) blasts induced in the presence of fetal calf serum (FCS) in conditions allowing exchange between mouse and bovine beta 2-microglobulin (beta 2-m). Spleen cells from hyperimmunized mice were fused with myeloma cells and two monoclonal antibodies which required for their reactivity the presence of FCS have been further studied. One of them (CAB 297) recognized a determinant of bovine beta 2-m which is present on free molecules in solution as well as when they are associated with either mouse or bovine class I heavy chains. In contrast, the second monoclonal antibody (CBB 70) did not react with free bovine beta 2-m molecules, nor with beta 2-m associated with bovine class I heavy chains. It did react with cells of some H-2 haplotypes (b, f, p and r) but only when their class I heavy chains are associated with bovine or with human beta 2-m. Therefore, expression of the CBB 70 defined antigenic determinant requires both xenogeneic beta 2-m and class I heavy chain of a given H-2 molecule. In order to precisely localize the antigenic determinant defined by this monoclonal antibody and therefore the region altered by the association of class I heavy chain with xenogeneic beta 2-m, we made use of exon shuffled class I molecules. The results indicate that changes induced by the association of bovine beta 2-m with H-2 class I heavy chain affect the conformation of the alpha 2 domain. These studies illustrate that MHC class I molecules exhibit a considerable conformational flexibility which could influence their ability to bind and present various peptides to the T-cell receptor.

Animals↗

All-trans retinoic acid (ATRA) therapeutical effect in acute promyelocytic leukemia.

All-trans retinoic acid (ATRA) is able to specifically differentiate acute promyelocytic leukemic cells (APL) in short-term culture. Patients with APL achieved complete remission within 1-3 months by a progressive maturation of leukemic cells. The advantages of this differentiation therapy are the rapid disappearance of the bleeding disorders and the absence of aplastic phase avoiding the early deaths occurring in 15-30% of patients with conventional chemotherapy. However, relapses occurred when ATRA alone was maintained. For this reason, a chemotherapy is added after complete remission obtained by ATRA. A pilot study on 27 patients was proposed with the sequential combination of ATRA and chemotherapy. A European trial randomizes conventional therapy to the sequential ATRA-chemotherapy protocol. Retinoic acid receptor (RAR alpha) is rearranged by the specific translocation t(15;17) of APL; a PCR technique was developed in order to ensure the diagnosis and to follow the minimal residual disease. Transfection experiment of the chimaeric gene inhibits the transactivation of the natural RAR. ATRA is able to revert the arrest of maturation perhaps through an increase of the expression of the normal allele of RAR, which could overpass the impairment induced by the chimaeric protein on target responsive elements. One of the steps of the repair is the modulation of programmed cell death (PCD). Bcl-2, a gene involved in the PCD, is modulated in in vitro studies, arguing for the engagement of the cell in the natural death. The beneficial effect of differentiation therapy is probably due to the induction of the natural death of the malignant cell.

Antineoplastic Agents↗

Retinoic acid in acute promyelocytic leukemia: a model for differentiation therapy.

Acute promyelocytic leukemia is a clonal expansion of malignant cells blocked at a specific stage of myeloid differentiation. The disease is associated with a specific translocation between chromosome 17 and chromosome 15 [t(15;17)] and with a bleeding diathesis previously attributed to disseminated intravascular coagulation, which has recently also been related to primary fibrinolysis. The high percentage of early deaths, about 20%, experienced by acute promyelocytic leukemia patients, is generally due to the hemorrhagic syndrome. A new finding is the high effectiveness of treatment with all-trans retinoic acid, a vitamin A derivative, for inducing complete remission. The induction of cellular maturation by this agent represents the first model of differentiation therapy. Furthermore, recent molecular studies revealed that the breakpoints of the t(15;17) translocation are clustered in the gene of retinoic acid receptor-alpha, generating a hybrid gene product. Gene transfection experiments disclosed the impairment of gene transactivation due to the hybrid gene products, opening new concepts for understanding leukemogenesis. Understanding the mechanisms of action of retinoic acid could extend differentiation therapy to other malignancies with aberrant gene transcription.

Carrier Proteins↗

TCR gamma delta bearing T lymphocytes infiltrating human primary cutaneous melanomas.

In situ immunophenotypic studies show that tumor infiltrating T lymphocytes from six of 11 fresh cutaneous primary melanomas tested contain T-cell receptor gamma delta expressing cells whereas those from 8 metastatic melanomas did not. In three cases these cells represent an unexpectedly high proportion of the lymphocytic infiltrate, ranging from 15 to 25%. This elevated percentage is maintained when tumor infiltrating lymphocytes are propagated in vitro for 2 or 3 weeks in the presence of recombinant interleukin 2 and autologous tumor cells. Functional studies reveal that gamma delta lines or clones developed from lymphocytes infiltrating primary melanoma display, in addition to their natural killer-like activity, a potent autologous tumor cell cytotoxic activity that does not seem to be restricted by major histocompatibility complex gene products.

Humans↗

The HLA-DRB1*0405 haplotype is most strongly associated with IDDM in Algerians.

Insulin-dependent diabetes mellitus (IDDM) in Caucasians is strongly associated with HLA-DR3-DQ2 and DR4-DQ8. In order to investigate the HLA class II associations with IDDM in Algerians, we have used polymerase chain reaction (PCR) and sequence specific oligonucleotide analysis (SSO) to identify DQA1, DQB1, and DRB1 alleles, haplotypes and genotypes in 50 unrelated IDDM patients and 46 controls from a homogeneous population in Western Algeria. Both DRB1*0301-DQA1*0501-DQB1*0201 (DR3-DQ2) and DRB1*04-DQA1*0301-DQB1*0302 (DR4-DQ8) haplotypes were found at increased frequencies among the patients compared to controls (45% vs. 13%, RR = 5.5, Pc < 10(-5) and 37% vs. 4%, RR = 12.9, Pc < 10(-4), respectively). Among the latter, in contrast to other Caucasian populations, only DRB1*0405-DQA1*0301-DQB1*0302 was significantly increased in the Algerian patients (25% vs. 1% in controls, RR = 30.3, Pc < 10(-3). Accordingly, the highest risk of disease was observed in DRB1*0301-DQA1*0501-DQB1*0201/DRB1*0405-DQA1+ ++*0301-DQB1*0302 heterozygotes (34% in patients vs. 0% in controls; RR = 49; Pc < 10(-3). This observation and its comparison with DR-DQ haplotypes in other ethnic groups suggest that the DRB1*0405 allele which encodes an Asp57-negative beta chain may contribute to IDDM susceptibility in a similar way as Asp57-negative DQ beta chains.

Algeria↗

Dose effect of cis- and trans-encoded HLA-DQ alpha beta heterodimers in IDDM susceptibility.

Insulin-dependent diabetes mellitus (IDDM) in whites is strongly associated with particular HLA-DQ alpha beta heterodimers composed of a DQ alpha chain with an arginine at residue 52 (Arg52+) combined to a DQ beta chain lacking an aspartic acid at residue 57 (Asp57-). With the aim of confirming this association, clarifying which heterodimers account for the highest risk of IDDM and explaining the excess risk of DR3-DQw2/DR4-DQw8, 115 unrelated white IDDM patients and 108 unrelated healthy nondiabetic control subjects were studied. With polymerase chain reaction and sequence-specific oligonucleotide probes, both patients and control subjects were typed for their HLA-DQA1 and DQB1 alleles and their DQA1-DQB1 haplotype and genotype frequencies were compared. Four major findings emerged from our analysis. 1) Arg52+ DQ alpha/Asp57- DQ beta heterodimers, formed in cis and/or in trans, are strongly associated with susceptibility to IDDM; 97% of patients and 46% of control subjects had at least one such susceptibility heterodimer (relative risk [RR] 32, confidence interval [Cl] 14.25-71.86, P less than 10(-7). 2) The degree of disease susceptibility depends on the number of such DQ heterodimers that a subject can express according to his or her DQA1-DQB1 genotype. The highest RR was observed in patients with four susceptibility DQ heterodimers (RR 41, Cl 17.05-95.9). 3) Only part of the susceptibility DQ heterodimers were significantly increased in patients, conferring IDDM susceptibility of different strength. The strongest association was with the DQA1*0501-DQB1*0302 combination formed in trans position (RR 35.2, CI 12.88-96.78, P less than 10(-7).(ABSTRACT TRUNCATED AT 250 WORDS)

Alleles↗

[Mechanism of action of retinoids in a new therapeutic approach to acute promyelocytic leukemia].

Vitamin A (retinol) and retinoic acid, its natural derivative, play an important role in the growth, differentiation and development of known normal tissues. Retinoids have recently become of interest to research in areas as diverse as dermatology, embryonal development and cancer research. Retinol is the major retinoid transported in the blood and tissues by its specific carrier retinol binding protein (RBP). The normal level of retinol in plasma is regulated very precisely by retinol homeostasis. RBP-retinol circulation supplies target cells, which then activate retinol into retinoic acid (RA) if they possess the NAD-dependent enzymatic oxidation system. RA, which is one of the most active metabolites of retinol, is also present in low concentration in the blood and the RA rate formation varies from tissues depending on specific need of the cell. The cellular transport and biological activity of retinoids may be mediated by their specific cytoplasmic binding proteins cellular retinol binding protein (CRBP) and the cellular retinoic acid binding protein (CRABP) which may function as shuttles targetting RA to nucleosol fraction and/or as regulator of cellular concentration of RA. The nuclear proteins RARs (retinoic acid receptors), which are members of the nuclear receptor superfamily are likely to be the final transducers of the RA signal at the gene expression. All-trans retinoic acid (ATRA) is able to specifically differentiate the malignant cells from leukemic patients with APL in short-term culture. For this reason, APL patients were successfully treated with ATRA (Chinese and French results). Acute promyelocytic leukemia M3 (French-American-British FAB classification) is a rare disease (10% of AML), characterized by a reciprocal chromosome 15-17 translocation. It has been shown that the chromosome 17 breakpoint of the translocation is localized within the RAR alpha gene. Due to the t(15;17) RAR alpha gene translocated to a gene PML on chromosome 15 resulting in synthesis of PML/RAR alpha fusion messenger RNA. Detection of PML/RAR alpha transcript is now a molecular marker of the disease. The abnormal PML/RAR alpha protein exhibits altered transcription activation properties when compared with RAR alpha. Clinical trials have demonstrated that ATRA is extremely efficient in inducing complete remission in APL patients. The morphologic finding of maturing elements in the bone marrow and peripheral blood during retinoic acid treatment indicates that the remission is obtained without hypoplasia and suggests that a differentiating mechanism is involved.(ABSTRACT TRUNCATED AT 400 WORDS)

Carrier Proteins↗

Combined therapy with all-trans-retinoic acid and high-dose chemotherapy in patients with hyperleukocytic acute promyelocytic leukemia and severe visceral hemorrhage.

Acute promyelocytic leukemia (APL) is associated with a high incidence of disseminated intravascular coagulation (DIC) and early hemorrhagic death. The risk of early fatal hemorrhage is increased when high peripheral-blood blast count and severe DIC accompanied by visceral hemorrhage are present at diagnosis. Progressive cytolysis induced by daily increased doses of chemotherapy, or differentiation all-trans-retinoic acid (ATRA) therapy have been proposed for initial control of DIC, but both are dangerous in hyperleukocytic APL patients. We report our results obtained in three high-risk APL patients treated with a combination of conventional chemotherapy and ATRA. All patients had documented hyperleukocytic APL [M3 or M3-variant subtype, (15, 17) translocation] with DIC, and all had critical clinical course before treatment. Patient 1 presented with cerebral hemorrhage, patients 2 and 3 had acute respiratory failure probably due to pulmonary leukemic infiltration and pulmonary hemorrhage. In order to minimize the severity of DIC during chemotherapy-induced acute cytolysis, ATRA (45 mg/m2 per day) was started on the first or second day of chemotherapy and withdrawn when complete remission (CR) was achieved. Despite adverse clinical features, CR was obtained in these three high-risk patients. Patient 1 showed no increase of cerebral bleeding during therapy. Patients 2 and 3 required transient intensive care, with mechanical ventilation from day 4 to day 11 for one of them. Differentiating granular cells were present in peripheral blood of all patients from the day 5, 12 and 8 of cytotoxic therapy. For the three patients, the number of days with white blood cell count < 1 x 10(9)/l was only 2, 7 and 11 days respectively. These results suggest that differentiation therapy with ATRA may be useful even in hyperleukocytic APL patients, when ATRA is used in combination with chemotherapy. The mechanisms of this putative beneficial effect are discussed.

Adult↗

[HLA and cancer].

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Genes, MHC Class I↗

The PML-RAR alpha fusion mRNA generated by the t(15;17) translocation in acute promyelocytic leukemia encodes a functionally altered RAR.

We have previously shown that the t(15;17) translocation specifically associated with acute promyelocytic leukemia (APL) fuses the retinoic acid receptor alpha (RAR alpha) locus to an as yet unknown gene, initially called myl and now renamed PML. We report here that this gene product contains a novel zinc finger motif common to several DNA-binding proteins. The PML-RAR alpha mRNA encodes a predicted 106 kd chimeric protein containing most of the PML sequences fused to a large part of RAR alpha, including its DNA- and hormone-binding domains. In transient expression assays, the hybrid protein exhibits altered transactivating properties if compared with the wild-type RAR alpha progenitor. Identical PML-RAR alpha fusion points are found in several patients. These observations suggest that in APL, the t(15;17) translocation generates an RAR mutant that could contribute to leukemogenesis through interference with promyelocytic differentiation.

Amino Acid Sequence↗

Hyperphosphorylation of CD20 in hairy cells. Alteration by low molecular weight B cell growth factor and IFN-alpha.

Hairy cell leukemia (HCL) is a B cell tumor affecting the pre-plasma stage of B cell differentiation. Hairy cells produce B cell growth factor (BCGF)-related growth factor(s) and we have previously shown that low mol wt (LMW)-BCGF-induced proliferation of hairy cells is inhibited in vitro and in vivo by IFN-alpha. We therefore suggested that this effect might contribute to the exquisite sensitivity of HCL to IFN-alpha therapy. To elucidate the mechanism involved in the therapeutic effect of IFN-alpha, we have analyzed the pattern of phosphorylated proteins in hairy cells. We detected the presence of a hyperphosphorylated protein with a molecular mass of about 35 kDa. This protein was identified as the CD20 molecule (B1), which is a structurally unique phosphoprotein exclusively detected on B cells and expressed during most stages of B cell development. Incubation of hairy cells with mitogenic concentrations of LMW-BCGF induces an additional increase in CD20 protein phosphorylation. In contrast, preincubation of cells with IFN-alpha, but not IFN-gamma, decreases both basal and LMW-BCGF-induced CD20 phosphorylation. CD20 phosphorylation in hairy cells is also reduced after in vivo IFN-alpha administration. In contrast, in one case of a patient unresponsive to IFN-alpha therapy, CD20 phosphorylation is not altered by in vitro IFN-alpha treatment, whereas LMW-BCGF still elicits CD20 phosphorylation stimulation. Our results suggest that IFN-alpha may act in HCL, at least in part, by inhibiting leukemic cell proliferation via regulation of phosphorylation, since CD20 phosphorylation is thought to be associated with cellular proliferation. A model involving dysregulation of CD20 is discussed.

Antigens, CD↗

Activation of the CD3/T cell receptor (TcR) complex or of protein kinase C potentiate adenylyl cyclase stimulation in a tumoral T cell line: involvement of two distinct intracellular pathways.

A monoclonal antibody (OKT3) directed against the T cell receptor (TcR)/CD3 molecular complex, as well as a protein kinase C (PKC) activator (phorbol 12-myristate 13-acetate, PMA) were added to a culture of tumoral Jurkat T cells, in order to precise the sequence of intracellular signals leading to T cell activation. The experiments were performed in the presence or in absence of various stimulators of adenylate cyclase (AC) such as forskolin (FK), cholera toxin (CT) or prostaglandin E2 (PGE2). OKT3 increased inositol phosphate (IP) production; in parallel, it induced a slight accumulation of cAMP. The effect was markedly potentiated in presence of FK or CT, and to a lesser extent in the presence of PGE2. FK stimulated adenylate cyclase of Jurkat cell membranes, but the effect was not potentiated by OKT3, suggesting that potentiation of cAMP accumulation requires intact cells and is not mediated by direct receptor coupling. On the other hand, elevated cAMP accumulation induced a negative feedback on IP production. The effect of OKT3 on cAMP was mimicked by A23187, a Ca2+ ionophore, and abolished in the absence of extracellular Ca2+. PMA had the same effect as OKT3 on basal or FK- and CT-induced accumulation of cAMP. In contrast, it inhibited the PGE2 effect on the cyclic nucleotide. After desensitization of PKC by pretreatment with a high concentration of PMA, the phorbol ester was no longer effective. Under those conditions, facilitation by OKT3 of FK-induced accumulation of cAMP was preserved, whereas potentiation by the monoclonal antibody of the PGE2 stimulation of AC was even enhanced. The data indicate that cAMP accumulation indirectly elicited by phospholipase C activation is, at least partly, mediated by IP-dependent Ca2+ mobilization, while PKC is preferentially effective as an inhibitor of PGE2 stimulation.

Adenylyl Cyclases↗

DNA binding of regulatory factors interacting with MHC-class-I gene enhancer correlates with MHC-class-I transcriptional level in class-I-defective cell lines.

Tumor cells frequently show a lack of surface class-I major histocompatibility complex (MHC) antigen expression. These molecules are key recognition structures for immune rejection of tumor cells and their absence at the surface of tumor cells could favor the progression of tumors. We have analyzed the transcriptional mechanisms that could lead to suppression of MHC-class-I expression in human tumor cell K562. The expression of MHC-class-I genes is highly controlled by regulatory factors interacting with an enhancer sequence upstream of MHC-class-I genes. In this report we show that DNA binding activity of 2 regulatory factors, KBFI and NF-kappa B, known to be essential for constitutive expression of MHC-class-I genes, is deficient in nuclear extracts from K562 cells. Induction of class-I gene expression at the surface of tumor cells by interferon-gamma (IFN-gamma) and tumor necrosis factor alpha (TNF-alpha) shows that TNF-alpha can act in synergy with IFN-gamma to induce DNA binding of both factors NF-kappa B and KBFI to the class-I gene enhancer and that this induction of transcriptional factors is correlated with enhancement of MHC-class-I mRNA transcription and cell-surface antigen expression.

Antibodies, Monoclonal↗