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Biomedical subjects

J Drouin

Publications and source records attributed to J Drouin.

At least 19 recordsLinked to original sources

Opposite ability of pre-TCR and alpha beta TCR to induce apoptosis.

In early CD4(-)CD8(-) pro-thymocytes, signaling through the pre-TCR is crucial for survival and differentiation into CD4(+)CD8(+) cells. At this more mature stage, interactions between alphabetaTCR and self-Ag/MHC complexes in turn lead either to cell survival and differentiation (positive selection) or to cell death (negative selection). Intrinsic differences must therefore exist between pre-TCR signals in CD4(-)CD8(-) thymocytes and alphabetaTCR signals in CD4(+)CD8(+) cells, since only the latter can mediate a death signal. In this work, we directly compared the capability of pre-TCR and alphabetaTCR to induce apoptosis in a CD4(-)CD8(-) thymoma cell line following receptor cross-linking with mAbs. Cross-linking of alphabetaTCR triggered high levels of programmed cell death, mimicking the negative selection signal usually induced in CD4(+)CD8(+) thymocytes. In contrast, pre-TCR was very inefficient at inducing apoptosis upon cross-linking, despite similar levels of surface receptor expression. Importantly, inefficient apoptosis induction by the pre-TCR did not result from its weak association with TCRzeta chain, since TCRs containing alpha-pTalpha chimeric chains, binding weakly to TCRzeta, were still able to induce apoptosis. Although similar tyrosine phosphorylation and calcium influx were induced after either pre-TCR or alphabetaTCR cross-linking, the two pathways diverged at the level of Fas ligand induction. Among putative transcription factors involved in Fas ligand mRNA induction, Nur77 and NFAT transcriptional activities were readily induced after alphabetaTCR, but not pre-TCR, stimulation. Together, these results support the view that the structure of the pre-TCR and alphabetaTCR directly influences their apoptosis-inducing capabilities by activating distinct signaling pathways.

Animals↗

A pituitary cell-restricted T box factor, Tpit, activates POMC transcription in cooperation with Pitx homeoproteins.

The pituitary gland has provided unique insight into molecular mechanisms and regulatory factors controlling both differentiation and gene transcription. We identified Tpit, a novel T box factor only present in the two pituitary POMC-expressing lineages, the corticotrophs and melanotrophs, and apparently in no other tissue, including hypothalamic POMC neurons. In pituitary cells, Tpit activation of POMC gene transcription requires cooperation with Pitx1, the two factors binding to contiguous sites within the same regulatory element. In gain-of-function experiments, Tpit induces POMC expression in undifferentiated pituitary cells, indicating that it can initiate differentiation into POMC-expressing lineages. TPIT gene mutations were found in patients with isolated deficiency of pituitary POMC-derived ACTH, in support of an essential role of Tpit for differentiation of the pituitary POMC lineage.

Adrenocorticotropic Hormone↗

Characterization of a partial prostaglandin endoperoxide H synthase-1 deficiency in a patient with a bleeding disorder.

Thromboxane A2 (TXA2), synthesized in platelets, is a powerful aggregating agent and vasoconstrictor. To induce platelet aggregation, the platelets' enzyme, prostaglandin endoperoxide H synthase-1 (PGHS-1), first converts arachidonic acid (AA) into prostaglandin H2 (PGH2). PGH2 is then converted by the enzyme thromboxane synthase into TXA2. Finally, TXA2 is secreted and can activate the TXA2 receptor on the platelet surface. The importance of TXA2 in haemostasis has been demonstrated by the presence of a bleeding tendency in patients showing an inherited defect in the TXA2 production pathway. We studied an 18-year-old woman with a lifelong bleeding disorder, moderate thrombocytopenia (55-71 x 109/l) and a prolonged bleeding time (12.5 min). Her platelets aggregated in the presence of both PGH2 and a stable TXA2 analogue, but did not aggregate in the presence of AA. The activity of PGHS-1 in platelets, measured using thin-layer chromatography and radioactive counting of TXA2 formation from [14C]-AA, was reduced to 13% of the activity measured in control subjects. PGHS-1 protein levels, measured using Western blot analysis, were also markedly reduced to 10% of control values. Such levels of PGHS-1 enzyme were too low to sustain platelet aggregation in the patient, even if the enzyme was active. The PGHS-1 protein level was also reduced in the patient's immortalized B lymphocytes, suggesting a systemic expression defect. Northern blot analysis was then carried out with poly (A)+ RNA extracted from the patient's immortalized B lymphocytes. PGHS-1 mRNA was detected as a 2.8-kb band in both the patient and control. The intensity of the band representing the patient's PGHS-1 mRNA was similar to that of the control subject. The Northern blot result suggests a normal transcriptional rate of the PGHS-1 gene for the patient. Therefore, the defect responsible for the reduced levels of PGHS-1 protein is probably post-transcriptional.

Adult↗

Pitx3 activates mouse tyrosine hydroxylase promoter via a high-affinity binding site.

Tyrosine hydroxylase (TH) is the rate-limiting enzyme of dopamine and (nor)adrenaline biosynthesis. Regulation of its gene expression is complex and different regulatory mechanisms appear to be operative in various neuronal lineages. Pitx3, a homeodomain-containing transcription factor, has been cloned from neuronal tissues and, in the CNS, mouse Pitx3 is exclusively expressed in midbrain dopaminergic (MesDA) neurons from embryonic day 11 (E11). TH appears in these neurons at E11.5, consistent with a putative role of Pitx3 in TH transcription. We show that Pitx3 activates the TH promoter through direct interaction with a single high-affinity binding site within the promoter and that this site is sufficient for Pitx3 responsiveness. In contrast, we did not observe an effect of Nurr1, an orphan nuclear receptor essential for normal development of MesDA neurons, on TH promoter activity. Pitx3 activation of TH promoter activity appears to be cell-dependent suggesting that Pitx3 action may be modulated by other(s) regulatory mechanism(s) and factor(s).

Amino Acid Substitution↗

A multinational evaluation of the efficacy, safety and acceptability of the Protectaid contraceptive sponge.

OBJECTIVE: The Protectaid sponge (Gefar Pharma, Switzerland) is a new feminine barrier contraceptive method containing three low-dose spermicidal agents. In order to evaluate its efficacy and safety profiles, an international, multicenter study has been conducted in four countries. METHODS: Healthy, presumably fertile and sexually active women were enrolled in this study and were followed at 15 days, 3, 6, 9 and 12 months. Contraceptive efficacy was assessed by a pregnancy test, while safety was evaluated by performing gynecological examinations as well as reporting adverse events. The 'acceptability' of the sponge by the women was assessed through a standard questionnaire. RESULTS: A total of 129 women were enrolled in the study, generating 1182 cycles of use of the sponge. The overall efficacy rate was 77%, with no significant influence of age or parity. Acceptability was high, with 85% of subjects being symptom- or problem-free while using the sponge. Finally, the safety profile was very good, with no clinically significant evidence of local or systemic adverse reactions. CONCLUSION: The new Protectaid sponge is a safe and effective non-hormonal contraceptive method for women.

Administration, Intravaginal↗

Specific protein-protein interaction between basic helix-loop-helix transcription factors and homeoproteins of the Pitx family.

Homeoproteins and basic helix-loop-helix (bHLH) transcription factors are known for their critical role in development and cellular differentiation. The pituitary pro-opiomelanocortin (POMC) gene is a target for factors of both families. Indeed, pituitary-specific transcription of POMC depends on the action of the homeodomain-containing transcription factor Pitx1 and of bHLH heterodimers containing NeuroD1. We now show lineage-restricted expression of NeuroD1 in pituitary corticotroph cells and a direct physical interaction between bHLH heterodimers and Pitx1 that results in transcriptional synergism. The interaction between the bHLH and homeodomains is restricted to ubiquitous (class A) bHLH and to the Pitx subfamily. Since bHLH heterodimers interact with Pitx factors through their ubiquitous moiety, this mechanism may be implicated in other developmental processes involving bHLH factors, such as neurogenesis and myogenesis.

Amino Acid Sequence↗

Repression of virus-induced interferon A promoters by homeodomain transcription factor Ptx1.

Interferon A (IFN-A) genes are differentially expressed after virus induction. The differential expression of individual IFN-A genes is modulated by substitutions in the proximal positive virus responsive element A (VRE-A) of their promoters and by the presence or absence of a distal negative regulatory element (DNRE). The functional feature of the DNRE is to specifically act by repression of VRE-A activity. With the use of the yeast one-hybrid system, we describe here the identification of a specific DNRE-binding protein, the pituitary homeobox 1 (Ptx1 or Pitx1). Ptx1 is detectable in different cell types that differentially express IFN-A genes, and the endogenous Ptx1 protein binds specifically to the DNRE. Upon virus induction, Ptx1 negatively regulates the transcription of DNRE-containing IFN-A promoters, and the C-terminal region, as well as the homeodomain of the Ptx1 protein, is required for this repression. After virus induction, the expression of the Ptx1 antisense RNA leads to a significant increase of endogenous IFN-A gene transcription and is able to modify the pattern of differential expression of individual IFN-A genes. These studies suggest that Ptx1 contributes to the differential transcriptional strength of the promoters of different IFN-A genes and that these genes may provide new targets for transcriptional regulation by a homeodomain transcription factor.

Animals↗

Transcriptional properties of Ptx1 and Ptx2 isoforms.

The Ptx (Pitx) family of homeobox transcription factors comprises Ptx1, Ptx2 and Ptx3. Ptx1 and Ptx2 are expressed in the stomodeum and its derivatives including the pituitary, as well as in mesodermal derivatives, whereas Ptx3 is expressed in one neuronal lineage of the brain and in the eyes. A large set of downstream target genes have been identified for Ptx1 in the pituitary gland where it acts as a pan-pituitary regulator of transcription. In particular, Ptx1 contributes to promoter- and lineage-specific transcription by interaction with cell-restricted factors such as SF-1, Egr-1, Pit1, and the basic helix-loop-helix heterodimer NeuroD1/Pan1. We describe the cloning from pituitary cells and the characterization of a Ptx1 isoform, named Ptx1b, generated by alternative promoter usage. The two Ptx1 and two Ptx2 isoforms have similar in vitro DNA binding specificities and they all activate transcription driven by a panel of pituitary promoters, including those for proopiomelanocortin, alphaGSU, LHbeta, FSHbeta, GnRH-R, TSHbeta, PRL, and GH. Also like Ptx1, the Ptx1b, Ptx2a, and Ptx2b transcription factors synergize with the structurally unrelated factors SF-1, Egr-1, Pit1, and NeuroD1/Pan1 to activate promoter-specific transcription. In conclusion, the pituitary transcriptional activities of the four Ptx isoforms do not appear to be dependent on the variant N-termini of these factors.

Amino Acid Sequence↗

Ptx1 regulates SF-1 activity by an interaction that mimics the role of the ligand-binding domain.

Ptx1 (Pitx1) is a bicoid-related homeobox transcription factor expressed from the onset of pituitary development. It was shown to cooperate with cell-restricted factors, such as Pit1, NeuroD1/PanI and steroidogenic factor 1 (SF-1), to establish a combinatorial code conferring lineage- and promoter-specific gene transcription in the pituitary. Transcriptional synergism between Ptx1 and SF-1 on two SF-1 target genes, pituitary luteinizing hormone beta and Müllerian-inhibiting substance (MIS), requires SF-1 binding to DNA and appears to result from direct physical interaction between these two proteins. The interaction between the C-terminus of Ptx1 and the N-terminal half of SF-1 results in transcriptional enhancement that equals the activity of a constitutively active SF-1 mutant and that may mimic the effect of a still unidentified SF-1 ligand. Thus, the unmasking of SF-1 activity by Ptx1 may represent a developmental mechanism to alleviate the need for SF-1 ligand in transcription and, possibly, at critical times during organogenesis.

Animals↗

Burch colposuspension: long-term results and review of published reports.

OBJECTIVES: To review our long-term results with the Burch colpocystourethropexy, compare our results with those in recently published reports, and define factors that may influence the long-term outcome of this procedure. METHODS: A group of 79 patients who underwent Burch colposuspension as modified by Tanagho between January 1985 and January 1991 were studied retrospectively. Preoperative investigation consisted of clinical history, physical examination, cystourethroscopy, multichannel urodynamic evaluation, including pressure-flow studies, and static and dynamic urethral pressure profile analysis. A postal survey was sent to all patients to evaluate their symptoms and the impact on their quality of life. RESULTS: The mean follow-up was 7.6 years (range 5.3 to 10.8). Forty-four percent of patients were considered cured (responders), 25% significantly improved (partial responders), and 31% failures (nonresponders). The success rate was higher among patients who had not undergone previous continence surgery (75%) or hysterectomy (78%) than among those who had previously undergone continence surgery (59%) or hysterectomy (65%). Seventy-five percent of the patients were responders or partial responders if the bladder was stable preoperatively, as opposed to 70% when the bladder was unstable before surgery. Analysis of the postal questionnaire indicated a statistically significant difference in terms of irritative symptoms between the responder and partial responder groups combined and the nonresponder group. CONCLUSIONS: More than two thirds (69.6%) of our patients who underwent a Burch-Tanagho colpocystourethropexy had a favorable long-term outcome (mean 7.6 years). Previously failed continence procedures, unstable bladder preoperatively, and previous or concomitant hysterectomy had a negative influence on the final outcome in the long term from the clinical point of view, even if, statistically, the difference was not significant. The incidence of irritative symptoms and nocturia were significantly higher among nonresponders than among responders and partial responders. More attention paid to these symptoms during the post-operative follow-up should increase the perception of success by the patient after retropubic colpocystourethropexy.

Adult↗

Neuroendocrine dysplasia in mice lacking protein tyrosine phosphatase sigma.

Protein tyrosine phosphatase sigma (PTP-sigma, encoded by the Ptprs gene) is a member of the LAR subfamily of receptor-like protein tyrosine phosphatases that is highly expressed during mammalian embryonic development in the germinal cell layer lining the lateral ventricles of the developing brain, dorsal root ganglia, Rathke's pouch, olfactory epithelium, retina and developing lung and heart. On the basis of its expression and homology with the Drosophila melanogasterorthologues DPTP99 and DPTP100A (refs 5,6), which have roles in the targeting of axonal growth cones, we hypothesized that PTP-sigma may also have a modulating function in cell-cell interactions, as well as in axon guidance during mammalian embryogenesis. To investigate its function in vivo, we generated Ptprs-deficient mice. The resulting Ptprs-/-animals display retarded growth, increased neonatal mortality, hyposmia and hypofecundity. Anatomical and histological analyses showed a decrease in overall brain size with a severe depletion of luteinizing hormone-releasing hormone (LHRH)-immunoreactive cells in Ptprs-/- hypothalamus. Ptprs-/- mice have an enlarged intermediate pituitary lobe, but smaller anterior and posterior lobes. These results suggest that tyrosine phosphorylation-dependent signalling pathways regulated by PTP-sigma influence the proliferation and/or adhesiveness of various cell types in the developing hypothalamo-pituitary axis.

Animals↗

Heterodimerization between members of the Nur subfamily of orphan nuclear receptors as a novel mechanism for gene activation.

We have recently shown that the orphan nuclear receptor Nur77 (NGFI-B) is most active in transcription when it is interacting with a cognate DNA sequence as a homodimer. Further, we have shown that the target for Nur77 dimers, the Nur response element (NurRE), is responsive to physiological stimuli in both endocrine and lymphoid cells, whereas other DNA targets of Nur77 action are not. The Nur77 subfamily also includes two related receptors, Nur-related factor 1 (Nurr1) and neuron-derived orphan receptor 1 (NOR-1). Often, more than one member of this subfamily is induced in response to extracellular signals. We now show that Nur77 and Nurr1 form heterodimers in vitro in the presence or absence of NurRE, and we have documented interactions between these proteins in vivo by using a two-hybrid system in mammalian cells. These heterodimers synergistically enhance transcription from NurRE reporters in comparison to that seen with homodimers. The naturally occurring NurRE from the pro-opiomelanocortin gene preferentially binds and activates transcription in the presence of Nur77 homo- or heterodimers, while a consensus NurRE sequence does not show this preference. Taken together, the data indicate that members of the Nur77 subfamily are most potent as heterodimers and that different dimers exhibit target sequence preference. Thus, we propose that a combinatorial code relying on specific NurRE sequences might be responsible for the activation of subsets of target genes by one of the members of the Nur77 subfamily of transcription factors.

Corticotropin-Releasing Hormone↗

Egr-1 is a downstream effector of GnRH and synergizes by direct interaction with Ptx1 and SF-1 to enhance luteinizing hormone beta gene transcription.

Pituitary gonadotropins are critical regulators of gonadal development and function. Expression and secretion of the mature hormones are regulated by gonadotropin-releasing hormone (GnRH), which is itself secreted from the hypothalamus. GnRH stimulation of gonadotropin expression and secretion occurs through the G-protein-linked phospholipase C/inositol triphosphate intracellular signaling pathway, which ultimately leads to protein kinase C (PKC) activation and increased intracellular calcium levels. Transcription factors mediating the effects of GnRH-induced signals on transcription of gonadotropin genes have not yet been identified. Recent studies have identified key factors involved in luteinizing hormone beta (LHbeta) gonadotropin gene transcription: the nuclear receptor SF-1, the bicoid-related homeoprotein Ptx1 (Pitx1), and the immediate-early Egr-1 gene. We now show that GnRH is a potent stimulator of Egr-1, but not Ptx1 or SF-1, expression. Further, Egr-1 activation of the LHbeta promoter is specifically enhanced by PKC, in agreement with a role for Egr-1 in mediating a GnRH effect on transcription. Egr-1 interacts directly with Ptx1 and with SF-1, leading to an enhancement of Ptx1- and SF-1-induced LHbeta transcription. Thus, Egr-1 is a likely transcriptional mediator of GnRH-induced signals for activation of the LHbeta gene.

Amino Acid Sequence↗

Pituitary homeobox 1 (Ptx1) is differentially expressed during pituitary development.

Pituitary homeobox 1 (Ptx1) is a homeodomain-containing transcription factor acting on transcription of all pituitary hormone genes. Its expression is first detected in the stomodeal ectoderm and is maintained in all derivatives of this structure, including Rathke's pouch. We now show that Ptx1 is expressed in all pituitary cells but that it is differentially expressed in different lineages at both the messenger RNA and protein levels. On day 12.5 of mouse embryonic development, cells expressing the highest levels of Ptx1 are restricted to the forming pars tuberalis, also called the rostral tip, a region where the first alpha-glycoprotein subunit-expressing cells appear. Coimmunolocalization studies reveal that alpha-glycoprotein subunit-positive cells express the highest levels of Ptx1 throughout development and in the adult gland. The quantitative differences in Ptx1 expression in pituitary cell lineages may relate to a role in cell proliferation, lineage commitment, and/or the control of organ development.

Animals↗

Hindlimb patterning and mandible development require the Ptx1 gene.

The restricted expression of the Ptx1 (Pitx1) gene in the posterior half of the lateral plate mesoderm has suggested that it may play a role in specification of posterior structures, in particular, specification of hindlimb identity. Ptx1 is also expressed in the most anterior ectoderm, the stomodeum, and in the first branchial arch. Ptx1 expression overlaps with that of Ptx2 in stomodeum and in posterior left lateral plate mesoderm. We now show that targeted inactivation of the mouse Ptx1 gene severely impairs hindlimb development: the ilium and knee cartilage are absent and the long bones are underdeveloped. Greater reduction of the right femur size in Ptx1 null mice suggests partial compensation by Ptx2 on the left side. The similarly sized tibia and fibula of mutant hindlimbs may be taken to resemble forelimb bones: however, the mutant limb buds appear to have retained their molecular identity as assessed by forelimb expression of Tbx5 and by hindlimb expression of Tbx4, even though Tbx4 expression is decreased in Ptx1 null mice. The hindlimb defects appear to be, at least partly, due to abnormal chondrogenesis. Since the most affected structures derive from the dorsal side of hindlimb buds, the data suggest that Ptx1 is responsible for patterning of these dorsal structures and that as such it may control development of hindlimb-specific features. Ptx1 inactivation also leads to loss of bones derived from the proximal part of the mandibular mesenchyme. The dual role of Ptx1 revealed by the gene knockout may reflect features of the mammalian jaw and hindlimbs that were acquired at a similar time during tetrapod evolution.

Animals↗

The PTX family of homeodomain transcription factors during pituitary developments.

A subfamily of bicoid-related homeodomain factors was recently discovered through its involvement in transcription of pituitary-specific genes. We isolated the first member of this family, Ptxl (pituitary homeobox 1), through its DNA binding properties whereas a second related gene, Ptx2 (RIEG), was identified by positional cloning as the causative gene for Rieger's syndrome. The mechanisms of Ptx action on its target genes as well as its putative roles during development are reviewed with particular emphasis on its role in pituitary function.

Animals↗

Novel mechanism of action for Nur77 and antagonism by glucocorticoids: a convergent mechanism for CRH activation and glucocorticoid repression of POMC gene transcription.

Whereas orphan nuclear receptors of the Nur77 (NGFI-B) subfamily were previously known to act on transcription as monomers or as heterodimers with RXR, we have recently shown that Nur77 homodimers potently activate transcription upon interaction with a novel palindromic response element, the NurRE. In fact, reporter plasmids containing the NurRE respond to physiological stimuli in conditions where the NBRE, a binding site for Nur77 monomers, does not. Nur77 and its related receptors were shown to be important mediators for control of apoptosis induced by the T-cell receptor, and they also mediate the effect of the hypothalamic hormone CRH on transcription of the pituitary pro-opiomelanocotin (POMC) gene. In both systems, glucocorticoids antagonize the stimulatory effects of Nur77 on transcription by a mechanism that involves protein:protein interactions. Thus, the Nur77 signalling pathway appears to be a point of convergence for stimulatory signals and glucocorticoid repression in both endocrine and lymphoid systems.

Corticotropin-Releasing Hormone↗