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Biomedical subjects

J W Funder

Publications and source records attributed to J W Funder.

At least 91 records · Page 5Linked to original sources

Type I (mineralocorticoid) receptors in the guinea pig.

The affinity, capacity, and specificity of type I receptors (mineralocorticoid receptors, MR) in the guinea pig are indistinguishable from similar values determined in parallel studies in the rat. In both epithelial (kidney, colon) and nonepithelial (hippocampus, heart) cytosol preparations, aldosterone binds with a dissociation constant at 4 degrees C of 1-2 nM in both species; for both guinea pig and rat the tissue concentrations of MR are an order of magnitude higher in hippocampus and colon than in kidney or heart. In both species, aldosterone and cortisol appear to have equivalent affinity for MR, and corticosterone appears to have two- to fourfold higher affinity. Given the wide variety of differences between the guinea pig and other species in other components of the pituitary-adrenal axis (superagonist adrenocorticotropic hormone, high circulating cortisol, low levels of transcortin, low-affinity glucocorticoid receptors) the unexpected finding of pristine type I receptors in the guinea pig suggests powerful specificity-conferring mechanisms to allow aldosterone occupancy of MR in epithelia and the possibility of further definition of the roles of such type I receptors in nonepithelial tissues.

Aldosterone↗

Studies of the secretion of corticotropin-releasing factor and arginine vasopressin into the hypophysial-portal circulation of the conscious sheep. II. The central noradrenergic and neuropeptide Y pathways cause immediate and prolonged hypothalamic-pituitary-adrenal activation. Potential involvement in the pseudo-Cushing's syndrome of endogenous depression and anorexia nervosa.

Studies were performed to determine the effects of intracerebroventricular norepinephrine (NE) or neuropeptide Y (NPY) on the ovine hypothalamic-pituitary-adrenal (HPA) axis. NE (50 micrograms) increased mean hypophysial-portal corticotropin-releasing factor (CRF) and arginine vasopressin (AVP) levels (1 h, 1.3- and 2.9-fold; 4 h, 2.2- and 5.7-fold) and caused acute and sustained increases in mean plasma ACTH and cortisol. NPY (50 microgram) also increased mean CRF and AVP levels (1 h, 1.4- and 4.2-fold; 4 h, 1.1- and 1.9-fold), increased pituitary-adrenal activity at 1 h, and caused ACTH hypersecretion at 4 h. When added to cultured ovine anterior pituitary cells, NPY neither increased basal ACTH release nor augmented CRF- or AVP-induced ACTH release. We conclude that: (a) activation of either the central noradrenergic or NPY pathways causes an acute and sustained stimulation of the ovine HPA axis; (b) such activation increases the AVP/CRF ratio, suggesting a dominant role for AVP in the ovine stress response; and (c) the central noradrenergic or NPY systems may cause sustained HPA activation by attenuating or disrupting the glucocorticoid negative feedback on those brain areas concerned with regulation of the HPA axis. The possible roles of the central noradrenergic and NPY systems in the etiology of the hypercortisolemia of endogenous depression and anorexia nervosa are discussed.

Animals↗

Oestrogen and progesterone receptor assays in breast tumours. The Prince Henry's Hospital experience, 1983-1990.

OBJECTIVE: To present and analyse the results of eight years of experience (1983-1990) in breast tumour receptor analysis. DESIGN: All female primary breast tumour samples received (4683) were analysed for seasonal variation, patient age, relative risk index, oestrogen receptor (ER) and progesterone receptor (PR) status, ER and PR status as a function of age, ER and PR levels as a function of age, and ER and PR levels as a function of month of analysis. SETTING: The assays were done at the Medical Research Centre, Prince Henry's Hospital, Melbourne, as a non-profit service to surgeons, oncologists and pathologists. RESULTS AND CONCLUSIONS: The numbers of samples referred for assay increased progressively each year, from 473 in 1983 to 1097 in 1990, but the receptor status (ER +/-, PR +/-) appeared not to vary from year to year. ER+PR+ tumours were the most common in all age groups, steadily increasing from between 50% and 60% in premenopausal women to 70% or more in those aged over 80. In postmenopausal women, levels of ER in ER+ tumours were three times those in premenopausal women; PR levels in PR+ tumours, however, were bimodal, with higher levels in the age groups 35-49 and 70-89 years than in women aged 50-69 years. No significant seasonal variation was seen, and the overall patterns of receptor status are similar to those seen in Northern hemisphere studies.

Adult↗

The thyroadrenal axis, food deprivation and retention of a behavioural response.

The effects of adrenalectomy on retention of the immobile response in the Porsolt swimming rat test are equally reversed by dexamethasone, ketocyclazocine and thyroxine; the effects of hypothyroidism are similarly equally well reversed by all three agents, or by adrenalectomy. Animals food deprived for 24 h lose the response, but retain it after 48 h food deprivation; the latter effect is blocked by adrenalectomy. These counterintuitive findings suggest hitherto unrecognized commonalities and/or interactions in the metabolic effects of the thyroid and adrenal glands.

Adrenal Glands↗

Evidence that the stimulation by arginine vasopressin of the release of adrenocorticotropin from the ovine anterior pituitary involves the activation of protein kinase C.

These studies were undertaken to evaluate the role of protein kinase C (PKC) in the regulation by arginine vasopressin (AVP) of adrenocorticotropin (ACTH) secretion from the ovine anterior pituitary. AVP caused the rapid translocation of PKC from the cytosol to the cell membrane in ovine anterior pituitary cells that was maximal at 5 min. This phenomenon, which is a known concomitant of C-kinase activation, was produced to a greater extent by phorbol 12-myristate 13-acetate (PMA) but not by corticotropin-releasing factor (CRF). To determine whether AVP activated corticotrope PKC, we assessed the ability of three different PKC inhibitors (H-7, sphingosine, and retinal) to modify basal, AVP-, PMA-, and CRF-stimulated ACTH release. In addition to inhibiting the in vitro activity of purified PKC, each compound also caused in vitro inhibition of the protein kinase A (PKA) catalytic subunit, indicating that none could be considered to be a specific inhibitor of PKC and the PKA catalytic subunit. As determined by the mean IC50 values required for the in vitro inhibition of PKC and the PKA catalytic subunit, sphingosine was judged to be the most selective and H-7 the least selective PKC inhibitor. A 4 h exposure to each inhibitor caused a dose-dependent increase in basal ACTH release and attenuation of both AVP- and PMA-stimulated ACTH release. H-7 and retinal, in concentrations that caused a 20-50% inhibition of PKA, also attenuated CRF-stimulated ACTH release; however, this effect was not observed with sphingosine in concentrations that caused only a 10-20% inhibition of PKA. We conclude that: (1) AVP causes the direct activation of PKC in the ovine anterior pituitary and that C kinase activation is important in mediating the effect of AVP on ACTH release; (2) the finding that inhibition of PKC elevates ACTH suggests that basal ACTH secretion is also partly regulated by PKC; (3) since CRF does not cause PKC translocation in ovine anterior pituitary cells, it is unlikely that PKC plays a physiological role in the action of CRF on the corticotrope; (4) the finding that H-7 and retinal attenuate CRF-stimulated ACTH secretion suggests that CRF activates PKA in corticotropes.

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine↗

Glucocorticoid receptors.

Glucocorticoid hormones are secreted uniquely from the zona fasciculata of the adrenal cortex, with marked circadian variation in basal levels and acute elevation in response to stress. Glucocorticoid receptors are almost ubiquitously distributed, and mediate a wide range of tissue-specific responses; in addition to classical, [3H]dexamethasone-binding GR (Type II receptors) there is excellent evidence that Type I sites (MR) act as mineralocorticoid receptors in some tissues but high affinity glucocorticoid receptors in others. Particular issues to be addressed in the presentation include: (i) the extent to which glucocorticoid receptor occupancy is modulated by extracellular (plasma-binding enzymes) or intracellular (proto-oncogenes) factors; (ii) whether or not there are specific response elements for Type I and II receptors; (iii) putative physiological roles for Type I, high affinity glucocorticoid receptors; (iv) evidence for glucocorticoid receptors other than classical GR and "MR". In summary, glucocorticoid receptors appear to be a final common pathway mediating and/or modulating circadian rhythms and stress responses. Cell-and tissue-specificity of response to a whole-body signal is determined by local pre-receptor, receptor and genomic differences. On the basis of previous studies on glucocorticoid secretion, and recent information on glucocorticoid action, it would at last appear possible to begin to construct a coherent physiology for glucocorticoid hormones.

Animals↗

Glucocorticoid regulation of phenylethanolamine N-methyltransferase in vivo.

In vivo, supraphysiological doses of glucocorticoids are required to restore adrenal medullary phenylethanolamine N-methyltransferase (PNMT, E.C. 2.1.1.28) activity after hypophysectomy. However, in vitro, phenylethanolamine N-methyltransferase gene expression appears normally glucocorticoid-responsive. To explore this paradox, rats were given dexamethasone or the type II-specific glucocorticoid RU28362 (1-1000 micrograms/day), and adrenal phenylethanolamine N-methyltransferase activity and mRNA levels were determined. At low doses (1-30 micrograms/day), neither steroid altered mRNA whereas at higher doses (100-1000 micrograms/day), mRNA rose 10- to 20-fold, with dexamethasone approximately 3 times as potent as RU28362. In contrast, enzyme activity fell with low doses of either steroid, consistent with suppression of ACTH and endogenous steroidogenesis. At higher doses of RU28362, enzyme activity remained low and unchanged despite increased mRNA expression, whereas higher doses of dexamethasone progressively restored the enzyme to normal. These findings suggest 1) that glucocorticoid regulation of phenylethanolamine N-methyltransferase activity occurs largely independent of gene expression; 2) that glucocorticoid effects on enzyme activity are primarily indirect, probably through cosubstrate regulation and/or enzyme stabilization; and 3) that these effects are not mediated via a classical (type II) glucocorticoid receptor mechanism, given the high doses of dexamethasone and corticosterone required and the inability of RU28362 to mimic the effects of these less selective steroids.

Animals↗

Medullary pathways for adrenocorticotropic hormone and vasopressin secretion in rabbits.

We determined, in urethan-anesthetized rabbits, whether pharmacological alteration of neuronal function in the ventrolateral medulla oblongata, including the A1 area, and in the nucleus tractus solitarii (NTS), alters plasma adrenocorticotropic hormone (ACTH) and vasopressin and whether inhibition of neuronal function in the ventrolateral medulla impairs the secretion of ACTH normally observed in response to hemorrhage or constriction of the inferior vena cava. We also tested whether the increase in plasma ACTH and vasopressin after pharmacological inhibition of neuronal function in the NTS is dependent on a pathway that synapses in the A1 area of the ventrolateral medulla. Activation of the A1 area with bicuculline increased both ACTH and vasopressin. Inhibition of the NTS with muscimol increased levels of both hormones, as did hemorrhage and constriction of the inferior vena cava. Inhibition of neuronal function within the A1 area with muscimol eliminated the secretion of vasopressin but did not significantly alter the secretion of ACTH, obtained by injecting muscimol into the NTS. Injection of muscimol into the A1 area eliminated the secretion of both ACTH and vasopressin in response to constriction of the inferior vena cava and, in the case of vasopressin, in response to hemorrhage. Although hemorrhage-initiated secretion of ACTH was significantly reduced by injection of muscimol into the A1 area, it was not completely eliminated by these injections or by injections of muscimol into a more rostrocaudally extensive region of the medulla oblongata. We conclude that the net output from the NTS tonically inhibits secretion of both ACTH and vasopressin, reflecting tonic baroreceptor tone. For vasopressin, the pathway from the NTS to the hypothalamus is dependent on a synapse in the A1 area. For ACTH, there are pathways to the hypothalamus that do not synapse in the A1 area, but neurons in this region do have an excitatory effect on secretion of ACTH.

2-Amino-5-phosphonovalerate↗

Steroid receptors.

Explore the source record for details and available documents.

Binding Sites↗

The forced swimming test: effects of glucose administration on the response to food deprivation and adrenalectomy.

Rats food deprived for 24 h prior to a 15 min swimming test have no difficulty in acquiring the immobile response but showed significantly reduced levels of immobility (40%) on retest compared with controls (70%). This effect of food deprivation was reversed, by glucose (100 mg/kg), dexamethasone (6 micrograms/rat) and ketocyclazocine (25 micrograms/rat). Adrenalectomised animals also acquire but cannot retain the immobile response, however, adrenalectomised rats given 1000 mg/kg glucose within 2 h of the initial swimming test are immobile for 75-85% of the retest period. We interpret these findings as suggesting a complex interplay of endocrine and metabolic factors are necessary for retention of the behavioural response.

Adrenal Glands↗

Adrenalectomy and dexamethasone administration: effect on atrial natriuretic peptide synthesis and circulating forms.

Previous in vivo and in vitro studies have reported a variety of glucocorticoid effects on the synthesis and secretion of immunoreactive atrial natriuretic peptide (ir-ANP) into plasma. To further define glucocorticoid modulation of ir-ANP, we have measured ir-ANP levels in plasma and the four cardiac chambers, and tissue ANP mRNA levels, in intact rats and adrenalectomized rats with or without dexamethasone treatment for 1, 2, 4, 8 and 16 days. Plasma levels fell by 50% between 8 and 16 days post-adrenalectomy; in contrast, dexamethasone treatment caused a 3-fold rise in plasma ANP 1-2 days post-adrenalectomy, with levels gradually returning to control by day 16. Circulating forms of ANP were unchanged by adrenalectomy or dexamethasone treatment, as were atrial ANP concentrations and ANP mRNA levels. Left ventricular ANP concentrations rose with dexamethasone treatment, and ventricular ANP mRNA levels changed in parallel with those of circulating ANP. The in vivo effect of glucocorticoids (at moderate rather than very high doses) on ANP synthesis and secretion thus appears to be predominantly but not exclusively upon the left ventricle rather than the atria.

Adrenalectomy↗

Molecular cloning and sequencing of a guinea-pig pro-opiomelanocortin cDNA.

The guinea-pig has high levels of circulating cortisol. Though adrenocorticotropin (ACTH) levels are similar to those in other mammals, guinea-pig ACTH has been reported to have a single amino-acid substitution which results in increased bioactivity of the peptide. Pro-opiomelanocortin (POMC) is the precursor for ACTH, gamma-melanocyte-stimulating hormone (gamma-MSH) and the endogenous opioid peptide beta-endorphin. Both to confirm this substitution in guinea-pig ACTH and to establish whether other non-conservative substitutions occur elsewhere in the precursor we cloned guinea-pig POMC. The guinea-pig alanine for proline substitution at position 24 of ACTH was confirmed. Potentially significant mutations were also identified in gamma-MSH and beta-endorphin. A similar pattern of POMC mRNA expression was obtained for guinea-pig and rat as determined by Northern analysis and in situ hybridization. Southern blot analysis indicated that guinea-pig POMC is a single-copy gene. Cloning and sequencing of guinea-pig POMC thus further demonstrate the divergence of the New World hystricomorph peptides from those in New World primates, and underscore the differences observed in other endocrine axes in the guinea-pig.

Adrenocorticotropic Hormone↗

Renal 11 beta-hydroxysteroid dehydrogenase activity: effects of age, sex and altered hormonal status.

The enzyme 11 beta-hydroxysteroid dehydrogenase, by converting cortisol and corticosterone to their receptor-inactive 11-keto metabolites cortisone and 11-dehydrocorticosterone, appears crucial to the aldosterone-selectivity of renal mineralocorticoid receptors. Levels of enzyme activity in the rat kidney, measured by conversion of cortisol to cortisone, are unaltered by changes in adrenal or thyroid status, or by castration in either sex; in contrast, oestrogen administration increases enzyme activity in male rats.

11-beta-Hydroxysteroid Dehydrogenases↗