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Failure of 2-hydroxyoestrone to lower prolactin concentrations in hyperprolactinaemic women.

The catechol oestrogen 2-hydroxyoestrone has been reported to lower serum prolactin concentrations acutely in normal women and it has been proposed that it may be effective in suppressing prolactin secretion in hyperprolactinaemic patients. Five women with hyperprolactinaemia and anovulation were studied. Following a control infusion, 2-hydroxyoestrone was given at a rate of 80 micrograms/h for 4 h. In no patient was there a fall in prolactin levels and no changes were observed in gonadotrophin concentrations. We conclude that a short-term infusion of 2-hydroxyoestrone, at a dose which will produce high blood levels of the steroid, does not affect prolactin or gonadotrophin secretion in hyperprolactinaemic states.

Adult↗

Catechol estrogens: presence in brain and endocrine tissues.

Catechol estrogens have been identified and measured in rat brain and various endocrine tissues with the use of a sensitive radioenzymatic assay. The specificity of this assay was confirmed by thin-layer chromatography and mass spectral analysis of the reaction products. The concentration of catechol estrogens in the hypothalamus and pituitary are at least ten times higher than reported previously for the parent estrogens. Catechol estrogens have potent endocrine effects and, because of their normal occurrence in the hypothalamic-pituitary axis, they have an important role in neuroendocrine regulation.

Animals↗

Probing the structure and function of the estrogen receptor ligand binding domain by analysis of mutants with altered transactivation characteristics.

We have developed a genetic screen for the yeast Saccharomyces cerevisiae to isolate estrogen receptor (ER) mutants with altered transactivation characteristics. Use of a "reverse" ER, in which the mutagenized ligand binding domain was placed at the N terminus of the receptor, eliminated the isolation of truncated constitutively active mutants. A library was screened with a low-affinity estrogen, 2-methoxyestrone (2ME), at concentrations 50-fold lower than those required for activation of the unmutagenized ER. Several mutants displaying enhanced sensitivity to 2ME were isolated. We further characterized a mutant carrying the substitution L536P, which was located immediately N terminal to the AF-2-activating domain of the receptor. Amino acid 536 corresponds to a ligand contact residue in retinoic acid receptor gamma, suggesting that key contact points are conserved among receptors. Introduction of L536P into the original ER cDNA isolate HE0, which contains the substitution G400V, rendered the receptor more sensitive to a variety of agonists. When introduced into the wild-type ER HEG0, L536P also rendered the receptor more sensitive to agonists, and, in addition, induced high levels of constitutive activity that could be inhibited by antiestrogens. Estrogens containing a keto substitution in the steroid D ring, but not those containing a hydroxyl group, were full agonists of L536P-HEG0. Limited proteolytic analysis suggested that the L536P substitution, which is located immediately N terminal to the AF-2 domain, induces a conformational change in the ER that partially mimics binding by hormone. Both HEG0 and L536P-HEG0 formed complexes with hsp90 in vitro, indicating a lack of correlation between interaction with hsp90 in vitro and hormonal regulation of ER transactivation in vivo. This supports the idea that a factor(s) acting downstream of hsp90 is important for controlling activity of the hormone-free receptor.

Amino Acid Sequence↗

15alpha-Hydroxyoestriol and other polar oestrogens in pregnancy monitoring.

Although oestriol measurements are well established for the assessment of 'at risk' pregnancies, there are a number of other oestrogens, excreted during pregnancy, which contain additional hydroxyl groups and might be more sensitive indicators of the condition of mother or fetus. Some of these result from the action of hydroxylases possibly present only in the fetus and others from maternal hydroxylations. We review the evidence for the biosynthesis of these polar oestrogens, summarise methods of measurement, and compare values obtained in normal and pathological pregnancies. There is as yet insufficient evidence to enable their potential value to be confirmed.

Catechols↗

Steroid effects on the secretory modalities of gonadotropin-releasing hormone release.

GnRH neurons isolated immunochemically from the brain of adult male rats were used to determine whether testosterone (T), dihydrotestosterone (DHT), estradiol-17 beta (E(2)17 beta), 20H-estrone (OHE1), or progesterone (P4) have a direct effect on the spontaneous neurosecretion and/or cellular content of GnRH. Neurons harvested from individual rats were treated with a single steroid pulse; samples were collected before treatment, during the steroid pulse, and at 24 h post treatment. Androgen treatments of 100 pg/ml or 1 ng/ml media elicited an increase in GnRH pulse frequency 1-6 min after steroid exposure without affecting the amplitude of release; these modalities persisted at 2 h. The frequency of GnRH pulses was increased 24 h after the neurons received the brief 100 pg/ml or 1 ng/ml T or 1 ng/ml DHT treatments. Neurons exposed to androgen treatments also appeared to express large amplitude GnRH pulses infrequently at this time whereas there was no androgen affect on the cellular GnRH concentration. In contrast, E(2)17 beta, OHE1, and P4 treatments had no affect on the mean media GnRH concentration, baseline GnRH concentration, or on the frequency and amplitude of GnRH pulses at any time point. However, the 1 ng/ml P4 and the 1 ng/ml OHE1 treatments both reduced cellular GnRH content at 48 h post treatment. These results suggest that T and DHT may specifically interact with GnRH neurons to elicit immediate and/or long-term changes in the modalities of neuropeptide release and that under physiological conditions GnRH neurons of adult male rats are not directly influenced by E(2)17 beta, the catecholestrogen OHE1, or P4.

Animals↗