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Biomedical subjects

E B Thompson

Publications and source records attributed to E B Thompson.

At least 19 recordsLinked to original sources

Steroid hormones. Membrane transporters of steroid hormones.

The discovery of a plasma membrane ABC protein that exports steroids in yeast highlights the possibility that similar membrane sorting systems in mammalian cells may modulate the access of steroids to their receptors.

ATP-Binding Cassette Transporters

Glucocorticoid antagonist RU 486 reverses agonist-induced apoptosis and c-myc repression in human leukemic CEM-C7 cells.

A synthetic glucocorticoid dexamethasone (DEX) inhibits proliferation and induces apoptosis of clone CEM-C7 cells, but not in clone CEM-C1 cells, even though they contain glucocorticoid receptors (GR). We previously showed that suppression of c-myc is a critical step in glucocorticoid-induced cell lysis of C7 cells. It is not reduced in C1 cells. In this study we review the basis for this conclusion and present evidence that the glucocorticoid antagonist RU 486 rescues DEX-treated C7 cells from cell death. An increase in DEX-repressed c-myc mRNA levels precedes the recovery of cell growth. A threshold level of Myc expression appears to be required to maintain growth and viability of C7 cells. Although C1 cells are highly resistant to lysis by glucocorticoids, addition of forskolin, an inducer of protein kinase A, synergizes to evoke complete apoptosis. This synergistic effect is prevented by RU 486, indicating direct involvement of the GR.

Apoptosis

Cloning of a teleost fish glucocorticoid receptor shows that it contains a deoxyribonucleic acid-binding domain different from that of mammals.

In the teleost fish, physiological and biochemical studies suggest that glucocorticoids regulate both salt balance and metabolic activities. In mammals, however, these functions are divided between glucocorticoids and mineralocorticoids. In mammals, separate receptors for these two classes of steroid hormone have been cloned and sequenced. To begin to understand the regulation in fish of the vital processes ascribed to glucocorticoids, we have cloned, sequenced, expressed, and studied the steroid-binding and transcriptional activation capabilities of the rainbow trout (Onchorhynchus mykiss) glucocorticoid receptor. Northern blot analysis shows a single rainbow trout GR messenger RNA species of 7.5 kilobases expressed in gill, intestine, skeletal muscle, kidney, and liver. The trout GR 2274-nucleotide coding sequence provides for a protein of 758 amino acids, with appropriate similarities to mammalian GR, with one striking exception. As in other members of the steroid/thyroid/retinoid receptor family, the DNA-binding domain contains two putative zinc fingers. These have high homology with those of other GRs. However, between the zinc fingers in the trout GR are found 9 more amino acids than are seen in mammalian GRs, raising questions as to the functional form of the fish, as opposed to the mammalian, GR. It has been proposed that as fish appear to use glucocorticoids for both metabolic and salt control, presumably through a single GR, GR would prove to be the evolutionary precursor to mammalian GR and mineralocorticoid receptor (MR). Computer analysis of the known sequences of GRs and MRs, however, suggests that the fish GR did not give rise to the MR of higher animals, but that both subfamilies of receptor arose from some earlier gene.

Amino Acid Sequence

Successful in vitro purging of leukemic blasts from marrow by cortivazol, a pyrazolosteroid: a preclinical study for autologous transplantation in acute lymphoblastic leukemia and non-Hodgkin's lymphoma.

An important new approach to curative treatment of leukemia is vigorous treatment of autologous marrow to remove residual abnormal cells in vitro prior to reinfusion. This in vitro 'purging' must destroy the malignant cells while preserving sufficient normal precursors to allow re-establishment of normal in vivo function. We have confirmed that cortivazol (CVZ), a glucocorticoid with an unusual structure, can kill dexamethasone (DEX)-resistant leukemic cells and have examined its ability to purge DEX-sensitive (CEM-C7) and -resistant (ICR-27) human leukemic blasts artificially mixed with normal marrow mononuclear cells in vitro. By carefully defining time and dose, we established a 'therapeutic window' that allowed 'cure' of the artificial remission marrow. A sufficient number of viable normal myeloid precursor cells (CFU-GM) remained to suggest that normal marrow precursors adequate for successful marrow transplantation could survive such treatment. CVZ could be a useful drug for in vitro purging of bone marrow for autologous transplantation in patients with acute lymphoblastic leukemia or non-Hodgkin's lymphoma, sensitive or resistant to standard glucocorticoid.

Antineoplastic Agents, Hormonal

Efficacy of prednisone in refractory multiple myeloma and measurement of glucocorticoid receptors. A Southwest Oncology Group study.

BACKGROUND: Prednisone is an active drug in the treatment of multiple myeloma. The optimal dose, frequency, and role of glucocorticoid receptors (GR) in response to prednisone is unknown. PURPOSE: The purposes of this study were (1) to estimate the response rate of alternate-day high dose prednisone in patients with relapsing and refractory multiple myeloma; (2) to measure the rate of GR levels; and (3) to correlate the response of prednisone with GR status. PATIENTS AND METHODS: Between 8/86 and 1/90, 127 patients were entered onto the study with 121 evaluable for response. The number of GR sites/cell was determined on mononuclear cells isolated from pretreatment bone marrow aspirates using a one point GR binding assay. Patients received prednisone 100 mg po qod x 2 weeks, followed by 50 mg po qod x 10 weeks. RESULTS: The overall response rate was 10% (95% CI: 5-15%) with a median survival of 11.8 months. The GR sites/cell ranged from 0-53,212 with a mean of 8,371 sites/cells. Stratification of GR sites into 0-2,500, 2,501-6,000 and > 6,000 sites/cells was associated with a response rate of 6%, 27% and 4% respectively (p = 0.009). The median survival of patients in these categories was 8.1, 14.9 and 10.6 months respectively. This was not significant by the logrank test (p = 0.11). Although myeloma patients with intermediate levels of GR sites/cell initially responded more favorably to prednisone, their long-term survival was not significantly improved. CONCLUSIONS: Alternate-day high-dose prednisone was well tolerated and may provide palliative benefit for a subset of patients with relapsing and refractory multiple myeloma. The survival of patients on this study was comparable to that reported with other but more toxic doses of glucocorticoids.

Aged

Renal endothelin mechanism in altered thyroid states.

Endothelin (ET) mechanisms were studied in hyper- and hypo-thyroid states in rats. Hyperthyroidism was induced by daily administration of thyroxine (0.1 mg/kg, i.p.) for 8 weeks, while hypothyroidism was induced by daily administration of methimazole (10 mg/kg, i.p.) for 8 weeks. The concentration of endogenous ET-1 was determined in the kidneys using radioimmunoassay. Systemic hemodynamics and renal blood circulation was measured using a radioactive microsphere technique. A significant increase in systolic and diastolic blood pressure, heart rate and cardiac output was observed in hyperthyroid rats as compared to eu- and hypo-thyroid rats. Total peripheral resistance was found to be similar in eu-, hyper- and hypo-thyroid rats. The endogenous concentration of ET-1 in the kidneys was significantly lower in hyper- as compared to eu- and hypo-thyroid rats. The blood flow to the kidneys was significantly increased in hyper- as compared to eu- and hypo-thyroid rats. Infusion of ET-1 (100 ng/kg/min i.v. for 45 min) produced a significant decrease in blood flow to the kidneys of eu-, hyper- and hypo-thyroid rats. The decrease in blood flow was similar in eu-, hyper- and hypo-thyroid rats, indicating that the response of renal blood vessels to exogenous ET-1 is not altered during thyroid dysfunction. Since endogenous ET-1 is involved in the regulation of vascular tone, it may be concluded that in hyper-thyroid rats decrease in concentration of the renal ET-1 could be contributing to an increase in blood flow to the kidney.

Animals

Oxysterol sensitive and resistant lymphoid cells: correlation with regulation of cellular nucleic acid binding protein mRNA.

Oxygenated derivatives of cholesterol inhibit cholesterol synthesis, prevent lymphoid cell growth, and evoke cell death. We have employed a novel selection method to isolate M10 cells, a line of oxysterol-resistant cells, from the sensitive clone CEM C7. Concentrations of the potent sterol 25-hydroxycholesterol that occupy the oxysterol binding protein cause cell death in CEM C7, but not in M10 cells. Both cell lines have similar amounts of the oxysterol binding protein with similar affinities for oxysterol. However, in neither line are the levels of oxysterol binding protein mRNA affected by 1 microM 25-hydroxycholesterol. Furthermore, both cells express the cellular nucleic acid binding protein (CNBP), a 7 zinc finger, DNA-binding protein of unknown function, regulated by oxysterols. The levels of CNBP mRNA are significantly reduced by 25-hydroxycholesterol in the sensitive CEM C7 cells, in which the dose response and time course are consistent with occupancy of the oxysterol binding protein by oxysterol and with subsequent cell kill. However, in the resistant M10 cells, CNBP mRNA levels are unaffected by these concentrations of the 25-hydroxycholesterol. Our results suggest a role for CNBP in oxysterol-induced regulation of cell viability and growth.

Cell Death

Altered endothelin 1 concentration in brain and peripheral regions during thyroid dysfunction.

Earlier studies have shown that plasma concentrations of endothelin 1 (ET-1) and the receptors for ET are altered during hyperthyroidism, while they are not affected during hypothyroidism. The present study was undertaken to determine the changes in concentration of endogenous ET-1 in various tissues of hyper- and hypothyroid rats. Hyperthyroidism was induced by daily administration of thyroxine (T4, 0.1 mg/kg, i.p.) for 8 weeks, while hypothyroidism was induced by daily administration of methimazole (10 mg/kg, i.p.) for 8 weeks. The concentration of endogenous ET-1 was determined in the brain regions (hypothalamus, corpus striatum, pituitary, hippocampus and spinal cord), heart, adrenals, kidneys and thoracic aorta using a radioimmunoassay procedure. Blood pressure and heart rate were significantly increased in hyperthyroid rats, while they were not affected in hypothyroid rats when compared with control (euthyroid) rats. Serum T4 and T3 levels were significantly increased in hyperthyroid rats, while they were significantly decreased in hypothyroid rats when compared with euthyroid rats. The concentrations of ET-1 in the hypothalamus, corpus striatum, hippocampus and spinal cord were not altered in hyper- or hypothyroid rats when compared with euthyroid rats. However, the pituitary showed a significant (p < 0.001) increase (104%) in ET-1 concentration in hyperthyroid rats when compared with euthyroid ones, while hypothyroid rats did not show any significant change in ET-1 concentration in the pituitary. In peripheral tissues ET-1 concentrations were not altered in the heart and adrenals of hyper- and hypothyroid rats when compared with euthyroid rats.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenal Glands

Heat shock protein is tightly associated with the recombinant human glucocorticoid receptor:glucocorticoid response element complex.

The association of heat shock proteins (hsp) with steroid hormone receptors may have functional significance for steroid receptor action. The association of hsp90 with steroid receptors is thought to maintain the receptors in the nonactivated state until their interaction with the respective ligand. The association of hsp70 with progesterone receptor has been well documented. However, there is evidence both for and against the association of hsp70 with the glucocorticoid receptor (GR). We have examined the interaction between hsp70 and human (h) GR over-expressed in the Baculovirus system. Immunoprecipitation and sucrose gradient centrifugation studies demonstrated the association of hsp70 with both the nonactivated and in vitro activated hGR. We were unable to dissociate hGR and hsp70 by incubation of crude cytosol with 3 mM ATP and 0.5 M NaCl. In vivo activation of hGR did not result in dissociation of hsp70 from hGR. Hsp70 coeluted with hGR from a glucocorticoid response element (GRE)-Sepharose column, suggesting that hsp70 is part of the GRE-hGR complex. Both an anti-hGR antibody and an anti-hsp70 antibody were capable of further retarding the migration of a [32P]GRE-hGR complex in polyacrylamide gels. The in vitro activated hGR has been shown to be highly active in an in vitro transcription system. We speculate that hsp70 may influence the DNA-binding and/or transcriptional activities of hGR.

Base Sequence

Suppression of c-myc is a critical step in glucocorticoid-induced human leukemic cell lysis.

Glucocorticoids evoke cytolysis in clonal human leukemic CEM-C7 cells. Suppression of c-myc mRNA by dexamethasone closely correlates with cell lysis only in CEM clones with both glucocorticoid receptor and intact lysis functions. We tested the theory that c-myc repression is essential for glucocorticoid-induced lymphocytolysis by preventing down-regulation of c-myc gene in the presence of dexamethasone and by reducing c-myc mRNA levels with antisense oligonucleotides. We find that sustained expression of c-myc provides resistance to dexamethasone-induced lysis, and antisense c-myc oligomers induce cell lysis. The lethal effects of dexamethasone in these leukemic cells appear to involve reduction of c-myc below the levels required to maintain cellular growth and integrity.

Animals

Endothelin mechanisms in altered thyroid states in the rat.

Endothelin (ET) and its receptor characteristics were studied in hyper- and hypo-thyroid states in the rats. Hyperthyroidism was induced by daily administration of thyroxine (0.1 mg/kg i.p.) for 8 weeks, while hypothyrodism was induced by daily administration of methimazole (10 mg/kg i.p.) for 8 weeks. The chronic administration of thyroxine to rats decreased their rate of gain of body weight, increased serum T3 and T4 concentration, blood pressure and heart rate. The chronic administration of methimazole decreased the rate of gain of body weight, serum T3 and T4 concentration, blood pressure and heart rate as compared to vehicle-treated control. Plasma ET-1 levels were found to be similar in control and methimazole-treated rats, while the levels were found to be significantly (P < 0.002) increased in thyroxine-treated rats as compared to control rats. Binding studies showed that [125I]ET-1 bound to a single, high affinity binding site in the cerebral cortex, hypothalamus and pituitary. The density (Bmax) and the affinity (Kd) of [125I]ET-1 binding in the cerebral cortex and hypothalamus were found to be similar in control, methimazole- and thyroxine-treated rats. The pituitary of thyroxine-treated rats showed a decrease in the binding (34.3% decrease in the density) of [125I]ET-1 as compared to control rats. No difference was observed in the binding of [125I]ET-1 to pituitary membranes from control and methimazole-treated rats. Competition studies showed that the IC50 and Ki values of ET-3 for [125]ET-1 binding were about 8 to 11 times higher than ET-1 in cerebral cortex, hypothalamus and pituitary.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Expression and purification of the HIV-1 reverse transcriptase using the baculovirus expression vector system.

We have successfully expressed and purified the human immunodeficiency virus type-1 reverse transcriptase (RT) using the baculovirus expression vector system. This expression system provides a eukaryotic environment in which post-translational modifications of foreign gene products can occur. After infection with recombinant virus, Western blot analysis confirmed the presence of an immunoreactive polypeptide of approximately 66 kDa from insect Sf9 cell lysates. RT was then purified from crude extracts of baculovirus-infected Sf9 cells; SDS-PAGE analysis of fractions obtain from partial purification showed that in contrast to the Escherichia coli-expressed RT, the baculovirus-expressed RT corresponded to a doublet of peptides at approximately 66 kDa. Further purification of the protein resulted in a p66 protein, judged to be more than 90% pure by SDS-PAGE and Coomassie blue stain. Following purification, the baculovirus derived RT had specific activity for DNA polymerase similar to that of the E. coli-derived RT. Therefore, RT purified from Sf9 cells appears to be suitable for structure-function studies of this enzyme.

Animals

Glucocorticoid receptors in leukemias, lymphomas and myelomas of young and old.

In this paper we have briefly reviewed the nature of leukemias and lymphomas in the old and the young. We surveyed in general the ways in which lymphoid cells and other hematologic elements respond to glucocorticoids, mentioning that there may be direct or indirect effects on their growth by these ligands. We have reviewed the current general model for the action of glucocorticoids in all cells, namely the fact that the actions of these steroids are mediated to a large extent through binding with ligand-activated transcription factors, their receptors. The growing wealth of detail about the nature of the interaction of these receptors with regulatory sites in the genome is discussed. Finally, we have described our results with lines of tissue culture cells representing clones from a typical leukemia of the young, and of myeloma, a typical hematologic malignancy of the elderly. Several features of the effects of glucocorticoids on these cells point up areas that would be pertinent to explore in aging and in the relationship of hematologic diseases to survival and response to therapy in the older versus the younger patient.

Age Factors

Oxysterol-induced cell death in human leukemic T-cells correlates with oxysterol binding protein occupancy and is independent of glucocorticoid-induced apoptosis.

In eukaryotic cells oxysterols inhibit cholesterol biosynthesis and cell growth. A potent oxysterol, 25-hydroxycholesterol, was used to investigate the biological effects of oxysterols on three clonal lines of either glucocorticoid-sensitive or -resistant CEM cells, human leukemic T-lymphocytes. In addition, the glucocorticoid sensitivity of an oxysterol-resistant CEM cell line was tested. Oxysterols blocked growth and caused the lysis of cells regardless of their glucocorticoid response. All cells studied herein possessed an oxysterol binding protein with high affinity for 25-hydroxycholesterol. For all clones grown in serum-free medium, the half-maximal cytolytic concentration of 25-hydroxycholesterol (20-40 nM) correlated with its affinity (Kd = approximately 31 nM) for this oxysterol binding protein. Both cholesterol and mevalonate reversed 25-hydroxycholesterol cytotoxicity; 3-6 microM cholesterol or 0.1 mM mevalonate decreased 60 nM 25-hydroxycholesterol cytotoxicity by 50%. This cholesterol or mevalonate reversal appeared possible even after several days of 60 nM oxysterol treatment. The protective effect of cholesterol could be overcome by increasing 25-hydroxycholesterol concentrations. Cholesterol and mevalonate did not prevent glucocorticoid-mediated lymphocytolysis. Furthermore, the oxysterol-resistant line was sensitive to dexamethasone lysis. These data support the hypothesis that oxysterols and glucocorticoids act independently to block the growth of human leukemic lymphoblasts.

Apoptosis

Cortivazol increases glucocorticoid receptor expression and inhibits growth of hamster pancreatic cancer (H2T) in vivo.

Glucocorticoids are effective in the treatment of certain leukemias and lymphomas, but their effects on the growth of several solid tumors have not been determined. We report here that cortivazol (CVZ), a potent synthetic glucocorticoid, inhibits the growth of a hamster pancreatic adenocarcinoma, H2T, in vivo. CVZ regulation of glucocorticoid receptor (GR) expression was followed as a specific molecular correlate. H2T cells were injected into cheek pouches of male Syrian golden hamsters, where they formed readily measurable tumors. Two studies were performed. In the first, hamsters were randomized to three groups immediately after injection of tumor cells: control, CVZ (0.1 micrograms/g body wt), or CVZ (0.3 micrograms/g body wt). Injections of either CVZ or its vehicle were administered on a 14-day cycle of 5 treatment days, followed by 9 days off treatment. Tumors were measured and areas calculated weekly. On day 48, the hamsters were killed and the tumors excised, weighed, and analyzed for DNA, RNA, and protein content. In the second study, randomization and treatment schedule were as before, except that on day 33 the hamsters were killed, tumors were excised and weighed, and total RNA from the tumors was isolated. GR mRNA content was determined by filter hybridization with a 32P-labeled GR cDNA probe, and the signal normalized by reprobing for alpha-tubulin as an invariant, independent signal. At either dose, CVZ significantly inhibited H2T tumor area and weight and DNA, RNA, and protein content. Body weights of animals treated with CVZ were not significantly decreased as compared with controls. In addition, GR mRNA in H2T cells was increased approximately twofold by CVZ.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenocarcinoma