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Inhibition of growth and induction of apoptosis by androgens of a variant of LNCaP cell line.

Here are described the effects of androgens, and other molecules known to bind to androgen receptors (AR), on MOP cells established from the human prostate cancer cell line LNCaP. MOP cells contained AR: 100000 binding sites/cell, K(D) for 5alpha dihydrotestosterone (DHT) 0.5 nM, size 110 kDa. The AR gene has the same repetition polymorphism in exon 1 and the T876A mutation in exon 8 as LNCaP. The proliferation of MOP cells in culture was repressed by the synthetic androgen 17beta-hydroxy-17-methyl-estra-4,9,11-trien-3-one (R 1881), the antiandrogen cyproterone acetate (CYPA), estradiol (E2), progesterone and the synthetic progestin promegestone: 17,21 dimethyl-19 nor-4,9 pregnandiene-3,20 dione (R 5020). The number of cells recovered after 7 days decreased to approximately 40% of controls. ED(70)s ranged between 50 pM for R 1881 to 50 nM for E2 and CYPA. Treatment with R 1881 decreased [3H]thymidine incorporation into DNA and increased dramatically the doubling time. R 1881, CYPA and E2 blocked the cell cycle between G1 and S phases and they induced apototosis as demonstrated by the increase of blebs on the plasma membrane, nuclear fragmentation, TdT-mediated dUTP nick end-labeling (TUNEL)-positive cells and internucleosomal DNA breaks. In athymic nude mice, testosterone enanthate prevented the growth of MOP tumors and, when tumors did develop, brought about regression. However, the tumors did not regress completely and finally escaped treatment. In conclusion, a variant of the LNCaP cell line has been established. With these cells it was possible to confirm that androgens paradoxically repress the growth of some prostate cancer cells both in culture and in vivo. In addition it is demonstrated in culture but not in vivo, for the first time to the authors' knowledge, that a synthetic androgen is able to induce apoptosis of cells established from human prostate carcinoma.

Androgens↗

Characterization of R5020 and RU486 binding to progesterone receptor from calf uterus.

We have examined and compared the binding characteristics of the progesterone agonist R5020 [promegestone, 17,21-dimethylpregna-4,9(10)-diene-3,20-dione] and the progesterone antagonist RU486 [mifepristone, 17 beta-hydroxy-11 beta-[4-(dimethylamino) phenyl]-17 alpha-(prop-1-ynyl)-estra-4,9-dien-3-one] in calf uterine cytosol. Both steroids bound cytosol macromolecule(s) with high affinity, exhibiting Kd values of 5.6 and 3.6 nM for R5020 and RU486 binding, respectively. The binding of the steroids to the macromolecule(s) was rapid at 4 degrees C, showing saturation of binding sites at 1-2 h for [3H]progesterone and 2-4 h for both [3H]R5020 and [3H]RU486. Addition of molybdate and glycerol to cytosol increased the extent of [3H]R5020 binding. The extent of [3H]RU486 binding remained unchanged in the presence of molybdate, whereas glycerol had an inhibitory effect. Molybdate alone or in combination with glycerol stabilized the [3H]R5020- and [3H]RU486-receptor complexes at 37 degrees C. Although the rate of association of [3H]RU486 with the cytosolic macromolecule was slower than that of [3H]R5020, its dissociation from the ligand-macromolecule complex was significantly slower than [3H]R5020. Competitive steroid binding analysis revealed that [3H]progesterone, [3H]R5020, and [3H]RU486 compete for the same site(s) in the uterine cytosol, suggesting that all three bind to the progesterone receptor (PR). Sedimentation rate analysis showed that both steroids were bound to a molecule that sediments in the 8S region. The 8S [3H]R5020 and [3H]RU486 peaks were abolished by excess radioinert progesterone, RU486, or R5020.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Evidence for progesterone receptors in the human fetoplacental vascular tree.

The presence of progesterone receptors (PR) throughout the human term fetoplacental vascular tree was investigated. By reverse transcription-polymerase chain reaction (RT-PCR), we showed expression of PR mRNAs in stem villi vessels, chorionic arteries and veins, and umbilical arteries and veins. Binding studies and Scatchard analysis revealed a single class of high-affinity binding sites for (3)H-R5020 (promegestone) in cytosolic extracts of all placental vessels, with K(d) values in the range of 2.5-4 nM. High levels of PR were detected in placental vessels compared to other vascular tissues. Thus, maximum binding capacities of stem villi vessels, chorionic arteries and veins, and umbilical arteries and veins were 247 +/- 25, 377 +/- 58, 295 +/- 40, 371 +/- 118, and 672 +/- 144 fmol/mg protein, respectively. Endothelial cell elimination in chorionic arteries did not significantly modify the number of PR. RT-PCR and binding studies also assessed PR expression in cultured placental vascular smooth muscle cells isolated from stem villi vessels. All these data suggested that most of the PR of fetoplacental vessels were from the media. In conclusion, we report here the first evidence of the presence of PR in the muscular layer of human term fetoplacental vessels. This finding, together with the high progesterone concentrations in cord blood, suggests that the interactions between the PR and its ligand may play a role in the physiology and physiopathology of human fetoplacental vascularization.

Adult↗

Effect of long-term administration of progestogen on post-menopausal bone loss: result of a two-year, controlled randomized study.

OBJECTIVE: We determined whether a progestogen given alone to post-menopausal women may prevent bone loss. STUDY DESIGN: Thirty-five early post-menopausal women who had not received any form of treatment to prevent bone loss were randomly assigned to a 2-year regimen of 500 micrograms/day of a gestagen derived from 19-norprogesterone (Promegestone) or a placebo for 21 days out of a 28-day treatment cycle. Bone mineral density of the spine was measured by dual photon absorptiometry. RESULTS: After 2 years of treatment bone mineral density decreased significantly in the placebo group by a mean of 4.5%. In the gestagen group, the rate of bone change was significantly lower as compared to the placebo group (-1.3% +/- 1.2% vs -4.5% +/- 2% (mean +/- SEM), P < 0.05). There were no changes in the biochemical bone turnover parameters in the placebo group but in the gestagen group a significant decrease was observed in the urinary calcium excretion after 2 years. CONCLUSION: The results suggest that a gestagen with no androgenic action can partly counteract early post-menopausal bone loss.

Administration, Oral↗

Induction of cytosolic progestin binding sites by catecholestrogens in rat pituitary gland and uterus: different potencies of 2- and 4-hydroxyestradiol.

The ability of catecholestrogens to induce cytosolic progestin binding sites in the hypothalamus, pituitary gland, and uterus of ovariectomised-adrenalectomised rats was demonstrated by the increase in high-affinity [3H]promegestone binding sites (KD 1.39, 0.50, and 0.54 nM, respectively) following a single subcutaneous injection (26.4 micrograms/animal) of the 3.4-dibenzoate ester of 4-hydroxyestradiol. The affinity and the time course of induction of these binding sites were very similar to those after a single injection of an equivalent dose (20 micrograms/animal) of estradiol 3-benzoate, exhibiting maximal receptor levels after 44 h. Widely differing efficacies in the induction of progestin binding sites were observed between the dibenzoate esters of 2- and 4-hydroxyestradiol. 2-Hydroxyestradiol 2,3-dibenzoate was ineffective in the pituitary gland up to a dose of 132 micrograms/animal, whereas 4-hydroxyestradiol dibenzoate was equipotent to estradiol benzoate, showing a maximal induction of progestin binding sites at single doses in the range of 13.2-26.4 micrograms/animal (equivalent to 10-20 micrograms of estradiol benzoate). As compared to the pituitary gland, the uterus was much more sensitive to the systemic administration of estrogen benzoates. At single doses in the range of 1.32-6.6 micrograms/animal (equivalent to 1-5 micrograms of estradiol benzoate), 4-hydroxyestradiol dibenzoate induced maximal levels of progestin receptors, and even 2-hydroxyestradiol dibenzoate, when given at a high dose (132.4 micrograms/animal, equivalent to 100 micrograms of estradiol benzoate), produced a slight increase in progestin binding sites.

Adrenalectomy↗

Physiological effects of 1,25-dihydroxyvitamin D3 in TM4 Sertoli cell line.

1,25-Dihydroxyvitamin D3 [1,25(OH)2D3] receptors have been previously described in Sertoli cells. This study was performed to assess biological activity of the receptor in the mouse Sertoli cell line TM4. A 2-h preincubation with 0.01-25 nM 1,25(OH)2D3 resulted in a dose-dependent rapid uptake of 45Ca2+ within 5 min of addition of the isotope to the cells (27 +/- 8%, n = 4 experiments; P less than 0.05). This response was specific for 1,25(OH)2D3, in that it was not induced by 25-hydroxyvitamin D3, estradiol, cortisol, R 5020 (promegestone), or testosterone. However, a combination of testosterone and 1,25(OH)2D3 inhibited uptake by 23 +/- 8% (n = 3 experiments, P less than 0.01). That the mechanism responsible for 1,25(OH)2D3-stimulated uptake may involve 1,25(OH)2D3 receptor interaction is supported by the observation that cycloheximide inhibited the response. Conversely, there was no detectable change in uptake by 1,25(OH)2D3-treated cells after 24-h incubation with 0.1-5 nM 1,25(OH)2D3. Increased levels of DNA and protein content also resulted from a 2-h incubation with the steroid and were sustained up to 24 h without a concomitant increase in cell number or a detectable change in cell morphology. The presence of specific 1,25(OH)2D3 receptor-like binding sites was demonstrated by sucrose gradient analysis and hydroxylapatite assay. These data demonstrate that 1,25(OH)2D3 may play an important role in testicular function through regulation of receptor-mediated events.

Animals↗

Progesterone receptor of adult rabbit lung.

Properties of progestin binding sites in adult male rabbit lung cytosol were analyzed using [3H] promegestone ([3H]R5020). At concentrations of 0.05-10 nM, [3H]R5020 bound to two saturable sites with differing affinities: a high affinity site (Kd = 0.34 nM, Bmax = 57 fmol/mg protein) and a moderate affinity site (Kd = 60 nM, Bmax = 540 fmol/mg protein). [3H]R5020 binding, under conditions selected to favor binding to the high affinity site, was reversible, protease-sensitive and inhibited in a concentration-dependent manner by steroids with the following order of potency: R5020 greater than norgestrel greater than norethindrone greater than progesterone greater than norethindrone acetate greater than norethynodrel greater than deoxycorticosterone greater than lynestrenol greater than quingestanol greater than testosterone greater than 17 beta-estradiol greater than cortisol. Upon sucrose density gradient ultracentrifugation analysis, a peak of [3H]R5020 binding activity was observed in the 6-7S region in the absence of KCl and in the 3-4S region in the presence of KCl. The progestin-binding activity of adult male rabbit lung cytosol thus possesses those characteristics conventionally accorded to a hormone receptor and suggests that lung tissue may be progesterone-responsive.

Animals↗

Progesterone agonists and antagonists induce down- and up-regulation of estrogen receptors and estrogen inducible genes in human breast cancer cell lines.

The effects of the synthetic progestin R5020 and the antiprogestin RU486 on the cellular content of estrogen receptors (ER) and on cell responsiveness to estrogens, have been investigated in the sex hormone-sensitive human breast cancer cell lines MCF-7 and T47D. When T47D cells were treated with R5020 (Promegestone) (10(-8) M), ER was down-regulated to about 50% of the control level in a time-dependent manner. Maximum down-regulation was observed after 24 hours and remained at this level for the next 24 hours. Dihydrotestosterone (DHT) or dexamethasone (DEX) had no effect on ER sites. R5020 also down-regulated, although to a lesser extent, ER in the MCF-7 cells which contain fewer progesterone receptor (PR) sites. When MCF-7 cells were transfected with a progesterone receptor expression vector (tMCF-7) to increase the number of PR sites, R5020 down-regulated the ER to a level similar to that reached in T47D cells. In both cell lines ER down-regulation was completely inhibited by a 10-fold molar excess of the antiprogestin RU486 (Mifepristone) (10(-7) M). Surprisingly, when incubated with RU486 alone, T47D cells responded by up-regulating ER 2-4 fold. The functional relevance of inhibition and up-regulation of ER for the estrogen responsiveness of hormone-sensitive human breast cancer cells was tested by assaying the synthesis of an estrogen-regulated product, the PS2 protein. Estrogen induction of this protein was inhibited by at least 70% in T47D cells exposed to R5020 for 24 hours before estrogen administration and by about 25% in MCF-7 cells under the same conditions.(ABSTRACT TRUNCATED AT 250 WORDS)

Breast Neoplasms↗

Progesterone receptors in rat thymus.

Tritiated promegestone ([3H]R5020) is bound with high affinity in cytosol prepared from the thymus gland of both male and female rats. To prevent tracer binding to glucocorticoid receptors, we have used excess RU26988 (11 beta, 17 beta-dihydroxy-21-methyl-17 alpha-pregna-1,4,6-trien-20-yn-3-one), a highly specific synthetic glucocorticoid. In the presence of 1 microM RU26988, [3H]R5020 was bound with high affinity (Kd less than or equal to 1 nM) and specificity (R5020 greater than progesterone much greater than estradiol greater than dihydrotestosterone = cortisol = corticosterone = dexamethasone) appropriate for progesterone receptors (PR). These sites were predominantly located in the epithelioid fraction of the thymus. PR levels were 14 +/- 3 fmol/mg protein in female thymus and 10 +/- 4 fmol/mg in male thymus; estrogen administration elevated thymic PR levels in both species (female, 26 +/- 2 fmol/mg; male, 21 +/- 3 fmol/mg). In estrogen-primed female rats, cytosolic thymic PR levels were acutely lowered to 20% of estrogen-primed control levels by the im administration of 1 mg progesterone. Thymic PR levels in pregnant (11-14 days) rats were approximately 50% of those in nonpregnant controls. Effects of glucocorticoids, androgens, and estrogens on the thymus are well documented; the demonstration of PR raises the possibility of direct effects of progesterone on the thymus.

Androstanols↗

Progesterone modulation of the luteinizing hormone surge: regulation of hypothalamic and pituitary progestin receptors.

We have investigated the possible role of hypothalamic and pituitary progestin receptors (PR) in modulation of the estradiol-induced LH surge by progesterone in the immature rat. Rats (28 days old) that received Silastic implants containing estradiol in oil at 0900 h had LH surges approximately 32 h later. Progesterone implants were inserted concurrently with estradiol capsules or 24 h later, leading to inhibition or facilitation of the LH surge, respectively. Cytoplasmic and nuclear PR were measured by in vitro exchange assays, using near-saturating concentrations of [3H]R5020 (3H-labeled promegestone; 17,21-dimethyl-19-nor-4,9-pregnadiene-3,20-dione), 1, 8, 24, and 32 h after insertion of progesterone or blank implants. Kd values of complexes between [3H]R5020 and PR were 0.5-1 nM (cytoplasmic), and 2-3 nM (nuclear). The sedimentation rates of these complexes in sucrose gradients were 7-8S (cytoplasmic) and 3-4S (nuclear). In rats treated concurrently with estradiol and progesterone for 1 or 8 h, cytoplasmic PR were depleted to 40-60%, and this was accompanied by slight increases in nuclear PR. In control rats treated with estradiol and blank implants, there was no induction of either cytoplasmic or nuclear PR in the hypothalamus-preoptic area for up to 48 h; however, in the pituitary and uterus of these animals, PR increased significantly in both compartments (2- to 3-fold at 24 h, 3- to 5-fold at 32 h, and 4- to 7-fold at 48 h). Administration of progesterone either to inhibit or facilitate LH surges almost completely blocked the inductive effect of estradiol on cytoplasmic PR, but the absence of PR from the cytosol could not be accounted for by their presence in the nucleus. In the hypothalamus-preoptic area of estradiol-treated control rats, neither cytoplasmic nor nuclear PR increased significantly for up to 48 h. The low levels of specific [3H]R5020 binding in pituitary and uterine cytosols from progesterone-treated rats appeared to be due mainly to a decrease in the number of binding sites, rather than to an effect on binding affinities. The 7-8S peak of cytoplasmic PR was considerably reduced in rats treated for 48 h with estradiol and 24 h with progesterone. These results are consistent with the notion that hypothalamic and pituitary PR are involved in modulation of the LH surge by progesterone and point primarily to a pituitary site of action for progesterone facilitation.

Animals↗

Progesterone receptor in the chick bursa of fabricius: characterization and immunohistochemical localization.

A high affinity progesterone-binding site was studied in the chick bursa of Fabricius. The dissociation constant for progesterone was 1.4 nM, and the concentration of progesterone-binding sites increased with estradiol treatment. In estradiol-treated bursas, the receptor concentration was about 240 fmol/mg protein. The binding site was specific for progestins, with the following order of affinities: ORG 2058 greater than progesterone greater than promegestone. Androgens, dexamethasone, and estradiol were weak competitors for progesterone binding in the bursa cytosols from estradiol-treated chicks. Immunoglobulin G fraction of antiserum (immunoglobulin G-RB) raised in rabbit against the B-subunit of chick oviduct progesterone receptor (PR) was used for an immunohistochemical study. The PR was found only in the interfollicular cells, which were most probably nonlymphoid cells. Staining was localized exclusively in the elongated nuclei of these cells. No staining was seen in the bursal epithelium or inside the lymphoid follicles. The results indicate that the interfollicular cells of the bursa contain specific PRs which are under estrogen regulation as in the oviduct. Thus, these cells might be under direct progesterone regulation.

Animals↗

Effects of progestins, estrogens, and antihormones on growth and lactate dehydrogenase in the human breast cancer cell line T47D.

We have previously reported progestin stimulation of growth and lactate dehydrogenase (LDH) in the human breast cancer cell line T47D. Our further findings now show that growth stimulation by progestins occurs in a dose-responsive manner at physiological concentrations and is inhibited by the antiprogestin RU486. 17 beta-Estradiol (E2) also stimulates proliferation and LDH, and these stimulations are inhibited by tamoxifen. In addition, tamoxifen alone slightly stimulates proliferation. Surprisingly, RU486 also inhibits stimulation by E2. Thus, RU486 acts not only as an antiprogestin, but also as an antiestrogen. While combined promegestone (R5020) and E2 substantially stimulate proliferation, when RU486 is added to this combination it does not further inhibit, but leads to enhanced stimulation. However, the same addition of RU486 to combined E2 and R5020 diminishes LDH stimulation. This suggests that LDH stimulation and growth stimulation are dissociated. Finally, tamoxifen inhibits growth stimulation by combined R5020 and E2, but addition of the antiprogestin RU486 to this combination does not lead to a further inhibition of proliferation. Even so, this same combination reduces LDH levels to control values, further suggesting that stimulation of growth and LDH are dissociated. All of these findings occurred in the absence of the estrogenic pH indicator phenol red. These results emphasize the potential of LDH as an end point for studying the mechanism of female steroid hormone action. They also reveal antiestrogenic activity in RU486. Further, they shed light on the interaction among estrogens, progestins, antiestrogens, and antiprogestins in their effects on growth. Further understanding of this complex interplay may be helpful in treatment of human breast cancer.

Breast Neoplasms↗

The effect of leupeptin on progestin receptors of human uterine tissues.

In preparation for studies of progestin receptor dynamics in human uterine tissues, we have investigated the effect of tissue handling and the protease inhibitor leupeptin on the molecular forms of progestin receptors in human endometrium, myometrium, and leiomyoma. Tritiated R5020 [17,21-dimethyl-19-nor-4,9-pregnadiene-3.20-dione) (promegestone)] was the labeled ligand, and sucrose density gradient ultracentrifugation was used to determine the sedimentation coefficients of the receptors. Scatchard plots of saturation analyses were used to determine the number of binding sites and dissociation constants. We found that rapid chilling of tissue at surgery was necessary to maintain specific progestin binding in myometrium, that leupeptin permitted demonstration of 8S receptors in myometrium and leiomyoma, and that 8S receptors were present in endometrium, with or without leupeptin. With careful handling of tissue and minimal homogenization, leupeptin may not be necessary to preserve 8S receptors in myometrium and leiomyoma cytosols; however, the use of leupeptin gives greater assurance that 8S receptors will be preserved. The number of binding sites varied from 0.6-2.0 pmol/mg cytosol protein, and the Kd values observed were between 1.7-6.9 X 10(-10) M.

Centrifugation, Density Gradient↗

Progestin effect on cell proliferation and 17 beta-hydroxysteroid dehydrogenase activity in normal human breast cells in culture.

In contrast to cancer cell lines, normal human breast epithelial cells are infrequently studied. Such cells, now routinely cultured in our laboratory from tissue obtained at the time of reduction mammoplasty, were used to study the actions of estradiol (E2), the progestin promegestone (R5020), and the antiprogesterone RU486 on cell growth and progesterone-dependent 17 beta-hydroxysteroid dehydrogenase (E2DH) activity, which is considered good marker of epithelial differentiation as well as progesterone dependency. The studies were carried out using secondary cultures to assure equal initial cell distribution. Cell growth was estimated daily by a histometric method providing a growth index and DNA assay. E2 stimulation of cell growth was not found when the cells were grown in our usual culture medium, but E2 dose-dependent growth stimulation occurred in medium minimally supplemented with serum (1%), insulin; and epidermal growth factor. R5020 inhibited cell growth and stimulated E2DH activity in a dose-dependent manner. RU486 behaved as a pure but low potent progestin agonist concerning E2DH stimulation, but as an agonist with partial antagonist properties concerning cell growth inhibition. In conclusion, E2 stimulated proliferation of human breast epithelial cells in culture, whereas the progestin R5020 inhibited cell multiplication and favored differentiation. The antiprogesterone RU486 had a biphasic effect acting both as progestin agonist and partial antagonist.

17-Hydroxysteroid Dehydrogenases↗

Ligand-modulated regulation of progesterone receptor messenger ribonucleic acid and protein in human breast cancer cell lines.

We have examined the effects of estrogen and progestin agonist and antagonist ligands on regulation of progesterone receptor (PR) protein and mRNA levels in a variety of human breast cancer cell lines. By Northern blot analysis, using human PR cDNA probes, PR mRNA in T47D and MCF-7 cells appears as five species of approximately 11.4, 5.8, 5.3, 3.5, and 2.8 kilobases. PR mRNA species are not detected in the PR protein-negative breast cancer cell lines MDA-MB-231 and LY2. T47D cells contain high levels of PR mRNA and protein (detected by hormone binding assay or Western blot analysis), and the PR protein and mRNA content of T47D cells are reduced to about 10% of the control level within 48 h of treatment with 10 nM promegestone; 17, 21-dimethyl-19-nor-pregna-4,9-diene-3, 20-dione (R5020) or 16 alpha-ethyl-21-hydroxy-19-nor-pregn-4-ene-3,20-dione (ORG2058), both potent progestins. In contrast, treatment of T47D cells with the antiprogestin 17 beta-hydroxy-11 beta-[4-dimethylaminophenyl]-17 alpha-(1-propynyl)-estra- 4, 9-dien-3-one) (RU38486) reduces PR protein and mRNA levels only transiently. PR protein and mRNA are virtually undetectable in control MCF-7 cells grown in the absence of estrogens. When estradiol is administered to MCF-7 cells, the PR mRNA and protein levels increase gradually and proportionately (10- or 40-fold, respectively, in 3 days).(ABSTRACT TRUNCATED AT 250 WORDS)

Breast Neoplasms↗

Progestins induce down-regulation of insulin-like growth factor-I (IGF-I) receptors in human breast cancer cells: potential autocrine role of IGF-II.

Insulin-like growth factor-I (IGF-I) receptors are present in breast cancer cells and may play a role in breast cancer cell growth. We have studied the effect of progestins on IGF-I receptors in T47D human breast cancer cells. T47D cells constitutively express high levels of progesterone receptors and are a model for studying the regulation of cellular functions by progestins. Treatment of T47D cells with either progesterone or the synthetic progestin promegestone (R5020) decreased IGF-I receptor content by approximately 50%, as measured by Scatchard analysis and receptor biosynthesis studies. In contrast to progestins, estradiol, dexamethasone, and dihydrotestosterone did not influence IGF-I receptor content. No effect of R5020 was seen after 12 h of incubation, a near-maximal effect was seen after 24 h, and greatest effects were seen after 72 h. R5020 decreased IGF-I receptor mRNA abundance, indicating that progestins acted at the level of gene expression. However, progestins also increased the secretion of IGF-II, a ligand for the IGF-I receptor. In contrast to IGF-II, T47D cells did not express IGF-I. The addition of exogenous IGF-II to T47D cells down-regulated both IGF-I receptor binding and IGF-I receptor mRNA abundance. This study indicates, therefore, that progestins regulate IGF-I receptors in breast cancer cells and suggests that this regulation occurs via an autocrine pathway involving enhanced IGF-II secretion.

Breast Neoplasms↗

Progesterone and glucocorticoid receptor activation in meningiomas.

The possibility that the female sex steroid progesterone plays a role in meningioma proliferation has been suggested by a number of investigators, and it has been shown that many meningiomas have high-affinity progesterone binding sites. There has been a long-standing debate in the literature as to whether the progesterone receptors that are present in meningiomas are functional. We recently showed, by the use of immunohistochemistry, that the progesterone receptor in meningiomas is localized to the nucleus, suggesting that the receptor is in a location to be activated. In this study, eight meningioma cell cultures were transiently transfected with a construct that contains two palindromic progesterone/glucocorticoid response elements in front of the thymidine kinase promoter and the chloramphenicol acetyl sequence of the tyrosine aminotransferase gene. In all meningioma cell cultures, an increase in the transcription of the progesterone response element construct was observed in the presence of dexamethasone, suggesting that the glucocorticoid receptor in meningiomas is functional. An increase in transcription was observed with the addition of promegestone (R5020), a progesterone agonist, only in meningioma cell cultures that were expressing the progesterone receptor. These data show that both the progesterone and the glucocorticoid receptor in meningiomas are functional and support the concept that progestins and glucocorticoids may play an important role in meningioma growth.

Adult↗

[Studies of progestin specific binding protein in the human prostate [I]: Studies on basic conditions for the accurate quantitative assay method].

Specific binding of the synthetic progestin 17 alpha-methyl-[3H]-promegestone (R5020) in the cytosol of human benign prostatic hypertrophy was studied to determine the accurate quantitative assay method. No significant effect was observed between Tris and Phosphate buffer during a buffer composition investigation. The addition of either glycerol or mercaptoethanol was effective in the enhancement of R5020 specific binding. When sodium molibdate was added into the incubation buffer, the obvious increase of 7-8S components in the SDG analysis was observed. R5020 specific binding was suppressed by the addition of CaCl2. No enhancement effect was observed by the addition of EDTA (0.1-6mM). Under the high concentration of EDTA (10-50mM), it was suppressed. SDG assay by the vertical rotor was superior to that by the swing rotor. It seemed that the long incubation time was an important factor to obtain 7-8S, which was sufficiently bounded. This estimation, however, is not assertive. Further information on the incubation time frame will be presented in the next report. It was evident that the 7-8S saturable peak alone was less than the value calculated by the charcoal assay. It was concluded that not only 7-8S but also 4S binding was included in N value by the charcoal assay. The SDG assay is recommended for the clinical receptor study, since there is not enough information concerning the character of 4S and 7-8S saturable binding in the human prostate.

Hormones↗