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Biomedical subjects

J Seufert

Publications and source records attributed to J Seufert.

30 records · Page 2Linked to original sources

Pancreatic beta-cell-specific repression of insulin gene transcription by CCAAT/enhancer-binding protein beta. Inhibitory interactions with basic helix-loop-helix transcription factor E47.

Chronic exposure of beta-cells to supraphysiologic glucose concentrations results in decreased insulin gene transcription. Here we identify the basic leucine zipper transcription factor, CCAAT/enhancer-binding protein beta (C/EBPbeta), as a repressor of insulin gene transcription in conditions of supraphysiological glucose levels. C/EBPbeta is expressed in primary rat islets. Moreover, after exposure to high glucose concentrations the beta-cell lines HIT-T15 and INS-1 express increased levels of C/EBPbeta. The rat insulin I gene promoter contains a consensus binding motif for C/EBPbeta (CEB box) that binds C/EBPbeta. In non-beta-cells C/EBPbeta stimulates the activity of the rat insulin I gene promoter through the CEB box. Paradoxically, in beta-cells C/EBPbeta inhibits transcription, directed by the promoter of the rat insulin I gene by direct protein-protein interaction with a heptad leucine repeat sequence within activation domain 2 of the basic helix-loop-helix transcription factor E47. This interaction leads to the inhibition of both dimerization and DNA binding of E47 to the E-elements of the insulin promoter, thereby reducing functionally the transactivation potential of E47 on insulin gene transcription. We suggest that the induction of C/EBPbeta in pancreatic beta-cells by chronically elevated glucose levels may contribute to the impaired insulin secretion in severe type II diabetes mellitus.

Animals↗

Parkinson's disease and depression: evidence for an alteration of the basal limbic system detected by transcranial sonography.

OBJECTIVES: Depression is a frequent symptom in Parkinson's disease. Compelling evidence suggests a role of the brainstem in the control of mood and cognition. In patients with unipolar depression transcranial sonography (TS) studies have shown structural alteration of the mesencephalic brainstem raphe which could suggest an involvement of the basal limbic system in the pathogenesis of primary mood disorders. The objective of the present study was to evaluate whether a similar alteration could be found in depressed patients with Parkinson's disease using TS. METHODS: Thirty patients with Parkinson's disease and 30 age and sex adjusted controls were examined by TS. Raphe echogenicity was rated semiquantitatively. The severity of motor symptoms and depression was rated using standard research instruments. RESULTS: Raphe echogenicity was significantly reduced in depressed patients with Parkinson's disease compared with nondepressed patients with Parkinson's disease and control subjects. Raphe echogenicity correlated negatively with degree of motor impairment, and differences in raphe echo between depressed and non-depressed patients with Parkinson's disease were upheld when motor impairment was controlled for. CONCLUSION: These preliminary findings suggest that, as in unipolar depression, a morphological alteration of the brainstem raphe might be involved in the pathogenesis of depression in Parkinson's disease. This raphe alteration may reflect involvement in the basal limbic system in the pathogenesis of secondary depression. This concept is in line with current knowledge on the pathogenesis of both depression in Parkinson's disease and primary depressive disorders.

Aged↗

Expression and regulation of aromatase cytochrome P450 in THP 1 human myeloid leukaemia cells.

Aromatase cytochrome P450 mRNA and activity was strongly expressed in THP 1 myeloid leukaemia cells after treatment with phorbol-myristate-acetate (PMA) and dexamethasone, low level expression was caused by calcitriol. mRNA species of 4.0, 3.0, 2.4 and 1.1 kb size were differentially stimulated. After calcitriol-mediated differentiation (72 h, measured by CD 14 expression) mRNA expression was further enhanced by PMA (45-fold), dexamethasone (15-fold), oestradiol (3.7-fold), testosterone (2.5-fold) and androstenedione (3.5-fold). Forskolin, cAMP and follicle stimulating hormone had no stimulatory effect. Oestradiol formation from testosterone (oestradiol radioimmunoassay in culture supernatants) increased to > 2000 pg/ml/10(6) cells/24 h after PMA-stimulation, mirrored mRNA expression and was suppressed below 10% of original values in the presence of 4-OH-androstenedione. Exons I.2 and I.4 were expressed in PMA-stimulated cells only, exon I.3 in both PMA- and dexamethasone-stimulated cells. A new splicing variant was expressed after calcitriol-stimulation, which did not hybridize to an exon II-derived oligonucleotide but to an exon III-derived one. Local aromatisation of androgens into oestradiol may be important in the concerted crosstalk of cells of the monocyte/macrophage lineage with their respective tissues in inflammation and bone metabolism.

Androstenedione↗

Degeneration of substantia nigra in chronic Parkinson's disease visualized by transcranial color-coded real-time sonography.

To detect morphologic abnormalities in Parkinson's disease (PD), we examined 30 patients with PD and 30 age- and sex-matched nonparkinsonian controls by transcranial color-coded real-time sonography (TCCS). In 12 severely affected PD patients, the echogenicity of the substantia nigra was distinctly increased. In the remaining 18 PD patients and in all controls, the substantia nigra was poorly visualized or nondetectable by TCCS. The degree of hyperechogenicity of the substantia nigra closely correlated with the severity and duration of PD (p < 0.001). The increased echogenicity of the substantia nigra notably results from nigral gliosis and reflects the stage of degeneration.

Aged↗

Topoisomerase I-inhibition enhances vitamin D-responsive expression of the receptor for lipopolysaccharide binding protein CD 14.

Pretreatment (4h) of human HL 60 leukemia cells with the topoisomerase I-inhibitor camptothecin (7-28 x 10(-9) Mol/l, single dose) enhanced vitamin D3-responsive CD 14 expression (10(-11)-10(-8) Mol/l vitamin D3) up to twofold, as measured by fluorescence activated flow cytometry after 1-3 days. Camptothecin by itself caused marginal effects. Hybridization of total RNA with oligonucleotides (bases 1358-1333 of CD 14 sequence) showed increased steady state levels of the 1.75 kb CD 14 mRNA after 24 h when normalized to beta-actin. The nuclear accumulation of [3H]-vitamin D3/receptor complexes (VDR) in a nuclear translocation assay was significantly enhanced (by 3 h) in the presence of camptothecin. We conclude that inhibition of topoisomerase I enhances vitamin D3-stimulated CD 14 expression. Topoisomerase I might either be a negatively active transcription factor itself or maintenance of DNA-bending, local supercoiling and accessibility of responsive elements might lead to reduction of VDR turnover and produce a stimulatory effect on vitamin D3-responsive transcription.

Acute-Phase Proteins↗

[Unilateral autonomous aldosterone production in hyperaldosteronism suppressible by dexamethasone].

A 21-year-old woman with weight loss, palpitations and facial flush was found to have hypertension (up to 200/130 mm Hg) and mild hyperkalaemia (3.4 mmol/l). Extensive diagnostic tests revealed hyperaldosteronism with contrast storing in the right adrenal gland on scintigraphy after injection of dexamethasone (2 mg daily for one week). The hyperaldosteronism could not be suppressed by dexamethasone. Analysis of venous blood separately from each side pointed to aldosterone production in the right adrenal (right renal vein: 80 ng/dl, drainage area of the right adrenal vein: 114 ng/dl, left renal vein: too low to measure). The right adrenal gland was removed. No adenoma was found histologically. After the operation the aldosterone level was reduced and the blood pressure transiently fell. But both had risen again after 3 months. Renewed tests revealed dexamethasone-remediable hyperaldosteronism. On treatment with hydrocortisone (15-5-5 mg) and 50 mg metoprolol the patient became normotensive without any other medication.

Adrenal Cortex Hormones↗

Fludarabine single-agent therapy for relapsed low-grade non-Hodgkin's lymphomas: a phase II study of the German Low-Grade Non-Hodgkin's Lymphoma Study Group.

In a phase II study, 45 patients with advanced low-grade non-Hodgkin's lymphomas (NHLs) who had failed on or had relapsed after first-line chemotherapy were treated with a 5-day regimen of fludarabine, 25 mg/m2/d, by a 30-minute infusion. All patients were pretreated and had received one to 11 preceding regimens (median, three regimens). Histologic subtypes included 17 centrocytic/centroblastic NHLs, three centrocytic NHLs, 23 lymphoplasmocytoid immunocytomas, and one case each of peripheral T-cell and lymphocytic lymphoma. From 38 presently evaluable patients, 12 (31%) cases responded (five [13%] complete and seven [18%] partial remissions). Treatment-associated toxicity was mild to moderate, with myelosuppression comprising the major side effect. From the 12 complete and partial response patients, seven are currently in unmaintained remission for more than 12 months. These data indicate a high activity of fludarabine in heavily pretreated patients with low-grade NHL. Further investigations are warranted to assess the most appropriate usage for this highly promising agent at earlier stages of low-grade NHL therapy.

Adult↗

Kinetics of nuclear translocation and turnover of the vitamin D receptor in human HL60 leukemia cells and peripheral blood lymphocytes--coincident rise of DNA-relaxing activity in nuclear extracts.

High affinity receptors (VDR) for 1,25-dihydroxycholecalciferol (calcitriol) are expressed in HL60 human leukemia cells and in low numbers in peripheral blood lymphocytes (PBL). HL60 cells, expressing some characteristics of promyelocytes, can be induced to monocytoid differentiation by calcitriol. Specific nuclear translocation of [3H]calcitriol/VDR was examined after exposure of whole cells to 10(-9) M/l calcitriol in the presence and absence of a 500-fold excess of unlabeled ligand and subsequent isolation of nuclei. Specific nuclear translocation of [3H]calcitriol/VDR was found to be time dependent reaching a maximum of approximately 2100 binding sites/nucleus after 3 h of incubation in HL60 cells, whereas a maximum of approximately 310 binding sites/nucleus was found after 3 h in PBL. Pulse exposure of HL60 to radiolabeled hormone for 3 h followed by culture in medium without serum and calcitriol lead to nuclear retention of approximately 1600 radiolabeled VDR by 8 h and approximately 1000 VDR by 24 h. Radiolabeled VDR disappeared from the nuclear compartment with a halflife of approximately 30 min if cells were cultured with identical concentrations of unlabeled hormone after the pulse (pulse/chase-experiments). No difference of VDR retention in pulse and pulse/chase-experiments was seen in PBL, where VDR halflife was approximately 30 min. No specific translocation into the nuclear compartment was seen when isolated nuclei were incubated in [3H]calcitriol. Radiolabeled hormone/receptor complexes of nuclei isolated from cells exposed for 3 h to radiolabeled hormone--in contrast to identical experiments with intact cells--did not disappear from the nuclear compartment upon incubation of nuclei with identical concentrations of the unlabeled compound. The activity of DNA relaxing enzymes (e.g. topoisomerases I and II) in nuclear extracts was measured using a PBR 322-relaxation-assay. Enhanced overall enzyme activity was found in nuclear extracts by 1 h after incubation with calcitriol (final ethanol concentration 0.0001% v/v) in HL60 and PBL. The enhanced activity disappeared after 2 h in PBL, whereas it was still enhanced by 4 h in HL60. No effect was seen in ethanol treated controls. We conclude that a specific nuclear translocation mechanism exists for calcitriol in both cell types examined, most likely due to translocation of receptor proteins after hormone binding. Translocated hormone/receptor complexes compete for a limited number of specific nuclear binding sites. Enhanced activity of topoisomerases in nuclear extracts upon translocation of VDR might reflect interaction of both within the nuclear compartment, thus initiating DNA-unwinding, a prerequisite of transcription initiation.

Biological Transport↗

Mass spectrometric analysis of long-chain esters of diols.

Homologous series of synthetic long-chain monoesters and diesters of 1,2-ethanediol were analyzed by mass spectrometry, and the patterns of fragmentation were studied. Under electron impact saturated ethanediol monoesters yielded prominent ions characteristic of the short-chain diol, such as the rearranged ion formed by 2,3-cleavage (m/e 104) and the ion caused by 3,4-cleavage (m/e 117). Fragments characteristic of the constituent long-chain moieties were the acylium ions [RCO](+), [RCO - 1](+), and the ions [RC(OH)(2)](+). The mass spectra of ethanediol diesters exhibited very intense peaks due to the ions formed by loss of the acyloxy group, [M - RCOO](+), or one carboxylic acid, [M - RCOOH](+). These ions are distinctive for diol diesters. Precise mass measurements by high resolution mass spectrometry verified the composition of the ion fragments. Spectral studies of some monoesters and diesters of 1,3-propanediol, 1,4-butanediol, 2,3-butanediol, and also of some monounsaturated homologues, demonstrated that mass spectrometry is very suitable for the identification, distinction, and analysis of diol lipids.

Electrons↗