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Biomedical subjects

D Metzger

Publications and source records attributed to D Metzger.

At least 55 records · Page 3Linked to original sources

Spatio-temporally controlled site-specific somatic mutagenesis in the mouse.

The efficient introduction of somatic mutations in a given gene, at a given time, in a specific cell type will facilitate studies of gene function and the generation of animal models for human diseases. We have shown previously that conditional recombination-excision between two loxP sites can be achieved in mice by using the Cre recombinase fused to a mutated ligand binding domain of the human estrogen receptor (Cre-ERT), which binds tamoxifen but not estrogens. DNA excision was induced in a number of tissues after administration of tamoxifen to transgenic mice expressing Cre-ERT under the control of the cytomegalovirus promoter. However, the efficiency of excision varied between tissues, and the highest level ( approximately 40%) was obtained in the skin. To determine the efficiency of excision mediated by Cre-ERT in a given cell type, we have now crossed Cre-ERT-expressing mice with reporter mice in which expression of Escherichia coli beta-galactosidase can be induced through Cre-mediated recombination. The efficiency and kinetics of this recombination were analyzed at the cellular level in the epidermis of 6- to 8-week-old double transgenic mice. We show that site-specific excision occurred within a few days of tamoxifen treatment in essentially all epidermis cells expressing Cre-ERT. These results indicate that cell-specific expression of Cre-ERT in transgenic mice can be used for efficient tamoxifen-dependent, Cre-mediated recombination at loci containing loxP sites to generate site-specific somatic mutations in a spatio-temporally controlled manner.

Animals↗

Action of a metabotropic glutamate receptor agonist in rat lateral septum: induction of a sodium-dependent inward aftercurrent.

The mechanism by which (1S,3R)-ACPD, a metabotropic glutamate receptor agonist, induces burst firing in lateral septal neurons of the rat was investigated in coronal brainstem slices. Membrane currents were characterized in voltage clamp using whole-cell recordings. In the presence of (1S,3R)-ACPD, following depolarizing voltage jumps, repolarization towards the holding potential generated an inward aftercurrent. It could have a plateau-like phase and decayed exponentially. This (1S,3R)-ACPD-dependent inward aftercurrent was accompanied by an increase in cell conductance and was reduced following partial replacement of extracellular sodium by N-methyl-D-glucamine. It was unaffected by TEA or barium, and persisted in Cs-loaded neurons or following partial replacement of extracellular chloride by isethionate. This suggests that it was mainly carried by sodium. Loading neurons with the calcium chelator, BAPTA, or blocking transmembrane calcium currents, suppressed the (1S,3R)-ACPD-dependent aftercurrent. By contrast, partial replacement of extracellular sodium by lithium did not affect it. Thus, this current was dependent upon calcium influx but was not due to a sodium/calcium exchanger. It was probably mediated by G protein activation. Indeed, in neurons loaded with GTP-gamma-S, following depolarizing voltage jumps, repolarization towards the holding potential revealed an inward aftercurrent having properties similar to those of the (1S,3R)-ACPD-dependent current. We suggest that (1S,3R)-ACPD induced calcium-activated non-selective channels. In the presence of this agonist, a depolarization-evoked calcium influx could thus evoke a cationic inward current. This current probably promotes the burst firing observed in lateral septal neurons in current clamp.

Age Factors↗

Specific and redundant functions of retinoid X Receptor/Retinoic acid receptor heterodimers in differentiation, proliferation, and apoptosis of F9 embryonal carcinoma cells.

We have generated F9 murine embryonal carcinoma cells in which either the retinoid X receptor (RXR)alpha and retinoic acid receptor (RAR)alpha genes or the RXRalpha and RARgamma genes are knocked out, and compared their phenotypes with those of wild-type (WT), RXRalpha-/-, RARalpha-/-, and RARgamma-/- cells. RXRalpha-/-/ RARalpha-/- cells were resistant to retinoic acid treatment for the induction of primitive and parietal endodermal differentiation, as well as for antiproliferative and apoptotic responses, whereas they could differentiate into visceral endodermlike cells, as previously observed for RXRalpha-/- cells. In contrast, RXRalpha-/-/RARgamma-/- cells were defective for all three types of differentiation, as well as antiproliferative and apoptotic responses, indicating that RXRalpha and RARgamma represent an essential receptor pair for these responses. Taken together with results obtained by treatment of WT and mutant F9 cells with RAR isotype- and panRXR-selective retinoids, our observations support the conclusion that RXR/ RAR heterodimers are the functional units mediating the retinoid signal in vivo. Our results also indicate that the various heterodimers can exert both specific and redundant functions in differentiation, proliferation, and apoptosis. We also show that the functional redundancy exhibited between RXR isotypes and between RAR isotypes in cellular processes can be artifactually generated by gene knockouts. The present approach for multiple gene targeting should allow inactivation of any set of genes in a given cell.

Animals↗

Regulation of Cre recombinase activity by mutated estrogen receptor ligand-binding domains.

Ligand-dependent chimeric Cre recombinases are powerful tools to induce specific DNA rearrangements in cultured cells and in mice. We report here the construction and characterization of a series of chimeric recombinases, each consisting of Cre fused to a mutated human oestrogen receptor (ER) ligand-binding domain (LBD). Two new ligand-dependent recombinases which contain either the G400V/M543A/L544A or the G400V/L539A/L540A triple mutation of the human ER LBD are efficiently induced by the synthetic ER antagonists 4-hydroxytamoxifen (OHT) and ICI 182,780 (ICI), respectively, but are insensitive to 17 beta-oestradiol (E2). Both chimeric recombinases should be useful for efficient spatio-temporally controlled site-directed somatic mutagenesis.

Amino Acid Sequence↗

Validity of three measures of antisociality in predicting HIV risk behaviors in methadone-maintenance patients.

Most opiate users are injection drug users (IDUs). A significant percentage of IDUs have antisocial personality disorder (APD). APD has been found by some researchers to be an additional risk factor for human immunodeficiency virus (HIV) infection in IDUs. The present study evaluated the association of sociodemographic characteristics, substance abuse history, and several measures of antisociality including the DSM-III-R diagnosis made by the Personality Disorder Examination, the California Psychological Inventory-Socialization Scale, and Hare's Revised Psychopathy Checklist, to behaviors associated with HIV risk in 289 opiate-dependent methadone-maintained subjects. The presence of drug- and sex-related risky behaviors measured by the Risk Assessment Battery was predicted more consistently by measures of personality traits associated with antisociality than by a diagnosis of APD.

Adult↗

SNF2beta-BRG1 is essential for the viability of F9 murine embryonal carcinoma cells.

The yeast and animal SNF-SWI and related multiprotein complexes are thought to play an important role in processes, such as transcription factor binding to regulatory elements, which require nucleosome remodeling in order to relieve the repressing effect of packaging DNA in chromatin. There are two mammalian homologs of the yeast SNF2-SWI2 subunit protein, SNF2alpha-brm and SNF2beta-BRG1, and overexpression of either one of them has been shown to enhance transcriptional activation by glucocorticoid, estrogen, and retinoic acid (RA) receptors in transiently transfected cells. We have investigated here the function of SNF2beta-BRG1 in the RA receptor-retinoid X receptor-mediated transduction of the retinoid signal in F9 embryonal carcinoma (EC) cells which differentiate into endodermal-like cells upon RA treatment. The two SNF2beta-BRG1 alleles have been targeted by homologous recombination and subsequently disrupted by using a conditional Cre recombinase. We show that F9 EC cells inactivated on both SNF2beta alleles are not viable and that heterozygous mutant cells are affected in proliferation but not in RA-induced differentiation. Thus, in F9 EC cells, SNF2beta-BRG1 appears to play an essential role in basal processes involved in cell proliferation, in addition to its putative role in the activation of transcription mediated by nuclear receptors.

Alleles↗

Distinct retinoid X receptor-retinoic acid receptor heterodimers are differentially involved in the control of expression of retinoid target genes in F9 embryonal carcinoma cells.

The F9 murine embryonal carcinoma cell line represents a well-established system for the study of retinoid signaling in vivo. We have investigated the functional specificity of different retinoid X receptor (RXR)-retinoic acid (RA) receptor (RAR) isotype pairs for the control of expression of endogenous RA-responsive genes, by using wild-type (WT), RXR alpha(-/-), RAR alpha(-/-), RAR gamma(-/-), RXR alpha(-/-)-RAR alpha(-/-), and RXR alpha(-/-)-RAR gamma(-/-) F9 cells, as well as panRXR and RAR isotype (alpha, beta, and gamma)-selective retinoids. We show that in these cells the control of expression of different sets of RA-responsive genes is preferentially mediated by distinct RXR-RAR isotype combinations. Our data support the conclusion that RXR-RAR heterodimers are the functional units transducing the retinoid signal and indicate in addition that these heterodimers exert both specific and redundant functions on the expression of particular sets of RA-responsive genes. We also show that the presence of a given receptor isotype can hinder the activity of another isotype and therefore that functional redundancy between retinoid receptor isotypes can be artifactually generated by gene knockouts.

Adaptor Proteins, Signal Transducing↗

Psychiatric symptoms, risky behavior, and HIV infection.

These data are internally consistent and lead to several conclusions, as follows: Elevated levels of psychiatric symptoms were found among IDUs in methadone treatment as compared to their counterparts who were out of treatment. IVDUs who entered treatment had higher symptom levels than those who did not enter treatment. Higher symptom levels were found among injectors than noninjectors, and needle sharers had especially high psychiatric symptom levels. Higher symptom levels were found among those who seroconverted in the 6 months following notification, but not thereafter. Symptom levels did not distinguish between HIV-positive and HIV-negative individuals 24 months following notification of seropositivity. Taken together, these findings indicate that elevated psychiatric symptoms are risk factors for continued high risk behavior, as well as for seroconversion. The data add to those of Brooner and colleagues (1993), who demonstrated that ASPD serves as a risk factor for HIV infection. The fact that antisocial personality disorder and psychiatric severity are associated with risky behavior and with actual HIV infection further expands earlier findings showing that these two factors are associated with poorer treatment outcome. Other axis II disorders (e.g., borderline or narcissistic), as well as other axis I disorders with high symptom levels that were not well represented in these studies (schizophrenia, manic depressive illness), may also show similar elevated rates of risky behavior and seroconversion, although there is a scarcity of data currently available to assess the risk behavior of these patients. The evidence from treatment studies that psychiatrically focused therapies, when combined with substance abuse treatment, can improve overall outcome for patients with clinically significant levels of psychiatric symptoms may be relevant in the design of future risk reduction efforts. That is, these treatment outcome studies may serve as a starting point for exploring the feasibility and efficacy of using psychiatrically focused treatment to reduce risky behavior and HIV infection among psychiatrically symptomatic IDUs.

Antisocial Personality Disorder↗

Evaluation of a video-supplement to informed consent: injection drug users and preventive HIV vaccine efficacy trials.

We evaluate the impact of a videotape specially produced to supplement written information about preventive HIV vaccine trials. One hundred eighty-six injection drug users were randomly assigned to an education session in which either: (a) a pamphlet was reviewed before a brief discussion period or (b) the videotape was watched prior to reviewing the pamphlet and participating in the discussion. The relationship among retention of information, trust in government, and willingness to participate in a vaccine trial was tested before the presentation of information, immediately after, and 1 month later. Results indicate that both methods produced significant increases in knowledge immediately after information presentation, but only the video-supplemented group retained the information 1 month later. Subjects receiving the video supplement also showed a significant increase in trust at the first posttest period, but this increase was not maintained 1 month later. Regardless of group assignment or evaluation point, willingness to participate was not associated with knowledge but was associated with trust in government.

AIDS Vaccines↗

Ligand-activated site-specific recombination in mice.

Current mouse gene targeting technology is unable to introduce somatic mutations at a chosen time and/or in a given tissue. We report here that conditional site-specific recombination can be achieved in mice using a new version of the Cre/lox system. The Cre recombinase has been fused to a mutated ligand-binding domain of the human estrogen receptor (ER) resulting in a tamoxifen-dependent Cre recombinase, Cre-ERT, which is activated by tamoxifen, but not by estradiol. Transgenic mice were generated expressing Cre-ERT under the control of a cytomegalovirus promoter. We show that excision of a chromosomally integrated gene flanked by loxP sites can be induced by administration of tamoxifen to these transgenic mice, whereas no excision could be detected in untreated animals. This conditional site-specific recombination system should allow the analysis of knockout phenotypes that cannot be addressed by conventional gene targeting.

Animals↗

RXRalpha-null F9 embryonal carcinoma cells are resistant to the differentiation, anti-proliferative and apoptotic effects of retinoids.

The F9 murine embryonal carcinoma (EC) cell line, a well established model system for the study of retinoic acid (RA)-induced differentiation, differentiates into cells resembling three types of extra-embryonic endoderm (primitive, parietal and visceral), depending on the culture conditions and RA concentration used. A number of previously identified genes are differentially expressed during this process and serve as markers for the different endodermal cell types. Differentiation is also accompanied by a decreased rate of proliferation and an apoptotic response. Using homologous recombination, we have disrupted both alleles of the retinoid X receptor (RXR) alpha gene in F9 cells to investigate its role in mediating these responses. The loss of RXRalpha expression impaired the morphological differentiation of F9 EC cells into primitive and parietal endoderm, but has little effect on visceral endodermal differentiation. Concomitantly the inducibility of most primitive and parietal endoderm differentiation-specific genes was impaired, while several genes upregulated during visceral endodermal differentiation were induced normally. We also demonstrate that RXRalpha is required for both the anti-proliferative and apoptotic responses in RA-treated F9 cells. Additionally, we provide further evidence that retinoic acid receptor (RAR)-RXR heterodimers are the functional units transducing the effects of retinoids in F9 cells.

Animals↗

Evaluating the effectiveness of addiction treatments: reasonable expectations, appropriate comparisons.

Problems of alcohol and drug dependence are costly to society in terms of lost productivity, social disorder, and avoidable health care utilization. The dollar costs of alcohol and drug use run into billions of dollars, and from one-eighth to one-sixth of all deaths can be traced to this source. However, the efficacy of treatment for addiction is often questioned. A rationale for reasonable expectations of addiction treatments is offered, from which are derived three outcome criteria for judging the effectiveness of treatments: reduction in substance use; improvement in personal health and social function; and reduction in public health and safety risks. Based on these criteria, treatment was shown to be effective, especially when compared with alternatives like no treatment or incarceration. These evaluations, which were conducted in a scientific manner, support the continued value of public spending for carefully monitored treatment of addiction.

Attitude to Health↗

Activation of the estrogen receptor through phosphorylation by mitogen-activated protein kinase.

The phosphorylation of the human estrogen receptor (ER) serine residue at position 118 is required for full activity of the ER activation function 1 (AF-1). This Ser118 is phosphorylated by mitogen-activated protein kinase (MAPK) in vitro and in cells treated with epidermal growth factor (EGF) and insulin-like growth factor (IGF) in vivo. Overexpression of MAPK kinase (MAPKK) or of the guanine nucleotide binding protein Ras, both of which activate MAPK, enhanced estrogen-induced and antiestrogen (tamoxifen)-induced transcriptional activity of wild-type ER, but not that of a mutant ER with an alanine in place of Ser118. Thus, the activity of the amino-terminal AF-1 of the ER is modulated by the phosphorylation of Ser118 through the Ras-MAPK cascade of the growth factor signaling pathways.

Amino Acid Sequence↗

Conditional site-specific recombination in mammalian cells using a ligand-dependent chimeric Cre recombinase.

We have developed a strategy to generate mutant genes in mammalian cells in a conditional manner by employing a fusion protein, Cre-ER, consisting of the loxP site-specific Cre recombinase linked to the ligand-binding domain of the human estrogen receptor. We have established homozygous retinoid X receptor alpha-negative (RXR alpha-/-) F9 embryonal carcinoma cells constitutively expressing Cre-ER and have shown that estradiol or the estrogen agonist/antagonist 4-hydroxytamoxifen efficiently induced the recombinase activity, whereas no activity was detected in the absence of ligand or in the presence of the antiestrogen ICI 164,384. Furthermore, using a targeting vector containing a selection marker flanked by loxP sites, we have inactivated one retinoic acid receptor alpha allele in such a line, demonstrating that the presence of the recombinase does not inhibit homologous recombination. Combining this conditional site-specific recombination system with tissue-specific expression of Cre-ER may allow modification of the mammalian genome in vivo in a spatiotemporally regulated manner.

DNA Nucleotidyltransferases↗

[Early and late results of the surgical treatment of left ventricular aneurysms; report of 105 patients].

This study determined perioperative mortality and morbidity and attempted to identify predictors of operative mortality and long-term outcome in a series of 105 patients who underwent surgery for left ventricular aneurysm at this institution during a 7-year period. The main indications for treatment of ventricular aneurysm were angina, dyspnea, ventricular arrhythmias and systemic embolism. Overall mortality was 5.7% and 5-year survival 78%. Left ventricular systolic function, age, unstable angina and previous cardiac surgery were independent predictors of operative mortality and of long-term survival. Main complications observed were perioperative myocardial infarction, ventricular tachyarrhythmias and neurological, almost reversible defects. Although our experience with newer techniques such as patch plasty has been acquired in recent years, according to the literature the type of aneurysm repair seems not to be a strong predicator of operative mortality or improved long-term survival. Echocardiography provides important information concerning the extent of tissue resection needed and the ideal size of the patch. In patients with symptomatic coronary disease, complete revascularization should be attempted to allow recovery of adjacent myocardium after restoration of ventricular geometry. Repair of left ventricular aneurysm can be performed with acceptably low mortality by linear closure or by patch plasty technique. Remodelling the left ventricle using an endocardial patch has been found to fulfill its theoretical advantages in improving ventricular performance, by restoring the functional geometry of the heart. This operation can be performed with low perioperative risk and leads to a late functional improvement in the majority of patients.

Aged↗

Characterization of the amino-terminal transcriptional activation function of the human estrogen receptor in animal and yeast cells.

We have previously reported that the transcriptional activation function AF-1, located in the A/B region of the human estrogen receptor, exhibits cell-type and promoter context specificity in both animal cells and yeast. To further characterize AF-1, we have constructed a number of deletion mutants spanning the A/B region in the context of either the whole human estrogen receptor or the A/B region linked to the GAL4 DNA binding domain, and tested their transcriptional activity in chicken embryo fibroblasts and in yeast cells, two cell types in which AF-1 efficiently activates transcription on its own. Additionally, we utilized HeLa cells in which AF-1 is poorly active but can synergize with the transcriptional activation function AF-2 located in the hormone binding domain. We show that in animal cells the "independent" activity of AF-1 is embodied in a rather hydrophobic proline-rich 99-amino acid activating domain (amino acids 51-149), whereas amino acids 51-93 and 102-149 can independently synergize with AF-2. Interestingly, in yeast, three discrete activating domains (amino acids 1-62, 80-113, and 118-149) are almost as active on their own as the whole A/B region, indicating that multiple activating domains can operate independently in yeast. Our study also demonstrates that, within the context of the whole human estrogen receptor, the same AF-1 activating domains are "induced" by either estradiol or 4-hydroxytamoxifen.

Animals↗

Effect of antagonists on DNA binding properties of the human estrogen receptor in vitro and in vivo.

Functional analyses, performed with the estrogen receptor (ER) isolated from different sources or produced with various expression systems, led to contradictory results concerning the role of estrogen (E2) and antiestrogens in ER DNA binding. Here we report the DNA-binding properties of the human ER and show that the wild type ER (HEG0) binds in vitro to an estrogen response element (ERE) as a dimer, irrespective of the presence or absence of estrogen. We also show that the two antihormones, 4-hydroxytamoxifen (OHT, a partial ER agonist) and ICI 164,384 (a pure antagonist) do not impair HEG0 dimerization and DNA binding in vitro. Exposure of HEG0 to elevated temperature (37 C) in vitro results in a much faster reduction of its binding capacity to an ERE in the absence of ligand or in the presence of ICI 164,384 than in the presence of either E2 or OHT. The Gly to Val mutation at amino acid 400 present in the human ER that we initially cloned (HE0), is responsible for an even faster heat inactivation of unliganded receptor compared with HEG0 and largely accounts for the previously observed in vitro ligand-dependent DNA binding of ER. We also show that, as previously observed for OHT, ICI 164,384 does not prevent ER binding to an ERE in vivo, even though ICI 164,384 acts as a pure antagonist for transcriptional activation by ER. We discuss these results in the context of a ligand-dependent interaction between the C-terminal region E, which contains the ligand-binding domain, and the N-terminal A/B region, which contains the activation function AF-1.

Animals↗