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Biomedical subjects

M L Aubert

Publications and source records attributed to M L Aubert.

At least 19 recordsLinked to original sources

Reduction in testicular function in rats. I. Reduction by a specific gonadotropin-releasing hormone antagonist in fetal rats.

A gonadotropin-releasing hormone (GnRH) antagonist, when injected 24 h before sacrifice to rat fetuses, did not modify plasma testosterone concentrations in males on day 18 of gestation but it did on days 19, 20 and 21. This GnRH antagonist reduced plasma luteinizing hormone (LH) levels and increased pituitary LH content in both male and female 19-day-old fetuses from mothers adrenalectomized on day 14 of gestation. An inverse relationship between plasma testosterone and LH levels was noted in males and females, on days 19 and 21. These data suggest that the hypothalamic control of gonadotropic function is operating by day 19 of fetal life and that a negative feedback of testosterone on LH and probably GnRH release is also operating in rat fetuses on days 19 and 21 of gestation.

Adrenalectomy

Reduction in testicular function in rats. II. Reduction by dexamethasone in fetal and neonatal rats.

Chronic administration of dexamethasone in drinking water to maternal rats from days 15 to 21 of gestation (1) reduced plasma testosterone concentrations in male fetuses between days 19 and 21 but not earlier on day 18 and abolished the prenatal peak of plasma testosterone which normally occurs on day 19 of gestation, and (2) suppressed the postnatal surge of plasma testosterone in male newborns 1.5 and 2 h after delivery at term by cesarean section. The administration of dexamethasone to male fetuses at birth induced 1 h later a slight but not significant increase in hypothalamic gonadotropin-releasing hormone (GnRH) and pituitary luteinizing hormone (LH) contents, reduced drastically plasma LH levels and completely prevented the postnatal surge of plasma testosterone which occurred normally in littermate controls. A rise in pituitary LH content, and a sharp reduction in plasma LH and testosterone concentrations were noted in 19-day-old male fetuses whose mothers were acutely treated with dexamethasone on day 18 of gestation. Similar evolutions for LH were observed in littermate females. These results suggest that the inhibitory effects of exogenous glucocorticoids on testosterone secretion could be mediated in both fetuses and newborns at least partially through suppression of the hypothalamic and pituitary secretion of GnRH and LH, respectively, and provide insight how stress or hormone imbalance may affect the development of this neuroendocrine system.

Animals

Urinary excretion of [D-Ser(t-Bu)6,Des-Gly10]GnRH ethylamide (buserelin) during therapy of central precocious puberty: a multicentre study.

In order to compare the clinical effects of buserelin on central precocious puberty to its excretion in urine, as a parameter of metabolism or compliance, we have studied 52 patients treated either sc or intranasally. In girls with good control, urinary buserelin excretion represented 0.5 +/- 0.1% of the daily intranasal dose vs 12.5 +/- 2.3% of the daily sc dose. In boys, it represented 0.8 +/- 0.2 and 9.9 +/- 2.7%, respectively. In the sc treated group, 3 patients (2 girls and 1 boy) with poor control who exhibited excretion levels similar to those with good control were classified as resistant to therapy. Clinical control was poor in 4 intranasally treated girls: 2 had low excretion values suggesting poor compliance or failure of absorption by the nasal mucosa, and 2 appeared resistant to therapy, as urinary excretion levels of buserelin were similar to those of well-controlled patients. In addition, these data suggest that the small amount of buserelin absorbed by the nasal mucosa, as expressed by urinary excretion, is sufficient to desensitize the pituitary gonadotropes without any significant first-pass effect in the systemic circulation. This may explain the clinical effectiveness of the intranasal route for administration of small hormonal peptides acting on the pituitary gland.

Administration, Intranasal

[Mechanism of action of gonadoliberin in pituitary gonadotropic cells].

The gonadotropin-releasing hormone (GnRH) controls LH and FSH secretion by membrane receptor interaction followed by a transmission mechanism involving Ca2+ secretion and phosphoinositides hydrolysis. In the first step, GnRH binds to its receptor and induces the formation of aggregates of a certain number of hormone-receptor complexes. Some of these GnRH-receptor complexes are internalized. Then, the receptors are either degraded in lysosomes or recycled through inclusion into secretory granules in the area of the Golgi. Note that receptor internalization is not necessary for the LH response to GnRH that intervenes immediately after GnRH binding to its receptor. Binding of GnRH to membrane receptors provokes extracellular calcium flux into the cell. At the same time, an increase in intracellular Ca2+ from non-mitochondrial stock is observed. Intracellular Ca2+ is important for the initiation of LH response and then extracellular Ca2+ is necessary for a sustained response. GnRH also stimulates phosphoinositides hydrolysis (probably mediated by a G-protein) inducing inositol 1,4,5-triphosphate liberation. This component would participate in Ca2+i increase necessary for the early LH response. Another hydrolysis product is diacylglycerol (DAG) that binds principally to protein kinase C (PKC). On the one hand, this complex can activate "masked" GnRH receptors and participate in this manner to an up-regulation. On the other hand, it seems that FSH beta mRNA expression depends on PKC. GnRH secretion rythm modulates alpha, LH beta and FSH beta subunits mRNA expression, and secretion of these hormones. PKC could be an important regulator of these functions. DAG can also induce LH secretion, this mechanism uses PKC activation and requires gonadotrophin neosynthesis.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Modulation of the neonatal pituitary and adrenocortical responses to stress by thyroid hormones in the rat: effects of hypothyroidism and hyperthyroidism.

Neonatal rats exhibit a period of diminished pituitary and adrenocortical responses to stress during the first 2 weeks of life. Since thyroid hormones are known to affect brain development, modulation of these responses to stress by alterations in thyroid hormone status have been investigated in hypothyroid (Hypo) and hyperthyroid (Hyper) rat pups. Changes in ACTH and corticosterone (B) levels were measured under basal and stress conditions (3 min exposure to ether vapors) in neonates of various ages (day 5-21). Basal T4 and corticosterone-binding globulin (CBG) levels were also measured. Hypo pups were obtained from methimazole-treated mothers and hyperthyroidism was induced by daily subcutaneous injections of L-T4 (100 micrograms/kg BW) from birth on. In Hyper rats, premature onset of ACTH and B responses to stress was observed in 5-day-old rats while significant ACTH and B secretion only appeared by day 10 in vehicle-injected rats. By contrast, ACTH and B responses to stress were delayed in Hypo pups and only occurred by day 21. The lack of ACTH and B responses to stress of 14-day-old Hypo rats could be reversed by one single L-T4 injection (100 micrograms/kg BW) given 24 h, but not 4 h prior to exposure to stress. On day 21, smaller (p less than 0.05) stress-induced ACTH release was observed both in Hypo and Hyper rats compared to intact rats, concomitant with a diminished ACTH secretion following exogenous ovine CRF (10 micrograms/kg BW, i.p.) administration.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenal Cortex

Growth hormone (GH) deprivation induced by passive immunization against rat GH-releasing factor delays sexual maturation in the male rat.

GH deprivation after passive immunization against rat GRF (rGRF) markedly affects somatic growth in male rats. Since it has been postulated that GH and probably insulin-like growth factor-I (IGF-I) might have a permissive role on sexual maturation, the effects of GH deprivation on the course of sexual maturation were tested. Male rats were treated with a potent anti-rGRF serum between 15 and 39 days of life (0.25 ml administered sc every second day). Body weight of treated rats averaged 62% of that of control (normal rabbit serum-treated) rats at 40 days of life (d), and 64% at 50 d after which age, treated rats started to grow normally. At 40 and 50 d, pituitary GH content was very much depressed (representing approximately 20% of control values at both ages), plasma GH was undetectable, and plasma IGF-I levels averaged 30% of those of control rats. At 70 d, 30 days after cessation of treatment, pituitary GH content, and IGF-I secretion were almost normal. At 40 d, testes and seminal vesicles of treated rats were small-for-age in agreement with significantly decreased plasma levels of FSH and delayed spermatogenesis characterized by the presence of only few or no spermatozoa. At 50 d, 10 days after cessation of anti-rGRF injections, progress of sexual maturation was found to be consistent with age and coincided with normalization of growth rate. At 40 and 50 d, pituitary contents of FSH and LH were severely decreased but became normal at 70 d. In conclusion, GH deprivation which markedly affected somatic growth induced a transient delay of sexual maturation. GH deficiency seems to have affected mostly the synthesis and secretion of FSH, thus producing a delay in testes growth and in the differentiation of the germinal cells. The low levels of IGF-I might also have been the cause for the delay of maturation at the pituitary and/or the gonadal levels.

Animals

Differential activation of the pituitary-adrenocortical axis after stress in the rat: use of two genetically selected lines (Roman low- and high-avoidance rats) as a model.

We have examined the activation of the pituitary-adrenal axis in two lines of rats, the Roman high (RHA)- and low (RLA)-avoidance rats known to be emotionally different. These rats are selected for rapid acquisition of a conditioned avoidance response (RHA) compared with failure to acquire this response (RLA). In this study the endocrine response (ACTH, corticosterone, aldosterone) of RLA and RHA rats to two types of stress was examined: exposure to open-field stress for 10 min (Op) or exposure to ether vapours for 3 min (E). Basal plasma ACTH concentrations were lower in RLA than in RHA rats (RLA: 110.8 +/- 24.5 ng/l; RHA: 252.7 +/- 60.8 ng/l, P less than 0.05) but the absolute values of ACTH reached after both types of stress were comparable between RLA and RHA rats. Plasma corticosterone and aldosterone under resting conditions were not different between RLA and RHA rats. Plasma corticosterone was higher in RLA following openfield stress (P less than 0.05) while no differences between RLA and RHA were observed after ether stress (RHA: basal = 66 +/- 14.nmol/l, Op = 384 +/- 55, E = 606 +/- 75; RLA: basal = 121 +/- 52, Op = 612 +/- 92, E = 698 +/- 89). Stress-induced increases in plasma aldosterone were higher in the RLA line after both types of stress (RHA: basal = 175 +/- 36 pmol/l, Op = 546 +/- 53, E = 563 +/- 47; RLA: basal = 272 +/- 64, Op = 1246 +/- 91, E = 863 +/- 72).

Adrenal Cortex

Effects of early undernutrition and handling on the adrenocortical activity of neonatal rats.

Early neonatal experiences such as handling or undernutrition may alter developmental patterns associated with brain maturation and neuroendocrine regulation. Therefore, we tested neonatal ACTH and corticosterone responses to ether stress in pups submitted to chronic underfeeding which involves daily handling (U), daily handling only (H), or no handling (I). Pituitary ACTH content and brain myelin basic protein (MBP) content were measured in all rat groups. We found that the order of magnitude in stress-induced ACTH secretion was: I greater than H greater than U on day 14 and 18 of age while on day 10, only a small significant response in the H group was observed. Corticosterone secretion after stress was increased on day 14 in both H and I rats while no response was observed in the U group at all ages. Pituitary ACTH content of U pups was significantly (p less than 0.01) reduced compared to H rats on day 10 of age but not later. Underfeeding had profound effects on MBP synthesis of U rats since brain MBP content on day 14 was 5-fold lower in U versus H pups. In addition, handling enhanced MBP production since H rats exhibited higher (p less than 0.05) MBP content as compared to I rats. Thus, both handling and undernutrition experienced early in life are able to affect central brain maturation as well as neonatal adrenocortical responses to stress.

Adrenal Cortex

Purification of PRL receptors from toad kidney: comparisons with rabbit mammary PRL receptors.

The binding characteristics of the prolactin (PRL) receptors present in toad (Bufo marinus) kidneys were investigated and compared to those of PRL receptors present in rabbit mammary glands. The molecular characteristics of the Triton X-100 solubilized renal and mammary PRL receptors were assessed by gel filtration and by migration analysis on sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) after affinity labeling of the binding sites with 125I-human growth hormone. Similar results were obtained for both receptors. Partial purification of the toad PRL receptor could be achieved by affinity chromatography. The molecular weight of this purified receptor could be determined by analysis on SDS-PAGE. With the use of a polyclonal antiserum raised against a purified preparation of rabbit mammary PRL receptor, one or several antigenic epitope(s) could be identified on the core of the toad renal PRL receptor. In conclusion, although the structure and the biological role(s) of PRL have substantially changed during evolution, the receptor for this hormone has retained many of its structural features as could be assessed between an amphibian and a mammalian species on functionally different target tissues.

Affinity Labels

Delayed sexual maturation induced by daily melatonin administration eliminates the LH response to naloxone despite normal responsiveness to GnRH in juvenile male rats.

Daily administration of melatonin (MT) markedly delays sexual maturation in the male Wistar rat. In this study, we have evaluated pituitary responsiveness to GnRH and the level of tonic inhibition by endogenous opioids in normal juvenile male rats and in rats with delayed sexual development induced by daily afternoon MT injection (100 micrograms, s.c.) starting at 20 days of life. Plasma LH responses to repetitive intravenous GnRH administration (100 ng/100 g body weight), or to different doses of GnRH administered subcutaneously (5-100 ng/100 g body weight) were normal in MT-treated rats both at 30 and 40 days of life despite significantly lower number of pituitary GnRH receptors and decreased pituitary gonadotropin content. One naloxone (NAL) injection (2.5-5.0 mg/kg, s.c.) produced a significant increase of plasma LH in normal 40- and 55-day-old rats, which was not seen in MT-treated rats of the same age. In contrast, no increase of plasma LH was seen in 30-day-old control rats nor in MT-treated rats at this age. Pretreatment with morphine sulfate (10 mg/kg, s.c.), or with the potent Met-enkephalin analog FK 33-824 (1.0 mg/kg, s.c.) prevented the NAL-induced rise of plasma LH in control rats at day 40 of life. In all instances, plasma PRL levels were decreased after NAL both in untreated and in MT-treated rats.(ABSTRACT TRUNCATED AT 250 WORDS)

Aging

Differentiation of fetal rat somatotropes in vitro: effects of cortisol, 3,5,3'-triiodothyronine, and glucagon, a light microscopic and radioimmunological study.

Cortisol stimulates somatotrope differentiation in vitro. T3 and/or glucagon may also be involved. Fetal rat pituitary primordia were explanted at 14 days gestation and cultured for 7 days in medium supplemented with cortisol (50-500 nM), and either T3 (0.67 nM) or glucagon (0.5 nM). Also, to determine the time of first appearance of the somatotropes, explants were cultured 4, 5, or 6 days with cortisol alone. Immunoreactive somatotropes were detected by immunohistochemistry, and their size and number were estimated for each medium. GH was measured by RIA in explants and media. Immunoreactive somatotropes first appear at 18-19 days gestation. Their size and number depend on cortisol concentration: no cells at 50 nM, a few small ones at 100 nM, and many large ones at 250-500 nM. This progression was reflected by RIA of GH in explants and media, although small quantities were detected with 50 nM. The effect of T3 was only visible with a low dose of cortisol. With 100 nM cortisol, it increased the size and number of cells. Differentiation was also triggered with 50 nM cortisol plus T3. RIA detected significantly higher GH content and secretion after T3 stimulation. The decreases in number, size, and GH secretion and content elicited by glucagon were not significant, probably due to the high variability. Both techniques used provide similar information on somatotrope differentiation: stimulation by cortisol alone, or alternatively by a synergistic action between cortisol and T3.

Animals

Binding and internalization of native gonadoliberin (GnRH) by anterior pituitary gonadotrophs of the rat. A quantitative autoradiographic study after cryoultramicrotomy.

To identify anterior pituitary cell types containing GnRH binding sites and to study the internalization process of this peptide by target cells under physiological conditions, autoradiography was performed on rat anterior pituitaries removed at specific time intervals (2-60 min) after intravenous injection of mono-radioiodinated 125I-GnRH into intact males. At electron-microscopic level, gonadotrophs and lactotrophs appeared to contain silver grains. Concomitant administration of an excess of unlabeled GnRH with the radioiodinated hormone prevented this localization indicating the specificity of the reaction. The time-course study in gonadotrophs showed that 2 min after injection silver grains could be found over the plasma membrane, secretory granules and nuclear membrane. Similar results were observed 5 and 15 min after injection. Extensive label was observed over the nucleus and nuclear membrane 15 to 60 min after injection. The injection of a radioiodinated GnRH agonist [D-Trp6, Pro9 (Net), DesGly10]-GnRH produced comparable results. In contrast, the injection of 125I-[D-pGlu1, D-Phe2, Trp3,6]-GnRH, an antagonist of GnRH, produced positive labeling only at the plasma membrane without internalization. These results indicate that, after binding with receptors on the plasma membrane, GnRH is rapidly internalized, accumulating in secretory granules, and localizing over the nuclear membrane and later, in the nucleus. Association of radioactivity with secretory granules could be related to a specific action of GnRH at this level or to receptor recycling, and presence of label in the nucleus may be related to stimulation of neosynthesis of LH and GnRH receptors.

Animals

Short-term and long-term effects of melatonin on GnRH-stimulated gonadotropin secretion in pituitaries of sexually maturing rats.

Melatonin administration has been shown to delay sexual maturation in male rats, through an action which involves decreased binding of gonadotropin-releasing hormone (GnRH) in the pituitary and lower pituitary gonadotropin contents. It has been suggested that melatonin must act at a level higher than the pituitary to provoke these effects, but a direct action of melatonin on the pituitary has not been excluded. Using a cell culture system, the gonadotroph responsiveness to GnRH was studied. Pituitaries were obtained either from rats chronically treated with melatonin and showing delayed sexual maturation, or from control rats. In vitro luteinizing hormone and follicle-stimulating hormone response to GnRH was significantly lower when pituitaries were obtained from melatonin-treated rats. However, this diminished response was directly proportional to the amount of gonadotropin contents in cells, so that relative responsiveness, calculated as the amount of gonadotropins released in relation to the gonadotropin content was similar in cells from control and melatonin-treated rats. It is concluded that the effect of melatonin on the pituitary of male rats results from a decrease of gonadotroph growth or gonadotropin synthesis, as a consequence of a change located at the hypothalamic rather than at the pituitary level. This conclusion is further supported by results showing that melatonin added directly in culture medium prior to GnRH does not modify the pituitary responsiveness to GnRH.

Aging

Plasma growth hormone (GH) response to intravenous GH-releasing factor (GRF) in adult rats: evidence for transient pituitary desensitization after GRF stimulation.

The ability of human (h)GRF-(1-29)NH2 to stimulate GH secretion was studied in cannulated adult rats. In order to suppress endogenous GRF secretion and the inhibitory action of hypothalamic somatostatin (SRIF), rats were anesthetized with sodium pentobarbital. Intravenous administration of hGRF-(1-29)NH2 elicited a dose-dependent response of plasma GH, with 250 ng/kg being the smallest effective dose in male rats. In female rats, for each dose tested (250 to 70,000 ng/kg), the GH response represented only about 60% that of male rats. Repeated iv stimulations with hGRF-(1-29)NH2 at short time intervals (45 min) produced transient desensitization of pituitary responsiveness to GRF: a blunted GH response to the second and third stimulations was observed both in male and in female rats and for each dose tested. Similar blunted responses were also obtained with repeated injections of native hGRF-(1-44)NH2. The possibility that these blunted responses could be due to incomplete suppression of hypothalamic SRIF secretion by sodium pentobarbital was excluded by the use of rats that were passively immunized against SRIF; in these rats, it was shown that at least 65% of the inhibition of the GH response after the second GRF stimulation was unrelated to SRIF action. Similar transient desensitization to repeated hGRF-(1-29)NH2 stimulations was also observed in conscious rats that were passively immunized against SRIF. This occurrence of blunted responses was shown to be related to the length of the time interval between GRF stimulations, with longer intervals resulting in less or no desensitization. It appears thus that modulation of pituitary responsiveness to the action of GRF is mediated by at least two independent mechanisms in the rat: in addition to the inhibitory action imposed by hypothalamic SRIF, which induces periods of refractoriness to the action of GRF, it was shown in this study that in the pituitary level each GRF stimulation also induces a transient desensitization of somatotrophs for about 1 h. This period of refractoriness might not be due to excessive stimulation with GRF, since it was also observed with the lowest dose of hGRF-(1-29)NH2 that gave a significant release of GH. Finally, a sex difference was confirmed for the response of anesthetized adult rats to stimulation with hGRF-(1-29)NH2, reflecting a sex steroid-induced modification of pituitary responsiveness to GRF stimulation.

Anesthesia, General

Pharmacodynamics of [D-Ser (t-Bu)6,Des-Gly10]GnRH ethylamide (Buserelin) in 6 normal volunteers. Its usefulness to monitor treatment of central precocious puberty.

The disappearance rate of [D-Ser(t-bu)6,des-Gly10]GnRH ethylamide (Buserelin, HOE 766) was studied in plasma and urine after intranasal (300 micrograms) or sc (10 micrograms/kg) administration. A radioimmunoassay for HOE 766 was developed using 125I[D-Trp6,Des-Gly10]GnRH ethylamide as tracer and an antiserum raised against HOE 766. Cross-reaction with native GnRH was only 1.7%. Sensitivity was 1 pg/tube. In 6 male adolescents, the mean plasma HOE 766 concentration (+/- SEM) was 0.46 +/- 0.08, 0.50 +/- 0.10, 0.28 +/- 0.04, 0.24 +/- 0.04, 0.13 +/- 0.03, and 0.08 +/- 0.02 micrograms/l 30, 60, 90, 120 and 180 min after the intranasal administration, respectively. Concomitant urinary excretion of HOE 766-like material was 9.43 +/- 1.96 micrograms/4 h. There was a good correlation between integrated plasma levels and urinary excretion (r = 0.92). In the same 6 volunteers, the plasma HOE 766 levels were 21.2 +/- 3.0, 25.9 +/- 0.8, 21.2 +/- 0.9, 17.1 +/- 0.7, 12.8 +/- 1.1, 8.9 +/- 0.4, and 5.9 +/- 0.8 micrograms/l 20, 40, 60, 90, 120, 180 and 240 min after sc injection, respectively. The mean urinary excretion was 543 +/- 61 micrograms/4 h. In two girls with precocious puberty treated during 12 to 15 months with intranasal administration of HOE 766, urinary excretion of HOE 766-like material was shown to correlate well with the degree of inhibition of plasma 17 beta-E2 and of plasma LH and FSH responses to a GnRH challenge. Thus, monitoring of HOE 766 in urine appears to be helpful for evaluating of intranasal therapy with a GnRH analog in precocious puberty.

Administration, Intranasal

[Differentiation of pituitary cells in culture].

Gonadotrophs were first detected at 18 days of gestation in normal rat fetus. Encephalectomy performed at 16 days of gestation did not modify the normal aspect of cells at term. In adenohypophysial primordia explanted from 13 days of gestation differentiated gonadotrophs were detected after culture (8 days) in medium containing insulin (minimal dose required: 0.5 microgram/ml) and transferrin (5 micrograms/ml). In contrast, in primordia explanted at 11 and 12 days of gestation, GnRH 10(-9) to 10(-12) M was required for the first 24 hours of culture to induce differentiation of cells which was obtained in synergy with insulin and transferrin. On the other hand, fetal hypothalamic GnRH and pituitary GnRH receptors were observed from 12 days of gestation which can explain the observations made on primordia explanted at 13 days. Lactotrophs first appeared at term in normal rat fetus. In vitro, differentiation of lactotrophs was not observed in primordia explanted from 13 days in the presence of insulin and transferrin alone, but it was induced by GnRH (10(-9) M) for the 24 hours of culture in the same medium. The action of GnRH was mediated through glycoproteins and specifically isolated alpha subunit. Indeed, purified LH alpha-subunit added in medium instead of GnRH induced differentiation of lactotrophs from 10(-9) M with an increase in the number of cells related to the dose of hormone. Differentiation of the two cell types is very linked in these culture conditions. Gonadotroph differentiation is regulated by an hypothalamic endocrine secretion whereas lactotroph differentiation is more dependent on a paracrine secretion.

Animals

Structure-function studies on human growth hormone. Evidence that tertiary structure is essential for biological activity.

The relationship between the conformation of human pituitary growth hormone (hGH), biological activity, and ligand binding activity was studied by comparing conformational details previously published on in vivo and in vitro studies of identical samples of hGH and its known derivatives. In vivo assays included the rat tibia test for somatotropic activity and the pigeon crop-sac assay for lactogenic hormone activity. Relative binding affinities were compared in radioimmunoassays using 125I-hGH as tracer with 1) anti-human chorionic somatomammotropin (hCS) serum (low discriminatory hybrid assay), 2) anti-hGH sera (in conventional assays), 3) monospecific anti-hGH serum (absence of cross-reaction with hCS) and 4) human anti-hGH sera obtained from GH-deficient patients on replacement therapy. In addition, binding affinities were examined in two receptor-binding assays, one specific for somatotropic activity (rabbit liver membranes, 125I-hGH), and the other, for lactogenic hormones (rabbit mammary membranes, 125I-oPRL). The conformational properties of native hGH and various chemically and enzymatically modified derivatives of the hormone were evaluated primarily from circular dichroism spectra, while conformational stabilities were estimated from the relative rates of tryptic digestion. Unfragmented, but chemically modified derivatives, exhibited good parallelism between retention or loss of native conformation and the in vivo potencies and in vitro binding affinities. None of the fragments of hGH showed activity in any of the radioreceptor assays or radioimmunoassays. Two derivatives of hGH, which contain gaps of 6 or 12 residues in the polypeptide backbone produced by partial enzymatic digestion, had full or increased in vivo potencies, full activities in the radioimmunoassays, and were the most active derivatives in both radioreceptor assays. One of these, missing the hexapeptide corresponding to residues 135-140, was also found to retain nearly all the conformational properties of native hGH. These studies proved further evidence that 1) retention by modified forms of hGH of a high degree of in vivo biological potency or in vitro binding affinity is causally related to the retention of most of the conformation and conformational stability of the molecule, and 2) the biologically active, receptor-binding and immunoreactive sites on the hGH molecule are 3-dimensional in nature.

Animals

Puberty in the rat: modulation by melatonin and light.

Although a role has been found for melatonin in species which have a seasonal reproductive cycle, very little is known on the role of melatonin in species such as the rat where seasonal cycles are a minor component of reproduction. But the rat is a photosensitive species, because it responds to changes in the lighting environment. Females do not become quiescent but they can have irregular estrous cycles, another way of controlling population dynamics. In this species, exogenous melatonin can exert an antigonadotropic action, providing conditions which apply to other species are also respected for the rat: melatonin must be given at the right time of the day, 9 to 12 hours after the onset of light, and at a given period of life, before the onset of puberty. Melatonin probably acts on the pattern of GnRH pulsatile secretion and the subsequent alterations of the hypothalamic-gonadal axis differ according to the sex of the animal. Endogenous melatonin rhythms are modified by the lighting environment, and results obtained with exogenous melatonin suggest that they could be one of the factors controlling timing of sexual maturation.

Animals