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Biomedical subjects

F Sigaux

Publications and source records attributed to F Sigaux.

At least 37 records · Page 2Linked to original sources

Expression and prognostic significance of survivin in de novo acute myeloid leukaemia.

Survivin is an inhibitor of apoptosis (programmed cell death) overexpressed in various human cancers, but undetectable in normal differentiated tissues. A potential distribution and prognostic significance of survivin in patients with de novo acute myeloid leukaemia (AML) was investigated. By immunofluorescence of bone marrow specimens and peripheral blood mononuclear cells, survivin was detected in 75 out of 125 interpretable AML cases (60%), with reactivity in 50-90% of AML cells. Survivin expression correlated with a lower white blood cell count (WBC) (P = 0.008 by the Mann-Whitney test) and was associated, in the 55 cases of FAB M0/M1/M2, with leukaemic granulocytic maturation (one out of five M/L0, 11 out of 22 M/L1 and 23 out of 28M/L2; P = 0.007 by the Fisher test). In 69 patients treated with the Acute Leukaemia French Association (ALFA) 9000 protocol, survivin expression was significantly associated with a lower WBC (P = 0.03 by the Mann-Whitney test) and favourable/intermediate cytogenetics (P= 0.03 by the Fisher test). There was no significant difference in complete remission rate or overall survival between survivin-positive and survivin-negative AML patients (P = 0.15 by the log-rank test). However, survivin expression became an independent negative prognostic factor for survival when adjusted with the Cox model for established prognostic factors in AML (cytogenetics, age and WBC) or for the ALFA 9000 treatment arm (RR = 2.8 and P = 0.026, by the likelihood-ratio test). These data suggest that survivin expression may be considered as a new unfavourable prognostic factor of de novo AML and suggest a role for apoptosis inhibition in influencing disease outcome.

Acute Disease↗

Evaluation of minimal residual disease using reverse-transcription polymerase chain reaction in t(8;21) acute myeloid leukemia: a multicenter study of 51 patients.

PURPOSE: Most studies using various reverse-transcription polymerase chain reaction (RT-PCR) techniques reported that the detection of the AML1-ETO fusion transcript was a common finding in long-term complete remission (CR) in acute myeloid leukemia (AML) with t(8;21) translocation. However, larger prospective studies with interlaboratory quality control may be important to investigate more precisely the clinical usefulness of studying minimal residual disease with RT-PCR in t(8;21) AML. PATIENTS AND METHODS: We collected 223 marrow samples from 51 patients with t(8;21) AML diagnosed in five centers and tested all samples by two different RT-PCR techniques (a nested technique and a one-step technique, with a sensitivity of 10(-6) and 10(-5), respectively) in two different laboratories. RESULTS: Samples from 14 patients in long persistent CR (median follow-up duration, 112 months) were taken at least twice, and all were PCR-negative by both techniques. Samples were prospectively taken from 37 patients after achievement of first CR and/or second CR, before intensive consolidation treatment, and every 3 to 6 months after completion of therapy. Patients who converted to PCR negativity with the one-step technique (60%) or both techniques (48%) after CR achievement had a longer CR duration than those with persistently positive PCR results (two-sided log-rank test, P =.0001). Patients who became PCR-negative with the one-step technique before intensive consolidation (23%) had a lower relapse rate (11% v 72%) and a longer CR duration than those who remained persistently PCR-positive at that point (two-sided log-rank test, P =.0015). CONCLUSION: Patients with AML with t(8;21) in long-term remission were all PCR-negative. In prospectively studied patients, a good correlation was found between negative PCR results and absence of relapse. Early negative results with the one-step RT-PCR technique, before consolidation treatment, seemed to carry an especially good prognosis, suggesting that RT-PCR analysis could help in choosing the type of consolidation therapy in patients with t(8;21) AML.

Acute Disease↗

[Cancer genome or the development of molecular portraits of tumors].

The rapid development of cancer genomics is due to important progresses in oncogenesis, human genome sequencing and emergence of new technologies in genome and transcriptome analysis. In this context, the aim of the French program 'Cartes d'Identites des Tumeurs--Molecular Portraits of Tumors' is to build a public data base containing a pan genome assessment of genome and transcriptome alterations in the major types of tumors as well as in relevant normal cells and experimental models. Data mining is done in the context of genome annotations and clinical and biological informations attached to the enrolled samples. The goal of the program is to define new tests useful for diagnostic procedures in clinical laboratories and new targets for biological treatments of tumors.

France↗

Cutting edge: requirement of class I signal sequence-derived peptides for HLA-E recognition by a mouse cytotoxic T cell clone.

The human nonclassical MHC class I molecule HLA-E has recently been shown to act as a major ligand for NK cell inhibitory receptors. Using HLA-E-expressing transgenic mice, we produced a cytotoxic T cell clone that specifically recognizes the HLA-E molecule. We report here that this T cell clone lyses HLA-E-transfected RMA-S target cells sensitized with synthetic class I signal sequence nonamers. Moreover, this T cell clone lyses human EBV-infected B lymphocytes, PHA blasts, and PBL, formally demonstrating the surface expression of HLA-E/class I signal-derived peptide complex on human cells. Furthermore, these data show that HLA-E complexed with class I signal sequence-derived peptides is not only a ligand for NK cell inhibitory receptors, but can also trigger cytotoxic T cells (CTL).

Animals↗

Cell-surface expression and alloantigenic function of a human nonclassical class I molecule (HLA-E) in transgenic mice.

We have introduced the gene (E*01033) encoding the heavy chain of the human nonclassical MHC class I Ag, HLA-E, into the mouse genome. Two founder mice carry a 21-kb fragment, the others bear an 8-kb fragment. Each of the founder mice was mated to mice of an already established C57BL/10 transgenic line expressing human beta2-microglobulin (beta2m). Cell surface HLA-E was detected on lymph node cells by flow cytometry only in the presence of endogenous human beta2m. However, HLA-E-reactive mouse CTL (H-2-unrestricted) lysed efficiently the target cells originating from HLA-E transgenic mice without human beta2m, showing that the HLA-E protein can be transported to the cell surface in the absence of human beta2m, presumably by association with murine beta2m. Rejection of skin grafts from HLA-E transgenic mice demonstrates that HLA-E behaves as a transplantation Ag in mice. HLA-E transgenic spleen cells are effective in stimulating an allogeneic CTL response in normal and human classical class I (HLA-B27) transgenic mice. Furthermore, results from split-well analysis indicate that the majority of the primary in vivo-induced CTL recognizes HLA-E as an intact molecule (H-2-unrestricted recognition) and not as an HLA-E-derived peptide presented by a mouse MHC molecule, although a small fraction (ranging from 4 to 21%) of the primary in vivo-induced CTL is able to recognize HLA-E in an H-2-restricted manner. Based on these observations, we conclude that HLA-E exhibits alloantigenic properties that are indistinguishable from classical HLA class I molecules when expressed in transgenic mice.

Animals↗

Cell surface detection of HLA-E gene products with a specific monoclonal antibody.

An HLA-E-specific monoclonal antibody (mAb) was obtained by immunization of human beta2-microglobulin transgenic mice (M-TGM) with spleen cells from double transgenic mice expressing HLA-E molecules (EM-TGM). This mAb, designated V16, specifically recognizes in flow cytometry analysis the HLA-E expressing mouse cells, whereas it does not bind to mouse cells expressing various HLA class I molecules (HLA-A2, -A3, -A11, -A26, A29, -B7, -B27, -Cw3, -Cw7, and HLA-G). V16 mAb binds efficiently to human EBV-infected B lymphocytes, PHA blasts and PBL, thus establishing the surface expression of HLA-E in vivo on these cells.

Animals↗

The clinicopathological features of extensive small intestinal CD4 T cell infiltration.

METHODS: Four patients with clinicopathological features suggesting a new distinct entity defining extensive small intestinal CD4 T cell infiltration were observed. RESULTS: All four patients presented with chronic diarrhoea, malabsorption, and weight loss. Biopsy specimens of the small intestine disclosed extensive and diffuse infiltration of the lamina propria by pleomorphic small T lymphocytes, which were positive for CD3, CD4, CD5, and the beta chain of T cell receptor in all three cases studied and negative for CD103 in all three cases studied. It is notable that, in all invaded areas, the infiltrating cells showed no histological change throughout the whole evolution. In three patients, lymphocyte proliferation was monoclonal and there was extraintestinal involvement. In one patient, lymphoproliferation was oligoclonal and confined to the small intestine. In all four patients, there was no evidence of coeliac disease. Although none of the four patients responded to single or multiple drug chemotherapy, median survival was five years. CONCLUSION: Extensive small intestinal CD4 T cell infiltration is a rare entity, distinct from coeliac disease and associated with prolonged survival.

Adult↗

Down-regulation of human granzyme B expression by glucocorticoids. Dexamethasone inhibits binding to the Ikaros and AP-1 regulatory elements of the granzyme B promoter.

The serine protease granzyme B is an essential component of the granule exocytosis pathway, a major apoptotic mechanism used by cytotoxic T lymphocytes and natural killer cells to induce target cell apoptosis. Granzyme B gene transcription is induced in activated lymphocytes upon antigenic stimulation, and several regulatory regions including CBF, AP-1, and Ikaros binding sites have been shown to be essential in the control of granzyme B promoter activation. Dexamethasone, a glucocorticoid that is widely used as an immunomodulatory and anti-inflammatory agent, inhibits granzyme B mRNA transcript in phytohemagglutinin-activated peripheral blood mononuclear cells. Transfection of a reporter construct containing the -148 to +60 region of the human granzyme B promoter demonstrated that this region was the target for dexamethasone repression. Mutation of Ikaros or AP-1 binding sites in the context of the granzyme B promoter demonstrated that both sites participate in dexamethasone-mediated inhibition of the granzyme B promoter activity. Electromobility shift assay revealed that dexamethasone abolished the binding of nuclear transcription factors to the Ikaros binding site and reduced AP-1 binding activity. These results indicate that dexamethasone is able to abrogate the transcriptional activity of the human granzyme B gene promoter by inhibiting the binding of nuclear factors at the AP-1 and Ikaros sites.

CCAAT-Enhancer-Binding Proteins↗

Are complicated forms of celiac disease cryptic T-cell lymphomas?

We assessed the clonality of duodenal mucosal T cells in patients with celiac disease and controls. Fifteen adult patients were studied. Four patients had a complicated celiac disease, 3 did not respond to a gluten-free diet, and 2 had an ulcerative jejunitis (including 1 patient with nonresponsive celiac disease). Seven patients had an untreated celiac disease responsive to a gluten-free diet. Histological examination of duodenal biopsies of these 11 patients showed benign-appearing celiac disease without evidence of lymphoma. Four patients with nonulcer dyspepsia and normal duodenal biopsies served as controls. TCRgamma gene rearrangements were analyzed by multiplex polymerase chain reaction on DNA extracted from duodenal biopsies. Major clonal rearrangements of the T-cell receptor were found in 4 cases, all with complicated celiac disease. Monoclonality was confirmed by DNA sequencing of the junctional region in 3 cases and by hybridization with clone-specific oligoprobes. Patients with celiac disease responsive to gluten-free diet had mainly a polyclonal pattern, with 1 of them having an oligoclonal rearrangement. An oligoclonal pattern was also observed in 2 control patients. Three patients with complicated celiac disease evolved to T-cell lymphoma with liver (n = 2) or bone marrow (n = 1) invasion. Identical clones were found in the enteropathic duodenojejunum and peripheral blood in the patient with large-cell lymphoma with bone marrow invasion. This study suggests that complicated celiac disease is a cryptic T-cell lymphoma.

Adult↗

B-cell chronic lymphocytic leukemia cells express a functional inducible nitric oxide synthase displaying anti-apoptotic activity.

The expression of different isoforms of nitric oxide synthase (NOS) was investigated in B-cell chronic lymphocytic leukemia (B-CLL) to delineate a possible role for nitric oxide (NO) in the control of apoptosis of the tumoral cells. By reverse transcription-polymerase chain reaction (RT-PCR), all B-CLL cells were found to express spontaneously inducible NOS (iNOS) mRNA, whereas endothelial constitutive NOS (ecNOS) mRNA was undetectable. The iNOS protein was detected by immunofluorescence in the cytoplasm of permeabilized leukemic cells and identified by Western blotting, using different anti-iNOS antibodies, as a protein of 135 kD in B-CLL cytoplasmic extracts. B-CLL cell lysates also displayed basal NOS enzymatic activity, as measured by the conversion of 14C-labeled L-arginine into 14C-L-citrulline. Ligation of CD23, expressed on the vast majority of B-CLL cells, resulted in increased iNOS expression and activity. The NO released exerted an anti-apoptotic effect on B-CLL cells that was counteracted by NOS inhibitors and engagement of the APO-1/Fas pathway. Therefore, the existence of a functional iNOS in B-CLL cells will provide further insights into the mechanisms that control proliferation and apoptosis in these tumor cells.

Antigens, Neoplasm↗

Transgenic mice for MTCP1 develop T-cell prolymphocytic leukemia.

T-cell prolymphocytic leukemia (T-PLL) is a rare form of mature T-cell leukemia associated with chromosomal rearrangements implicating MTCP1 or TCL1 genes. These genes encode two homologous proteins, p13(MTCP1) and p14(TCL1), which share no similarity with other known protein. To determine the oncogenic role of MTCP1, mice transgenic for MTCP1 under the control of CD2 regulatory regions (CD2-p13 mice) were generated. No abnormality was detected during the first year after birth. A late effect of the transgene was searched for in a cohort of 48 CD2-p13 mice aged 15 to 20 months, issued from 3 independent founders. Lymphoid hemopathies, occurring in the three transgenic lines, were characterized by lymphoid cells with an irregular nucleus, a unique and prominent nucleolus, condensed chromatin, a basophilic cytoplasm devoid of granules, and an immunophenotype of mature T cells. The molecular characterization of Tcrb rearrangements demonstrated the monoclonal origin of these populations. Histopathological analysis of the cohort demonstrated early splenic and hepatic infiltrations, whereas lymphocytosis and medullar infiltrations were found infrequently. The engraftment of these proliferations in H2-matched animals demonstrated their malignant nature. Cumulative incidence of the disease at 20 months was 100%, 50%, and 21% in F3, F4, and F7 lines, respectively, and null in the control group. The level of expression of the transgene, as estimated by Western blotting in the transgenic lines correlated with the tumoral incidence, with the highest expression of p13(MTCP1) being found in F3 mice. CD2-p13 transgenic mice developed an hemopathy similar to human T-PLL. These data demonstrate that p13(MTCP1) is an oncoprotein and that CD2-p13 transgenic mice represent the first animal model for mature T-PLL.

Animals↗

Strong alloantigenicity of the alpha-helices residues of the MHC class I molecule.

To evaluate the role of single residues of a MHC class I molecule in the induction of a primary allogeneic response, we have tested the ability of various point mutants (of the alpha-helices or beta-sheet of the alpha1 and alpha2 domains) of the Kd molecule to induce a primary cytotoxic T cell response in mice carrying the wild-type molecule. For that, we have used an in vivo model in which cells expressing mutant molecules were injected into the hind footpads of mice carrying wild-type Kd, and the recipient graft-draining popliteal lymph nodes were tested for the presence of alloreactive CTL. Under these experimental conditions, only 7 of the 25 mutant Kd molecules induced a primary allogeneic response. All of these mutations (positions 62, 65, 69, 72, 155, 163, 166) concern residues of the alpha-helices, demonstrating that very small variances from self in a class I molecule, located outside the peptide-binding groove, can be antigenic. To determine the peptide requirements for the generation of a primary allogeneic response, we have analyzed the repertoire of peptides selected by individual mutant molecules shown to be able or unable to induce a CTL response. No correlation was observed between the peptidic make-up presented by a given mutant and its capacity to induce a primary allogeneic response. On the whole, our data point to the alloantigenicity of potentially TCR-contacting surface residues of the MHC class I molecules.

Amino Acid Substitution↗

Mitochondrial DNA sequence variation in human leukemic cells.

The Long PCR followed by the RFLP technique has been used to search for abnormally structured mitochondrial DNA (mtDNA) and specific sequence differences implicated in the pathogenesis of acute lymphoblastic leukaemia (ALL). We have studied 54 specific sites whose combinations define groups of mtDNA types, in 30 leukemic patients of French Caucasian origin. Results were compared with those in 100 French healthy individuals. Nucleotide substitutions have been defined in 11 patients. This polymorphism is expressed by single base substitution at 6 sites which corresponds to 5 morphs, 2 of which were not found in the reference group. Combining the 11 observed morphs, we have identified 7 different mtDNA types, defined in 30 patients with ALL. Two of the morphs (MspI-2 and AvaII-3) and 3 of the types (17-2, 55-2, NewFr150) were not found in the group of healthy individuals. We have observed significant statistical changes in type 28-2 in ALL patients compared with the controls.

Adult↗

Inactivation of the ATM gene in T-cell prolymphocytic leukemias.

T-cell prolymphocytic leukemia (T-PLL) is a rare form of mature leukemia that occurs both in adults as a sporadic disease and in younger patients suffering an hereditary condition, ataxia telangiectasia (AT). The ATM gene, located in the 11q22-23 chromosomal region, is consistently mutated in AT patients. The strong predisposition of AT patients to develop T-PLL and the high frequency of T-cell leukemias/lymphomas observed in atm-deficient mice, together with the known functions of the ATM protein, led us to evaluate the ATM gene as a potential tumor suppressor gene involved in T-PLL. Paired leukemic and nonleukemic cells were obtained from a series of 15 patients suffering sporadic T-PLLs, allowing loss of heterozygosity (LOH) analysis. LOH of the 11q22-23 region was detected in 10 of these 15 cases (67%). The minimal deleted region was defined as an approximately 2.5 Mb interval that contained the ATM gene. No ATM rearrangement or biallelic deletion was detected by Southern blotting in the T-PLL series. However, in five T-PLLs with LOH of the 11q22-23 region, Western blot analysis showed either undetectable (3 cases) or decreased levels (1 case) of ATM protein, whereas ATM was present at high levels in cases without LOH. The protein truncation test (PTT) was then used to search for mutations in the ATM gene. Four mutations (1 nonsense, 2 aberrant splicings, and 1 missense) were detected in patients with LOH and none in patients without LOH of the region. The acquired character of these ATM mutations was demonstrated in three patients. Altogether, allelic ATM inactivations by large deletions or mutations were found in approximately two thirds of T-PLL. ATM is thus a tumor suppressor gene whose inactivation is a key event in the development of T-cell prolymphocytic leukemias.

Adult↗

Genomic alterations of the p19ARF encoding exons in T-cell acute lymphoblastic leukemia.

We have previously shown that the disruption/deletion of the MTS(MTS1-MTS2) locus due to illegitimate V(D)J recombinase activity is a genetic event characteristic of T-cell acute lymphoblastic leukemia (T-ALL). Inactivation of the p16INK4a tumor suppressor protein, encoded by MTS1, is thought to be the major functional consequence of these chromosomal rearrangements. The two other cell cycle inhibitors encoded by genes identified in the locus (p19ARF by MTS1 and p15INK4b by MTS2), also represent possible candidates for inactivating events. By analyzing p16INK4a expression in three cases in which an identical 36-kb deletion had deleted MTS2 and disrupted the p19ARF, but spared the p16INK4a MTS1 encoding exons, we have excluded p16INK4a and pinpointed p19ARF and/or p15INK4b as the functional target(s) of this rearrangement. Moreover, by the study of the MTS genomic configuration of 149 rearranged alleles from a large series of T-ALL cases, we have shown that p19ARF encoding exons were always disrupted or deleted, whereas p16INK4a and p15INK4b encoding exons were spared in four and 21 cases, respectively. These results suggest that p19ARF may be targeted by the genetic events that occur in the MTS locus in the majority of T-ALLs.

Adolescent↗

Influence of CD34 cell selection on the incidence of mixed chimaerism and minimal residual disease after allogeneic unrelated donor transplantation.

Marrow transplantation from unrelated donors has been linked with an increased risk of graft-versus-host disease (GVHD). In an attempt to lower the risk of acute GVHD we used CD34 marrow cell selection for T cell depletion. Since T cell depletion has been linked to an increased risk of relapse and an increased risk of marrow failure, we used PCR amplification of minisatellite sequences to investigate donor cell engraftment and RT-PCR amplification of recurrent chromosomal translocations to investigate the residual disease post-transplant. Twenty-three patients who underwent BMT after positive selection of the CD34-positive cell population were studied. Results were then compared with those of 37 patients who underwent transplantation with unmanipulated marrow graft. Among the 23 patients who received CD34+ selected cell grafts, seven (30%) had evidence of full donor engraftment, 14 had evidence of residual recipient cells (61%), one had a non-take, and one autologous bone marrow recovery. Analysis of the chimaerism status post-transplant in 36 patients who received unmanipulated marrow grafts showed that 31 patients (86%) had evidence of full donor engraftment. The difference in the incidence of mixed chimaerism profile between patients who received unmanipulated marrow graft and those receiving CD34+ selected cell grafts was statistically significant (P< 0.01). Nine patients who received CD34+ selected cell grafts could be analysed for the presence of minimal residual disease post-transplant (one with t(9;22) acute lymphoblastic leukaemia and eight with CML). In the patient transplanted for a Ph-positive acute leukaemia, and in two out of the eight patients with CML, the search fora fusion transcript was consistently negative after transplantation. Among the six patients with evidence of residual disease, three patients also had a mixed chimaerism profile and were given donor lymphocyte infusions. Minimal residual disease study was performed post-transplant in 16 patients who received unmanipulated marrow grafts. In 10 of 14 patients with CML, and in two patients with acute leukaemia the search for a fusion transcript was consistently negative after transplantation. The difference in the incidence of minimal residual disease between patients who received an unmanipulated marrow graft and those receiving CD34+ selected cell grafts was not statistically significantly significant, but numbers of patients included in this analysis are still few. In conclusion, our study highlights the strong influence of graft manipulation on the incidence of mixed chimaerism after transplantation from an unrelated donor.

Adolescent↗