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P Robel

Publications and source records attributed to P Robel.

At least 55 records · Page 3Linked to original sources

Suppressed expression of the cytochrome P45017 alpha protein in the testicular feminized (Tfm) mouse testes.

The testes of testicular feminized (Tfm) mice synthesize and secrete abnormally low amounts of testosterone, as a consequence of selectively decreased cytochrome P450(17 alpha) activity. To investigate the mechanism of this deficiency, three steroidogenic enzymes were immunolabeled in the testes of normal and Tfm adult (2.5-6 month old) mice. Cholesterol side-chain cleavage cytochrome P450 (P450scc) and delta 5-3 beta-hydroxysteroid dehydrogenase (3 beta-HSD) were detected in the Leydig cells of both normal and Tfm mice whereas, in contrast to normal mice, only a small proportion of Leydig cells were immunostained for cytochrome P450-17 alpha-hydroxylase, C17-->20 lyase (P450(17 alpha)) in the testes of Tfm mice. The numbers of cells differed from male to male and interestingly were markedly higher in the right testis. Explants of testes from Tfm mice were kept in organ culture at 32 degrees C for 45 h, with or without dibutyryl cyclic AMP (100 or 500 mumol/l). All Leydig cells remained positive for P450scc and 3 beta-HSD, and P450(17 alpha) became detectable in the majority of Leydig cells in both left and right testes, showing that the lack of expression of P450(17 alpha) protein in Tfm mouse testes in vivo is not structural but is a regulatory phenomenon.

Androgen-Insensitivity Syndrome↗

Neurosteroid metabolism. 7 alpha-Hydroxylation of dehydroepiandrosterone and pregnenolone by rat brain microsomes.

Two 'neurosteroids', dehydroepiandrosterone (DHEA) and pregnenolone (PREG), are converted by rat brain microsomes into polar metabolites, identified as the respective 7 alpha-hydroxylated (7 alpha-OH) derivatives by the 'twin ion' technique of g.l.c.-m.s. with deuterated substrates. The enzymic reaction requires NADPH and is stimulated 2-4-fold by EDTA. Under optimal conditions (pH 7.4, 0.5 mM-NADPH, 1 mM-EDTA), the Km values for DHEA and PREG are 13.8 and 4.4 microM respectively, and the Vmax. values are 322 and 38.8 pmol/min per mg of microsomal protein respectively. Trace amounts of putative 7 beta-OH derivatives of DHEA and PREG are detected. Oestradiol, at a pharmacological concentration of 5 microM, inhibits DHEA and PREG 7 alpha-hydroxylation. Formation of 7 alpha-hydroxylated metabolites is low in prepubertal rats and increases 5-fold in adults. Derivatives of PREG and DHEA, such as PREG sulphate, DHEA sulphate, progesterone and 3 alpha-hydroxy-5 alpha-pregnan-20-one, are known to be neuroactive. Therefore the quantitatively important metabolism to 7 alpha-OH compounds may contribute to the control of neurosteroid activity in brain.

17-alpha-Hydroxypregnenolone↗

Delta 5-3 beta-hydroxysteroid acyl transferase activity in the rat brain.

Pregnenolone and dehydroepiandrosterone accumulate in brain as sulfate and fatty acid esters and unconjugated steroids. The steroid fatty acid ester-synthesizing activity was investigated in rat brain microsomes. Endogenous fatty acids in the microsomal fraction were used for the esterification of steroids. The enzyme system had a pH optimum of 4.5 in acetate buffer with [3H]dehydroepiandrosterone as substrate. The apparent Km was 9.2 +/- 3.1 x 10(-5) M and Vmax was 18.6 +/- 3.4 nmol/h/mg protein (mean +/- SEM). The inhibition constants of pregnenolone and testosterone were 123 and 64 microM, respectively. Results were compatible with a competitive type of inhibition. A high level of synthetic activity was found in the brain of 1- to 3-week-old male rats, which rapidly decreased with aging. Saponification of purified [3H]pregnenolone esters yielded pregnenolone and a mixture of palmitate, oleate, linoleate, stearate, and myristate as the predominant fatty acids. Contrasting with the high rates of esterification of several radioactive delta 5-3 beta-hydroxysteroids or 17 beta-hydroxysteroids, no fatty acid esters of either cholesterol, epitestosterone (with a hydroxyl group at position C-17 alpha), or corticosterone (with hydroxyl groups at C-21 and C-11 beta) were formed in the same incubation conditions.

Acyltransferases↗

Low density lipoprotein-receptors in primary cultures of rat glial cells.

Newborn rat glial cells in primary culture contain an active cholesterol side chain cleavage cytochrome P450. Cholesterol can be supplied either by biosynthesis or derive from low density lipoproteins (LDL), which bind apolipoprotein Band E (apoB,E) (LDL)-receptors and undergo receptor-mediated endocytosis. Using antibodies to purified human plasma LDL and antibodies to bovine adreno-cortical LDL-receptor, the presence of LDL-receptors was demonstrated on rat glial cells after 3-4 weeks of primary culture, by ligand blotting, immunoblotting, and indirect immunofluorescence staining. The latter approach indicated that oligodendrocytes express higher levels of LDL-receptors than astrocytes present in the same culture. The immunofluorescence staining was observed not only at the cell surface, but also within the cytoplasm, suggesting that the LDL-receptor complexes had been internalized. Western blotting of LDL-receptors extracted from glial cells indicated a band of approximately 130 kDa, the size expected for intact receptors. Their functionality was shown by the conversion of [3H]cholesterol linoleate, incorporated into reconstituted LDL and added to the cell cultures, to [3H]pregnenolone and/or its 20 alpha-hydroxy-metabolite. This is the first characterization of functional LDL-receptors on isolated, well characterized, normal brain cells.

Animals↗

Suppressive effects of dehydroepiandrosterone and 3 beta-methyl-androst-5-en-17-one on attack towards lactating female intruders by castrated male mice. II. Brain neurosteroids.

Dehydroepiandrosterone (DHA) and 3 beta-methyl-androst-5-en-17-one (CH3-DHA) suppress attacks by castrated male mice towards lactating female intruders (Haug et al. Physiol. Behav. 46:955, 1989). Their effects on the concentrations of DHA, pregnenolone (delta 5P), and their sulfate ester (S) have been investigated in the brain of control and treated mice. A more than 2 fold, significant, decrease of delta 5P-S was the only change common to both steroids. DHA and CH3-DHA effects might be related to the antagonistic action of delta 5P-S on GABAA receptors.

Aggression↗

Immunoreactive cytochrome P-450(17 alpha) in rat and guinea-pig gonads, adrenal glands and brain.

The cytochrome P-450(17 alpha)-hydroxylase, 17----20 lyase (P-450(17 alpha)) is the key enzyme responsible for the biosynthesis of androgens in steroidogenic organs. Its cellular localization has been examined with an immunohistochemical technique. In immature rat ovary, P-450(17 alpha) was first detected in sparse interstitial cells on postnatal Day 8. The number of immunoreactive interstitial cells increased thereafter and the intensity of P-450(17 alpha) staining in these cells was highest at 3 weeks of age. The intensity of staining then started to decline and was very faint at Day 35. From 6 weeks on, the distribution of immunoreactive P-450(17 alpha) was of the adult type: it was detected exclusively in the thecal cells of the large antral, preovulatory, follicles. P-450(17 alpha) was not detectable during pregnancy except on the day of parturition, when thecal cells were transiently immunoreactive. The staining had vanished 24 h after delivery. Human chorionic gonadotrophin (hCG), injected into immature females on Days 24 to 26, induced P-450(17 alpha) prematurely in thecal cells. When injected on Days 12 to 14 of pregnancy, hCG also induced P-450(17 alpha) in the thecal cells surrounding the largest follicles, whereas the interstitial and luteal cells were not immunostained. The antiprogestin RU486, injected on Day 16 of pregnancy, reinstated P-450(17 alpha) (and P-450scc) immunoreactivity in the thecal cells. Oestradiol selectively suppressed P-450(17 alpha) expression in the thecal cells of RU486-treated females. In immature guinea-pig ovary, P-450(17 alpha) was immunostained in thecal cells, not in interstitial cells, although the interstitial cells expressed the delta 5-3 beta-hydroxysteroid dehydrogenase. P-450(17 alpha) was also immunolocalized in the Leydig cells of rat and guinea-pig testes, and in the guinea-pig adrenal cortex (zonae fasciculata and reticularis), but not in the rat adrenal cortex. P-450(17 alpha) was not detectable in the brain of either rat or guinea-pig.

Adrenal Cortex↗

[Inhibition by dehydroepiandrosterone of aggression responses of spayed female mice towards lactating intruders is potentiated by neonatal androgenization].

Female mice of an inbred Swiss strain were injected subcutaneously (s.c.) with either testosterone propionate or oil-vehicle on the day of birth. Once adult (8 week-old), they were spayed, and then treated either with dehydroepiandrosterone (80 micrograms/day s.c. for 15 days) or with solvent. The decrease of biting attacks by dehydroepiandrosterone was definitely more prominent in neonatally imprinted females than in controls.

Animals↗

Neurosteroids: a new brain function?

The biosynthesis of neurosteroids proceeds through cholesterol side-chain cleavage, and gives rise to pregnenolone (P) and dehydroepiandrosterone (D). These steroids accumulate in the rat brain independently of the supply by peripheral endocrine glands. This led to the discovery of a steroid biosynthesis pathway in rat brain oligodendrocytes based on enzyme immunocytochemistry and conversion of radioactive precursors to C-21 steroids. Several biological functions have been proposed for P and D. They may serve as precursors of other steroids (such as progesterone and testosterone and their metabolites). They are implicated in the control of some behavioural activities. They have excitatory effects on neurons, and they modulate the function of GABAA-receptors. These observations may apply to all mammalian species including the human, and the physiological significance of neurosteroid synthesis needs further investigation. The relationship between steroids and cerebral function may be reconsidered in the light of a new fact: the existence of a biosynthetic pathway of these compounds from cholesterol, assured in the brain by the oligodendrocytes, glial cells which synthesize myelin.

Animals↗

Neurosteroids: steroidogenesis in primary cultures of rat glial cells after release of aminoglutethimide blockade.

Newborn rat glial cells were established in primary culture for greater than or equal to 3 weeks under conditions previously reported to permit differentiation of cholesterol side-chain cleavage activity. The cells were incubated for 48h with 3-H-Mevalonolactone in presence of Mevinolin (avoiding isotopic dilution of endogenous origin) and aminoglutethimide, a blocker of cholesterol side-chain cleavage. Radioactive steroid synthesis was then allowed to proceed in absence of aminoglutethimide, for 16h in presence of Trilostane, an inhibitor of 3 beta-hydroxysteroid dehydrogenase precluding formation of delta 4-3-ketosteroids. 3H-cholesterol accounted for approximately 10 percent of the radioactivity in cell extracts. 3H-delta 5-pregnene-3 beta, 20 alpha-diol (20-OH P) was the major steroid produced and was released in the culture medium. Dexamethasone (10 nM) increased 20-OH P formation by 30 percent, whereas cellular 3H-cholesterol decreased more than expected from the augmented formation of 20-OH P.

Aminoglutethimide↗

Steroid synthesis in rat brain cell cultures.

Primary cultures derived from neonatal rat forebrains were established and cultured for several weeks. They grow entirely as glial cultures composed of oligodendrocytes and astrocytes. Glial cells undergo maturation and differentiation in culture. This was shown by measuring the oligodendroglial enzyme 2',3'-cyclic nucleotide 3'-phosphodiesterase (CNPase), a specific marker for expression of oligodendrocyte differentiation. CNPase activity increased from days 10-21 of culture. Both cell types were characterized by indirect immunofluorescence staining using monoclonal antibodies to galactocerebroside (Gal C) and myelin basic protein (MBP) for oligodendrocytes, and glial fibrillary acidic protein (GFAP) for astrocytes. Using the above criteria, we measured about 60% oligodendrocytes and 40% astrocytes after 3 weeks of culture. Oligodendrocytes, expressing Gal C and MBP, were highly immunoreactive to monospecific polyclonal antibodies to the cytochrome P-450scc, enzyme involved in the synthesis of pregnenolone from cholesterol. After incubation of glial cultures with [3H]mevalonolactone in the presence of mevinoline and trilostane, biosynthesis of [3H]cholesterol, [3H]pregnenolone (P) and [3H]pregn-5-ene-3 beta, 20 alpha-diol (20-OHP) was demonstrated. Steroid biosynthesis was related to oligodendroglial differentiation, as the initial and rapid rate of increase in CNPase activity was found to occur at the same time as the onset of steroid synthesis. Both reached a maximum at 3 weeks of culture and remained stable for several weeks. Steroid synthesis was increased by dibutyryl cAMP (0.2 mM), as well as by dexamethasone (10 nM). When aminoglutethimide, a potent inhibitor of cytochrome P-450scc, was added during the incubation of cells with [3H]mevalonolactone, [3H]cholesterol accumulated in the cells. After the release of aminoglutethimide blockade, [3H]20-OHP was the major steroid produced and released in the culture medium. The demonstration of de novo steroid biosynthesis and of the cholesterol side-chain cleavage cytochrome P-450 in normal rat glial cells brings additional support to the concept of "neurosteroids".

Aging↗

Suppressive effects of dehydroepiandrosterone and 3-beta-methylandrost-5-en-17-one on attack towards lactating female intruders by castrated male mice.

Three experiments were performed. In Experiment I, triads of adult castrated male mice were chronically administered with either oil-vehicle or 80 micrograms/day of dehydroepiandrosterone (D) or 3-beta-methylandrost-5-en-17-one (D-CH3). They were subsequently tested for their attack on a lactating intruder female introduced for 15 min in their home-cage, 2 hr after their last injection. Both D and D-CH3 significantly reduced male aggressive responses (cf. oil-injected category). In Experiment II the effects of D-CH3 dosed at 20, 40 or 80 micrograms/day were measured in the same testing situation. D-CH3 dose-dependently reduced the mice attack probability on lactating intruders with the highest dose being the most effective. Finally, to test in Experiment III that D-CH3 was not demonstrably androgenic, castrated males received daily injections of 20, 40 or 80 micrograms of this synthetic steroid for 4, 8, 16 or 32 days before tissue sampling. At all doses and whatever treatment duration, D-CH3 did not significantly increase the weights of the accessory sex organs.

Aggression↗

Pregnenolone, dehydroepiandrosterone, and their sulfate and fatty acid esters in the rat brain.

The rat brain contains large amounts of pregnenolone (P) and dehydroepiandrosterone (D) arising from local biosynthetic pathways. We have devised a procedure for the measurement of both "neurosteroids" either unconjugated or released from their sulfate (S) or fatty acid (L) esters. The measurements were performed at the acrophase of the circadian variation of neurosteroids, and confirmed the large accumulation of P (25 +/- 8 ng/g, mean +/- SD) and of PS (19 +/- 6 ng/g) and DS (2.1 +/- 0.5 ng/g) in the brain of adult male rats. We found that fatty acid esters constitute the major species of neurosteroids in brain (PL 46 +/- 14, and DL 36 +/- 7 ng/g, in adult males). The levels of P and DS were increased by daily injection of vehicle to intact males, whereas castration, without or with testosterone or estradiol supplementation (2 mg daily for 7 days), did not produce a significant change of neurosteroids concentrations. Measurements of neurosteroids had not been previously reported in cyclic females. The levels of P, PL, and DS were identical in proestrous females and in intact males, whereas PS (26 +/- 6 ng/g) and DL (50 +/- 16 ng/g) were increased in females. Compared to proestrous females, diestrous females had lower levels of PS (19 +/- 6 ng/g), DS (1.7 +/- 0.4 ng/g), and PL (43 +/- 19 ng/g). These differences suggested a modulatory role of ovarian secretions on the metabolism of neurosteroids.

Animals↗

Pregnenolone sulfate antagonizes barbiturate-induced hypnosis.

The potential influence of the neurosteroid pregnenolone sulfate (PrS) on barbiturate-induced hypnosis was tested in rats. PrS, when injected intracerebroventricularly or intraperitoneally, significantly shortened the sleep-time produced by pentobarbital. The results suggest an important physiological and pharmacological role for PrS in the regulation of CNS excitability.

Animals↗

Assessing the early luteal phase in in vitro fertilization cycles: relationships between plasma steroids, endometrial receptors, and endometrial histology.

The corpus luteum-endometrial unit was investigated in in vitro fertilization (IVF) cycles using endocrine, morphologic, and biochemical measurements on the day normally scheduled for embryo transfer (day 16), in 12 stimulated and 4 natural cycles. Advanced endometrial histologic maturity was recorded in 9 of the 12 stimulated cycles. No in-phase endometria were seen when the preovulatory plasma estradiol (E2) was greater than 500 pg/ml or the day 16 plasma progesterone (P) greater than 10 ng/ml in natural or stimulated cycles. Significant negative correlations were noted between both preovulatory E2 and day 16 P and the concentration of cytosolic progesterone receptor (PRc). Advanced endometrial maturity tended to be associated with low concentrations of PRc. Regardless of endometrial maturity, the natural cycle was characterized by low cytosolic E2 receptors (ERc) and high PRc, whereas the concentration of both receptors was usually greatly reduced in stimulated cycles. It is concluded that the advanced endometrial maturation observed in stimulated IVF cycles is a consequence of the production of supraphysiologic levels of sex steroids by the corpus luteum that cause profound modifications of endometrial receptor dynamics.

Clomiphene↗

Anti-Müllerian hormone produces endocrine sex reversal of fetal ovaries.

We have previously reported that anti-Müllerian hormone (AMH), also known as Müllerian-inhibiting substance, the testicular glycoprotein involved in regression of the Müllerian ducts of the male fetus, induces the formation of seminiferous cord-like structures in fetal ovaries exposed to it in organ culture. We have now investigated the effect of bovine AMH, purified to homogeneity, on ovarian endocrine differentiation. Ovine fetal ovaries exposed to AMH release testosterone instead of estradiol, an endocrine sex reversal due to suppression of aromatase activity. AMH dramatically decreases the conversion rate of testosterone to estradiol and also decreases total aromatase activity, as measured by the tritiated water technique. AMH acts by decreasing aromatase biosynthesis rather than by blocking enzyme activity, as suggested by the relatively long period of AMH exposure required to produce an effect. In the rabbit fetal ovary, aromatase activity is AMH-responsive during the whole gestational period. The basal steroidogenic activity of rat fetal ovaries is extremely low but can be markedly increased by cAMP. AMH completely blocks the effect of cAMP. Taken together, our results suggest that AMH plays a pivotal role in both morphological and endocrine gonadal sex differentiation.

Animals↗