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At least 19 recordsLinked to original sources

Androgen receptor, estrogen receptor alpha, and estrogen receptor beta show distinct patterns of expression in forebrain song control nuclei of European starlings.

In songbirds, singing behavior is controlled by a discrete network of interconnected brain nuclei known collectively as the song control system. Both the development of this system and the expression of singing behavior in adulthood are strongly influenced by sex steroid hormones. Although both androgenic and estrogenic steroids have effects, androgen receptors (AR) are more abundantly and widely expressed in song nuclei than are estrogen receptors (ER alpha). The recent cloning of a second form of the estrogen receptor in mammals, ER beta, raises the possibility that a second receptor subtype is present in songbirds and that estrogenic effects in the song system may be mediated via ER beta. We therefore cloned the ER beta complementary DNA (cDNA) from a European starling preoptic area-hypothalamic cDNA library and used in situ hybridization histochemistry to examine its expression in forebrain song nuclei, relative to the expression of AR and ER alpha messenger RNA (mRNA), in the adjacent brain sections. The starling ER beta cDNA has an open reading frame of 1662-bp, predicted to encode a protein of 554 amino acids. This protein shares greater than 70% sequence identity with ER beta in other species. We report that starling ER beta is expressed in a variety of tissues, including brain, pituitary, skeletal muscle, liver, adrenal, kidney, intestine, and ovary. Similar to reports in other songbird species, we detected AR mRNA-containing cells in several song control nuclei, including the high vocal center (HVc), the medial and lateral portions of the magnocellular nucleus of the anterior neostriatum, and the robust nucleus of the archistriatum. We detected ER alpha expression in the medial portion of HVc (also called paraHVc) and along the medial border of the caudal neostriatum. ER beta was not expressed in HVc, in the medial and lateral portions of the magnocellular nucleus of the anterior neostriatum, in the robust nucleus of the archistriatum, or in area X. In contrast, ER beta mRNA-containing cells were detected in the caudomedial neostriatum and medial preoptic area in a pattern reminiscent of P450 aromatase expression in the same brain regions in other songbirds. These data suggest that estrogenic effects on the song system are not mediated via ER beta-producing cells within song nuclei. Nonetheless, the overlapping expression of ER beta- and aromatase-producing cells in the caudomedial neostriatum suggests that locally synthesized estrogens may act via ER beta, in addition to ER alpha, to mediate seasonal or developmental effects on nearby song nuclei (e.g. HVc).

Amino Acid Sequence↗

Characterization of progesterone receptors, estrogen receptors, and estrogen (type II)-binding sites in the hormone-independent variant of the MXT-3590 mouse mammary tumor.

A hormone-independent mouse mammary tumor line was derived by transplantation of a hormone-dependent line (MXT-3590) into ovariectomized-adrenalectomized animals and subsequent transplantation of surviving tumors. Although the tumor line is hormone independent, it contains a full complement of estrogen and progesterone receptors which are similar to those found in hormone-dependent tumors. This similarity includes the criteria of nuclear translocation of the estrogen receptor and subsequent stimulation of progesterone receptor synthesis. In addition to the estrogen receptor, a secondary estrogen-binding site (type II) is also present; this binding site was previously described in the hormone-dependent companion tumor line. Thus, while this variant tumor line contains the biosynthetic pathways that control estrogen and progesterone receptor synthesis, its growth does not depend on these steroids. Therefore, it may provide a good model for the study of this class of hormone-independent tumors.

Animals↗

Activation of the osteopontin promoter by the orphan nuclear receptor estrogen receptor related alpha.

Estrogen receptor related alpha (ERRalpha) is an orphan nuclear receptor that is closely related to the estrogen receptor. It is expressed in a variety of adult and embryonic tissues (in particular, at the onset of ossification), as well as in several osteoblastic cell lines. ERRalpha acts as a site-specific, cell-specific transcriptional activator. Here, we show that ERRalpha transactivates the promoter of the mouse osteopontin (OPN) gene, the product of which is a marker of the late stages of osteoblastic differentiation. This effect is cell specific and is exerted through derivatives of the ERRalpha response element. Overexpression of ERRalpha in three different osteoblast-like cell lines results in an elevation of the amount of OPN-corresponding mRNA. Therefore, OPN is a target gene for ERRalpha, pointing to the role of the latter in osteoblast differentiation.

Animals↗

Expression of insulin-like growth factor-I receptor, estrogen receptor alpha, Bcl-2 and Bax proteins in human breast cancer.

Disturbance in expression of estrogen receptors together with changing influence of growth factor receptors and apoptosis associated proteins plays a role in breast cancer development and progression. However, immunohistochemical detection and relationships among these proteins were not often considered in relation to breast cancer and a few evaluations of expression provided mismatching results and conclusions. Consequently, we examined by immunohistochemistry the expression of the insulin-like growth factor-I receptor (IGF-IR), estrogen receptor alpha (ERalpha) and apoptosis-associated proteins, Bcl-2 and Bax, in human primary breast cancer, as well as analyzing the relationships among these proteins. The positive immunostaining for IGF-IR, ERalpha, Bcl-2 and Bax was noted in 56, 63.8, 82.8 and 50% of tumors, respectively. We observed that IGF-IR negatively correlated with ERalpha in the group of all tumors and in axillary node negative cancer (p<0.03, p<0.05, respectively), but not in the subgroup of node positive cancer. Expression of ERalpha correlated positively with Bcl-2 and negatively with Bax proteins (p<0.0001, p<0.05, respectively). We did not note significant relationships between IGF-IR and Bcl-2, or IGF-IR and Bax proteins. We found that increased Bax expression was associated with positive lymph node status, pT2 stage and G3 grade of tumors. Knowledge about alterations in the IGF-IR expression and relations of the receptor to other biological factors could help in our understanding of breast cancer biology and the importance of the IGF-IR in cancer progression as well as in effective management of breast cancer.

Adult↗

Co-expression of steroid receptors (estrogen receptor alpha and/or progesterone receptors) and Her-2/neu: Clinical implications.

The response of breast cancer patients to endocrine therapy is guided by the expression of two steroid hormone receptors (HR): estrogen receptor alpha (ERalpha) and/or progesterone receptors (PR). In most laboratories the expression of these predictive markers is studied by immunohistochemistry (IHC) in the breast cancer biopsy samples. Another molecular marker that is being increasingly examined in breast cancer is the oncoprotein Her-2/neu, whose expression/amplification predicts the response to anti-Her-2/neu immunotherapy. The co-expression of HR with that of Her-2/neu is infrequent (most reports agree on this), however, there are some conflicting reports about the clinical implications in term of response to endocrine therapy in the patients that co-express HR and Her-2/neu. We have examined these molecular markers for a number of years in our tumor bank, in this dissertation we will present the method and cut-off to study these markers, the correlations between their expression, and the follow-up of the patients that received tamoxifen-based endocrine therapy, alone or following chemotherapy. We confirmed that the co-expression of HR with Her-2/neu is infrequent, and that these patients presented both a shorter disease free survival and overall survival. Our results will be compared with others related recently published. For example, the aromatase inhibitor anastrozole appears to be an effective endocrine treatment in HR+ patients, irrespective of the Her-2/neu status. We will present data on the molecular mechanisms that could explain the relatively poor outcome of these patients. Heregulin has been found to be a potent inducer of heat shock factor 1 (HSF1) activity and of heat shock protein (Hsp) synthesis in breast cancer cells and HSF1 activation plays a role in the tumorigenic changes induced by heregulin, heregulin exerts its tumorigenic changes through the cell surface tyrosine kinase receptors c-erbB-3 and c-erbB-4 which are able to form dimers with the "ligandless" Her-2/neu. We found that HSF1 associates with metastasis associated protein 1 (MTA1) on the promoters of genes as well as other molecules involved in gene repression (HDAC1, HDAC2) in a manner that is enhanced by either heregulin exposure or heat shock. ERs, although promoting the growth of breast cancer cells are less associated with invasion/metastasis and ER-induced gene expression is involve in this effect. Heregulin can overcome the protective effects of ER and at least a component of this appears to be due to MTA1 repression of ERE dependent transcription, HSF1 and MTA1 cooperate in gene repression. The co-expression of HSF1 and MTA1 was confirmed by IHC in human breast cancer biopsy samples.

Antineoplastic Agents, Hormonal↗

Analysis of polymorphisms of the vitamin D receptor, estrogen receptor, and collagen Ialpha1 genes and their relationship with height in children with bone cancer.

PURPOSE: The authors' objectives were to compare height at diagnosis of children with bone tumors with that of Spanish reference children; to analyze the frequency of the genotypes for the polymorphisms of the vitamin D receptor (VDR), estrogen receptor (ER), and collagen Ialpha1 (COLIalpha1) genes in patients and in healthy controls; and to test the relationship between the genetic markers and height. PATIENTS AND METHODS: Height and weight at diagnosis were measured in 58 osteosarcoma and 36 Ewing sarcoma patients and compared with standards published for Spanish reference children according to sex and age. For the molecular analysis, genetic polymorphisms of the VDR (Fok I, Apa I, and TaqI), ER (Pvu II and XbaI), and COLIalpha1 (Msc I) genes were characterized in 72 osteosarcoma and 53 Ewing sarcomas and in a group of 143 healthy matched children. RESULTS: Osteosarcoma and Ewing sarcoma patients were significantly taller than Spanish reference children. Osteosarcoma patients showed a significantly higher frequency of the Ff genotype for the Fok I polymorphism (VDR gene) than the control group. The odds ratio for this genotype was 1.78, with an increased relative risk of 78% for heterozygous Ff carriers. Among Ewing sarcoma patients, this same genotype was significantly associated with lower height than homozygotes (FF or ff). CONCLUSIONS: Children with bone cancer are significantly taller than the reference population, which may be influenced by the genotype for the Fok I polymorphism of the VDR gene.

Adolescent↗

Tumor angiogenesis in node-negative breast carcinomas--relationship with epidermal growth factor receptor, estrogen receptor, and survival.

Angiogenesis is essential for tumor growth and metastases. Studies in breast carcinomas suggest that microvessel quantitation as a measure of angiogenesis might be one of the most powerful prognostic tools available. Node negative breast cancer is a particular group for which better prognostic markers would be helpful. We therefore measured microvessel density in a series of well characterised node negative breast carcinomas to evaluate angiogenesis as a prognostic marker and assess its relationship to epidermal growth factor receptor (EGFR) and estrogen receptor (ER), which have previously been reported to be of value. 109 patients with a mean age of 55 years and a median follow-up of 25 months were examined. Vessels were immunohistochemically highlighted using an antibody to platelet endothelial cell adhesion molecule CD31, and microvessel density was quantified using a Chalkley point eyepiece graticule. No significant correlation was observed with patient age, tumor size, grade, ER, or EGFR expression. In a univariate analysis of survival, whereas ER expression was not a significant indicator of either relapse-free (RFS) or overall survival (OS), vascular count (VC) predicted both early RFS and OS (p = 0.01) and p = 0.028 respectively). Furthermore, in patients with ER positive tumors, a subgroup usually considered to have a good prognosis, there was a significant reduction in RFS and OS if tumors had high VCs (p = 0.05 and p = 0.002 respectively). A further statistically significant reduction in RFS (p = 0.05) was observed for EGFR positive highly vascular tumors.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Strategies for improving the immunohistochemical staining of various intranuclear prognostic markers in formalin-paraffin sections: androgen receptor, estrogen receptor, progesterone receptor, p53 protein, proliferating cell nuclear antigen, and Ki-67 antigen revealed by antigen retrieval techniques.

Different variations of the antigen retrieval technique using different retrieval solutions have been evaluated for their effectiveness in restoring the antigenicity of six intranuclear antigens, each of which is a potentially valuable prognostic indicator in formalin-fixed, paraffin-embedded tissue sections. The results of immunohistochemical staining for estrogen receptor, progesterone receptor, androgen receptor, p53 protein, proliferating cell nuclear antigen, and Ki-67 antigen were compared following the different antigen retrieval approaches. The strongest immunostaining signal with the clearest background was obtained by microwave heating of dewaxed paraffin sections for 10 minutes in 0.05 mol/L glycine HCl (pH 3.5) or in citrate buffer solution (pH 6). Urea solution, distilled water, and lead thiocyanate solution yielded improvements with some antigens, but less consistently and less impressively than glycine HCl buffer or citrate buffer. Following antigen retrieval nuclear staining was sharply defined and could be achieved consistently in a variety of tissues after formalin fixation for as long as 7 days. The duration of fixation, however, was an important variable; generally, the longer the fixation time the more vigorous the retrieval procedure required. This study demonstrates the ability to stain a variety of intranuclear antigens, which are not readily demonstrable otherwise, in formalin-paraffin sections with a high degree of consistency and reproducibility. The availability of methods that are effective in paraffin sections may facilitate studies of the possible value of these markers as prognostic indicators for predicting the response of major tumors to different forms of therapy. This study also provided insight into the basic principles of the antigen retrieval method, which may be helpful in attempts to develop a more uniformly standardized technique applicable to many different antigen systems.

Antigens, Neoplasm↗

Paradoxical interactions among estrogen receptors, estrogens and SERMS: mutual annihilation and synergy.

The phenomenon of mutual annihilation of action between 17beta estradiol (E(2)) and a selective estrogen receptor modulator (SERM), previously described in prepubertal rat diaphysis, epiphysis and uterus, has been investigated in ROS 17/2.8 rat osteoblastic cells and in transiently co-transfected cells in culture. In ROS 17/2.8 cells, the estrogen-induced marker enzyme creatine kinase B (CKB) was stimulated by raloxifene, tamoxifen and tamoxifen methiodide to a specific activity equal to or greater than that induced by 10 nM E(2). However, when a fully inhibitory dose of any of these SERMS was given simultaneously with E(2), no stimulation of CK activity resulted. Therefore, SERMS can be full agonists when acting alone, but complete antagonists to a super-physiological dose of estrogen. It is expected that excess tamoxifen would prevent the action of a SERM, but that the agonist activity of a SERM is abolished by 1000-fold less estrogen is a phenomenon without obvious explanation by classical pharmacology of competitive inhibition. To probe the mechanism of this interaction further, a ckb-CAT reporter plasmid, plus the human receptor expression plasmid, HEO, was transfected transiently into several cell types. In MCF-7 cells, a 1:10 ratio of E(2) to tamoxifen produced mutual annihilation, but the same ratio in ROS 17/2.8 or HeLa cells led to synergistic stimulation. In HeLa cells, co-transfected with the more efficient wild-type estrogen receptor plasmid, HEGO, synergy was demonstrated only at sub-saturation levels of HEGO. We speculate that, in the presence of estradiol and a SERM, not only active homodimers would be formed, but also hetero-dimers of estrogen-liganded and tamoxifen-liganded receptor monomers, depending on the molar ratio of their ligands and their relative affinities. The resulting hetero-dimer conformation would change the specific receptor surface for interactions with the growing number of co-activators and co-repressors, structural changes which could help to explain the mutual annihilation and synergy phenomena and their cell selectivity.

Antineoplastic Agents, Hormonal↗

Mechanisms of inhibitory aryl hydrocarbon receptor-estrogen receptor crosstalk in human breast cancer cells.

The aryl hydrocarbon receptor (AhR) is a ligand-activated transcription factor that forms a functional heterodimeric complex with the AhR nuclear translocator (Arnt) protein. The environmental toxin, 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD), is a high affinity ligand for the AhR and has been extensively used to investigate AhR-mediated biochemical and toxic responses. TCDD modulates several endocrine pathways including inhibition of 17beta-estradiol-induced responses in the immature and ovariectomized rodent uterus and mammary gland and in human breast cancer cell lines. TCDD inhibits formation and growth of mammary tumors in carcinogen-induced rodent models and relatively nontoxic selective AhR modulators (SAhRMs) are being developed for treatment of breast cancer. The mechanisms of inhibitory AhR-estrogen receptor (ER) crosstalk have been investigated in MCF-7 breast cancer cells by analysis of promoter regions of genes induced by E2 and inhibited by TCDD. AhR-mediated inhibition of E2-induced cathepsin D, pS2, c-fos, and heat shock protein 27 gene expression involves direct interaction of the AhR complex with inhibitory pentanucleotide (GCGTG) dioxin responsive elements (iDREs) resulting in disruption of interactions between proteins binding DNA elements required for ER action and the basal transcription machinery. Mechanisms of inhibitory AhR-ER crosstalk indicate that functional iDREs are required for inhibition of some genes; however, results indicate that other interaction pathways are important including AhR-mediated proteasome-dependent degradation of the ER.

Animals↗

Progesterone receptor, estrogen receptor alpha, and the type II glucocorticoid receptor are coexpressed in the same neurons of the ovine preoptic area and arcuate nucleus: a triple immunolabeling study.

The neuroendocrine reproductive and stress axes are known to be closely linked, but the mechanisms underlying these links remain poorly understood. In the ovine brain, GnRH neurons do not contain type II glucocorticoid (GR), progesterone (PR), or alpha estrogen (ERalpha) receptors. We sought to determine whether PR, ERalpha, and GR coexist within the same hypothalamic neurons. A triple immunocytochemical study, involving antisera raised in three different species, was performed on cryostat sections from ovariectomized ewes treated either with estradiol and progesterone or with progesterone alone. All PR-immunoreactive neurons contained ERalpha, and about 95% of ERalpha were PR immunoreactive in the preoptic area and arcuate nucleus. Although the PR with ERalpha colocalization ratio was not affected by the steroid treatments, immunolabeling for PR was weaker in animals that did not receive estradiol. Numerous PR- and ERalpha-immunoreactive cells contain GR. PR+ERalpha+GR-immunoreactive cells represent 70% of PR, 65% of ERalpha, and 72% of GR in the preoptic area and 70% of PR, 66% of ERalpha, and 63% of GR in the arcuate nucleus. These results suggest that estrogen, progesterone, and glucocorticoids may influence the activity of the same neurons to modulate both reproductive and stress axes.

Animals↗

Seasonal expression of androgen receptors, estrogen receptors, and aromatase in the canary brain in relation to circulating androgens and estrogens.

Songbirds have a complex neural network for learning and production of song, namely the neural song system. Several nuclei of the song system contain androgen receptors (AR), and the neostriatal nucleus HVc also contains alpha type estrogen receptors (ER). Many songbird species show seasonal changes in both song and the neural song system that are correlated with seasonal variations in the circulating levels of gonadal steroids. However, there is increasing evidence that the sensitivity of the song system to gonadal steroids also changes seasonally. This could involve changes in the expression and activity of steroid receptors and steroid-metabolizing enzymes, such as the estrogen-synthesizing enzyme aromatase (AROM). The seasonal regulation of brain AR, ER, and AROM has not been studied before in the same individual songbirds. In this work, we compared plasma levels of androgens and estrogens, the expression level of AR-, ER-, and AROM-mRNA in the telencephalon, and brain AROM activity in male canaries between autumn (November) and spring (April) periods of high singing activity. Plasma levels of androgens and estrogens were higher in April than in November. The expression level of ER in HVc was higher in November than in April. In contrast, the expression level of AROM in the caudomedial neostriatum was higher in April than in November. However, we found no seasonal differences in the level of expression of AR and the volume of HVc as delimited by AR expression. Thus, AR expression in HVc was not correlated with circulating androgen levels. This study shows that both steroid-dependent and -independent seasonal factors regulate the action of gonadal hormones on the song system. In addition, we report a new site of AROM expression in the songbird brain, the nucleus interfacialis.

Androgens↗

Effect of gonadal steroids on progesterone receptor, estrogen receptor, and vitellogenin expression in male turtles (Chrysemys picta).

Hepatic vitellogenin (vtg) is a yolk precursor protein sequestered in follicular oocytes as nutrient supply for developing embryos in nonmammalian vertebrates. In prior research studies we have demonstrated that both progesterone (P) and testosterone (T) inhibit estrogen (E)-induced vitellogenesis in the male fresh water turtle (Chrysemys picta), and have suggested that these hormones may be involved in multihormonal regulation of vitellogenesis in the female turtle. However, the modes of action of progesterone and testosterone on estrogen-induced vitellogenesis are not known. We have proposed that progesterone inhibits vitellogenesis by modulation of progesterone receptor A (PRA) or B (PRB) isoforms and/or estrogen receptor (ER) gene transcription. In this study, we compare the vitellogenic responses of reproductively inactive male turtles to estradiol 17beta in the presence of exogenous testosterone or progesterone. Northern blot analysis was used to monitor the changes in vtg mRNA, ER mRNA, and PR mRNA expression; Western blotting to determine changes in PR isoform expression and a homologous ELISA for measurement of plasma vtg. Progesterone and testosterone reduced estrogen-induced vtg mRNA expression, but plasma vtg was not significantly reduced by these steroids. PRA and PRB were transcribed even though ER mRNA could not be detected, suggesting constitutive PR expression. However, in the presence of estradiol 17beta, both PR isoforms and mRNA transcripts were increased as a correlate of ER mRNA transcription, suggesting both transcriptional and translational effects; these effects were inhibited by testosterone and progesterone treatments. Since ER mRNA was sharply reduced by both testosterone and progesterone, and estradiol 17 beta increased PR mRNA transcription and translation, it is likely that the action of progesterone in reducing vtg mRNA is indirect via down regulation of ER mRNA, thus ER. This study provides further information on the role of progesterone and testosterone in the regulation of hepatic vitellogenesis, suggesting regulation of vitellogenesis mainly via modulation of hepatic ER mRNA.

Animals↗

Monoclonal antibody characterization of progesterone receptors, estrogen receptors and the stress-responsive protein of 27 kDa (SRP27) in human uterine leiomyoma.

Uterine leiomyoma occurs in one of every four or five women during their reproductive life. Its origin is unknown but it is accepted that estrogens play a significant role in its development. In order to learn more about the estrogen dependency of leiomyoma, the biochemical and immunological properties of two markers of estrogen response in target cells (the progesterone receptor (PR) and the stress-responsive protein of 27 kDa (SRP27)) were studied in leiomyoma. The ER (estrogen receptor) and PR content were determined by conventional DCC exchange assays. Specific anti-ER, anti-PR and anti-SRP27 monoclonal antibodies were used in immunoblots and immunohistochemical (IHC) studies. The binding properties of PR from cytosol of leiomyoma showed a Kd of 0.8-1.3 nM, which is in the range described for other human tissues. 80% of all studied leiomyoma contained PR, in a range of 805-2000 fmol/mg protein. The Kd for leiomyoma ER was 0.1-0.9 nM, and 84% of the samples were positive for ER. The PR of leiomyoma has the two A and B forms of 120 and 94 kDa, as shown in the immunoblot using the AB52 anti-PR monoclonal antibody. The IHC study revealed that the PR is concentrated in the cell nuclei, in the form of perinuclear bodies, with a homogeneous staining pattern from cell to cell. The leiomyoma fibres contain SRP27 in a higher concentration than the healthy myometrium. The leiomyoma SRP27 shows a typical doublet of 24 kDa and 27 kDa in immunoblot, the same as in MCF-7 cells. The IHC study revealed a high degree of organization of SRP27 in leiomyoma cells, suggesting that this protein may be part of the cytoskeleton. The results obtained show that human leiomyomas contain ER, PR and RSP27 with similar immunological and biochemical properties to those of other human tissues, including the MCF-7 breast cancer cell line.

Adult↗