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E Y Adashi

Publications and source records attributed to E Y Adashi.

At least 19 recordsLinked to original sources

Follicle-stimulating hormone inhibits granulosa cell 5 alpha-reductase activity. Possible role of 5 alpha-reductase as a steroidogenic pubertal switch.

In order to elucidate the role of 5 alpha-reductase in the ovarian pubertal transition from 5 alpha-reduced to non-5 alpha-reduced steroids, we examined the characteristics and regulation of granulosa cell (GC) 5 alpha-reductase activity. Maximum activity was observed at 37 degrees C and at a pH of 6.5-8.0. Synthetic 4-aza-3-oxosteroids proved to be potent inhibitors (76% inhibition at 0.1 microM) of ovarian 5 alpha-reductase activity, and 20 alpha-DHP was a better substrate than either progesterone or testosterone (4- or 7-fold higher affinity constants, respectively). The Km (20 alpha-DHP) of the enzyme was 0.50 +/- 0.03 microM and 0.75 +/- 0.20 microM in homogenates of whole ovaries and GC, respectively. 17 beta-Estradiol was a non-competitive inhibitor (KI = 6.97 microM). 5 alpha-Reductase activity was 22-fold (immature) to 68-fold (mature) higher in liver than ovary and 4-fold higher in theca-interstitial shells than in isolated GC. Ovarian 5 alpha-reductase activity decreased markedly with age (greater than 60% inhibition in mature, randomly cycling rats as compared to immature rats). In vivo administration of follicle-stimulating hormone (FSH) to immature rats produced a dose-dependent decrease in GC 5 alpha-reductase activity (36 +/- 1.1% and 46 +/- 5.9% inhibition following 12 micrograms and 24 micrograms FSH, respectively). Similarly, the in vitro provision of FSH (100 ng/ml) to cultured GC from immature rats resulted in (36-59%) inhibition in 5 alpha-reduced steroids. Inasmuch as FSH promotes GC development and the advancement of puberty, its ability to "switch-off" ovarian 5 alpha-reductase activity may enhance the formation of biologically potent (i.e. non-5 alpha-reduced) progestins as well as the availability of aromatizable androgens, in the best interests of pubertal steroidogenesis.

Animals

The potential relevance of cytokines to ovarian physiology.

Elucidating the secrets of intraovarian intercellular communication constitutes a central area of investigation. While most attention has been directed thus far at the somatic cellular components of the ovary, the potential role(s) and relative importance of the resident ovarian white blood cell have received relatively limited attention. Efforts are currently under way to reconcile traditional ovarian physiology with observations relevant to intraovarian components of the white blood cell series. In this connection, it is important to note that unlike some gonadal compartments, the ovary does not constitute an immunologically privileged site. Thus, resident ovarian representatives of the white blood cell series can be observed at various stages of the ovarian life cycle. Current concepts suggest that regulatory cellular networks formerly viewed in immune terms now fall within the broad domain of endocrinology. Viewed in this light, resident ovarian representatives of the white blood cell series may constitute potential in situ modulators of ovarian function acting in all likelihood through the local secretion of regulatory cytokines. As the flow of information is probably multi directional, the very same cells are probably targeted for steroidal and peptidergic input in keeping with the existence of multiple autocrine and paracrine loops.

Cytokines

Intraovarian regulation: the IGF-I example.

A large body of information now supports the existence of an intraovarian system of insulin-like growth factors (IGFs) replete with ligands, receptors, and binding proteins. The intraovarian IGF system is most likely concerned with the amplification of gonadotrophin hormonal action, other potential regulatory roles remaining speculative at this time. There is every reason to believe that work in the next few years will yield the insight necessary to establish whether or not IGFs are truly indispensable to ovarian function; this remains to be demonstrated through selective ablation of ovarian IGF-I gene expression and the examination of the impact of such manipulation on reproductive potential.

Animals

Human intraovarian interleukin-1 (IL-1) system: highly compartmentalized and hormonally dependent regulation of the genes encoding IL-1, its receptor, and its receptor antagonist.

To delineate the scope of the human intraovarian IL-1 system we used a solution hybridization/RNase protection assay to test for expression of the genes encoding IL-1, its type I receptor (IL-1R), and its receptor antagonist (IL-1RA). IL-1 transcripts were not detected in whole ovarian material from days 4 or 12 of an unstimulated menstrual cycle but transcripts (IL-1 beta much greater than IL-11 alpha) were detected in preovulatory follicular aspirates from gonadotropin-stimulated cycles. Concurrently obtained peripheral monocytes did not contain IL-1 beta transcripts but macrophage-depleted follicular aspirates did, thus implicating the granulosa cells as the site of IL-1 expression. IL-1R transcripts were detected in RNA from whole ovaries and follicular aspirates but not in RNA from peripheral monocytes. IL-1RA transcripts were detected in whole ovarian material as well as in macrophage-free follicular aspirates. Cultured human granulosa and theca cells did not contain mRNA for IL-1 beta or IL-1RA but did contain mRNA for IL-1R. Treatment of cell cultures with forskolin (25 microM) induced IL-1 beta transcripts in granulosa but not theca cells. Forskolin also increased the basal levels of IL-1R transcripts in both granulosa and theca cells but did not induce IL-RA transcripts in either cell type. Taken together, these findings reveal the existence of a complete, highly compartmentalized, hormonally dependent intraovarian IL-1 system replete with ligands, receptor, and receptor antagonist.

Adult

Granulosa cell-derived insulin-like growth factor (IGF) binding proteins are inhibitory to IGF-I hormonal action. Evidence derived from the use of a truncated IGF-I analogue.

An increasing body of information now suggests that insulin-like growth factor (IGF) binding proteins (BPs) may serve as antigonadotropins at the level of the ovary. It is the objective of the present communication to evaluate the functional role of endogenous (granulosa cell-derived) IGFBPs by exploiting the unique properties of des(1-3)IGF-I, a naturally occurring IGF-I analogue characterized as a weak ligand of IGFBPs but not of type I IGF receptors. Given IGFBP-replete circumstances, des(1-3)IGF-I proved more potent (10-fold) than its intact counterpart in promoting the follicle stimulating hormone (FSH)-stimulated accumulation of progesterone by cultured rat granulosa cells. In contrast, des(1-3)IGF-I proved virtually equipotent to the unmodified principle under IGFBP-deplete circumstances. Taken together, these findings are in keeping with the notion and that the apparently enhanced potency of des(1-3)IGF-I (under IGFBP-replete conditions) is due to its diminished affinity for endogenously generated IGFBPs and that rat granulosa cell-derived IGFBPs are inhibitory to IGF (and thus inevitably to gonadotropin) hormonal action. Accordingly, the reported ability of gonadotropins to attenuate IGFBP release by granulosa cells may be designed to enhance the bioavailability of endogenously generated IGFs in the best interest of ovarian steroidogenesis.

Animals

Rat ovarian insulin-like growth factor binding protein-3: a growth hormone-dependent theca-interstitial cell-derived antigonadotropin.

To further the identification and characterization of insulin-like growth factor binding proteins at the level of the immature rat ovary, we have set out to study the ovarian expression, cellular localization, and hormonal regulation of the insulin-like growth factor binding protein (IGFBP)-3. To this end, use was made of a solution hybridization/RNAse protection assay wherein ovarian total RNA from immature (21-23 days old) female rats was hybridized with a 343 bases-long [32P]-labeled rat IGFBP-3 riboprobe. As in liver, a single protected fragment (315 bases-long) corresponding to IGFBP-3 transcripts was identified in whole ovarian material. Cellular localization studies revealed the IGFBP-3 gene to be exclusively expressed in the theca-interstitial rather than the granulosa cell compartment. To confirm presence and cellular distribution of the IGFBP-3 protein, media conditioned by cultured granulosa cells, theca-interstitial cells, and whole ovarian dispersates were subjected to Western Ligand Blotting. Importantly, media conditioned by cultured theca-interstitial (but not granulosa) cells displayed an IGFBP the size of rat IGFBP-3 (46kDa) as determined by comigration with a rat serum standard. A similarly-sized band was apparent in media conditioned by cultured whole ovarian dispersates reflecting in all likelihood the contribution of the theca-interstitial cell component. Significantly, deglycosylation of media conditioned by cultured theca-interstitial cells revealed the glycosylated nature of the 46kDa IGFBP species as judged by the apparent reduction in its molecular size to 35kDa. Similar alterations were noted in corresponding rat serum samples. Hypophysectomy of immature rats resulted in a modest but statistically insignificant decrease in the relative (densitometrically-quantified) abundance of ovarian IGFBP-3 transcripts, an effect further augmented by the systemic provision of either FSH or diethylstilbestrol (DES). In contrast, systemic treatment of hypophysectomized rats with GH produced a marked (3.2-fold) increase (P less than 0.05) in the steady state levels of ovarian (as well as hepatic) IGFBP-3 transcripts. However, the concurrent provision of either FSH or DES resulted in substantial (P less than 0.05) attenuation (78 and 57% inhibition, respectively) of the upregulatory GH effect. These findings document the highly compartmentalized expression of the IGFBP-3 gene at the level of the immature rat ovary, implicate the theca-interstitial cell as the sole source of its generation, reveal its pituitary dependence, and disclose its diametrically-opposed (indeed antagonistic) regulation by FSH (or estrogens) and GH.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals

Interleukin-1 stimulates ovarian prostaglandin biosynthesis: evidence for heterologous contact-independent cell-cell interaction.

An increasing body of information now suggests the existence of a complete intraovarian IL-1 system replete with ligands, receptor, and receptor antagonist. Since IL-1 is an established mediator of inflammation and since ovulation may constitute an inflammatory-like reaction, consideration may be given to the possibility that IL-1 may play an intermediary role in the ovulatory process. To further assess the above hypothesis, we have set out to determine whether IL-1 is capable of promoting ovarian prostaglandin biosynthesis, an established component of the ovulatory cascade. Cultured whole ovarian dispersates from immature (25 day old) rats constitutively elaborated major prostaglandin species (PGE2 greater than PGF2 alpha) in a cell density-dependent fashion. Treatment with IL-1 produced dose-dependent increments in prostaglandin (PGE2 greater than PGF2 alpha) accumulation as compared with untreated controls. Comparable cellular densities of untreated or IL-1 beta-treated whole ovarian dispersates elaborated substantially more PGE2 as compared with isolated granulosa or theca-interstitial cell preparations suggesting a requirement for cell-cell interaction. Indeed, cell contact-dependent reconstitution experiments involving isolated granulosa and theca-interstitial cells at a projected physiologic ratio of 4:1 revealed synergistic interactions in the elaboration of PGE2 under both basal and IL-1 beta-treated circumstances. Identical results were obtained for cell contact-independent heterologous (but not homologous) coculture experiments. Taken together, our present findings reveal optimal basal and IL-1-stimulated ovarian prostaglandin (PGE2 greater than PGF2 alpha) biosynthesis to require heterologous, contact-independent, presumably humorally-mediated, cell-cell interaction. These observations along with the demonstration of the gonadotropin-dependent preovulatory induction of ovarian IL-1 beta gene expression provide strong support for the view that IL-1 may be the centerpiece of an intraovarian regulatory loop concerned with the promotion of the preovulatory cascade.

Animals

Expression of the insulin-like growth factor (IGF)-I and -II and the IGF-I and -II receptor genes during postnatal development of the rat ovary.

Solution hybridization/RNase protection assays were used to study the developmental expression of the insulin-like growth factor-I (IGF-I), IGF-II, IGF-I receptor, and IGF-II/mannose-6-phosphate receptor genes in the rat ovary between postnatal days 1-80. Maximal IGF-I mRNA levels occurred during the 15- to 25-day postnatal period, and the level on day 20 represented a 9-fold increase over the baseline at earlier and later stages. IGF-II mRNA levels were maximal during the 1- to 5-day postnatal period and subsequently declined to undetectable levels after day 10. IGF-I receptor mRNA levels increased 10-fold to a maximum in the 20- to 25-day postnatal period. This pattern was similar to the developmental pattern of [125I]IGF-I binding in the ovary. Two apparent peaks of IGF-II/mannose-6-phosphate receptor mRNA levels were seen, on day 20 and between days 50-80. These specific and significant changes in the expression of the genes encoding the IGFs and their receptors suggest a role for the IGF system in postnatal ovarian development.

Aging

Interleukin-1 is both morphogenic and cytotoxic to cultured rat ovarian cells: obligatory role for heterologous, contact-independent cell-cell interaction.

An increasing body of information now suggests that intraovarian interleukin-1 (IL-1) may play an intermediary role in the ovulatory process. Given that follicular rupture inevitably requires marked tissue remodeling and possibly cell death, we set out to examine the morphogenic potential of IL-1 under in vitro circumstances. Treatment of freshly plated whole ovarian dispersates from immature rats with any one of several batches of IL-1 (10 ng/ml) for up to 96 h produced marked time-dependent morphological alterations, including cellular retraction, rounding, clumping, aggregation, blebbing, swelling, and, ultimately, irreversible detachment. Evidence of (asynchronous) cell death consisted of reduced total cell number, diminished cellular protein content, enhanced cellular release of lactic dehydrogenase, failure to exclude trypan blue, and attenuated reduction of the tetrazolium dye 3-[4,5-dimethylthiazol-2-y]2,5-diphenyltetrazolium bromide to spectrophotometrically detectable formazan. Comparable results were obtained when using established day 4 cultures, arguing against a possible critical action of IL-1 at the time of plating. Dose-response curves revealed IL-1 beta (EC50, 0.2-0.4 ng/ml) to be substantially more potent than IL-1 alpha (EC50, 2.7-2.8 ng/ml). Importantly, the concurrent provision of an IL-1 beta-directed polyclonal antibody yielded complete immunoneutralization of the IL-1 beta effect, arguing against the possible involvement of a non-IL-1 contaminant. An unrelated polyclonal antiserum raised against insulin-like growth factor-I was without effect. IL-1 action proved relatively specific, in that tumor necrosis factor-alpha (10 ng/ml), a putative cytotoxic principle, as well as IL-1-inducible ILs (IL-2 and -6; 100 U/ml) were without effect. Although minimally effective at the level of the isolated granulosa or theca-interstitial cell, IL-1 proved highly potent in heterologous (but not homologous), contact-dependent and independent cocultures of these somatic cell types, strongly suggesting obligatory cell-cell cooperation. These observations further indicate that IL-1 action is indirect and may require the induction of an intermediary soluble principle to serve as the final effector. Taken together, these findings indicate that relatively low concentrations of IL-1 (beta >> alpha), possible of somatic ovarian cell or resident ovarian macrophage origin, are capable of exerting specific dose- and time-dependent (immunoneutralizable) morphogenic as well as cytotoxic effects at the level of ovarian cells.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals

Endothelin-1 as a luteinization inhibitor: inhibition of rat granulosa cell progesterone accumulation via selective modulation of key steroidogenic steps affecting both progesterone formation and degradation.

Endothelin (ET)-1, is a 21 amino acid vasoactive peptide subject to regulation by cellular oxygen tension. However, an increasing body of information now suggests that ET-1 is a multifunctional peptidergic regulator the actions of which are not limited to the vascular system. Although ET-1 has been shown to inhibit the gonadotropin-supported accumulation of progesterone by cultured granulosa cells, the precise cellular mechanism(s) involved remain unknown. It was therefore the objective of this study to examine in greater detail the effects of ET-1 on progestin economy in cultured granulosa cells from immature rats. Treatment with ET-1 was inhibitory to the FSH-supported accumulation of progesterone in a dose-dependent manner, an action characterized by a median inhibitory dose of 2 x 10(-11) M and a maximal inhibitory effect of 90%. This inhibitory action of ET-1 was reversible following extensive washing and could not be accounted for by a decrease in the viable cell mass. Evaluation of the activities of progesterone-forming enzymes revealed ET-1 to be a potent (P < 0.01) inhibitor of cholesterol side-chain cleavage and 3 beta-hydroxysteroid dehydrogenase (HSD)/isomerase (76.1 +/- 1.2% and 47.3 +/- 8.6% inhibition, respectively). Cellular radiolabeling with [3H]pregnenolone confirmed an ET-1-induced inhibition of the FSH-supported accumulation of radiolabeled progesterone. However, this effect was concomitant with enhancement of the accumulation of more distal metabolites, i.e. 20 alpha-dihydroprogesterone, 5 alpha-pregnane-3 alpha, 20 alpha-diol, and 5 alpha-pregnane-3 alpha-ol-20-one. Analysis of the FSH-supported activities of the progesterone-degrading enzymes revealed ET-1 as a potent (P < 0.05) stimulator of 20 alpha-HSD and 5 alpha-reductase (3.6 +/- 1.0 and 1.7 +/- 0.3-fold, stimulation respectively). In contrast, no significant changes were observed in 3 alpha-HSD activity. Taken together, our findings demonstrate that the ET-1 induced inhibition of gonadotropin-supported progesterone accumulation constitutes a complex phenomenon wherein ET-1 inhibits the activities of steroidogenic enzymes concerned with progesterone formation while enhancing the activities of enzymes concerned with progesterone degradation. We speculate that ET-1, possibly of intraovarian origin, acts as a luteinization-inhibitor to suppress premature luteinization at a time when continued preovulatory expression of ET-1 (in the intact but not ruptured follicle) may be contingent upon relative intrafollicular hypoxia.

20-alpha-Dihydroprogesterone

Expression of the genes encoding the insulin-like growth factors and their receptors in the human ovary.

Insulin-like growth factor-I (IGF-I) and IGF-II have been proposed as potential regulators of ovarian function. To gain further insight as to the possible role(s) of the IGFs in human ovarian physiology, we have characterized the expression of the genes encoding the IGFs and their corresponding receptors in the human ovary using solution hybridization/RNase protection assays. IGF-I gene expression was evident in liver, placenta, and whole premenopausal ovary, but not in luteinized granulosa cells. Use of 3'- and 5'-specific antisense RNA probes revealed the presence of IGF-I mRNAs encoding both the Ea and Eb forms of the E-peptide as well as potential 5'-untranslated region splicing variants in liver, placenta, and whole menopausal ovary. Immunohistochemical studies localized the IGF-I peptide to the thecal-interstitial compartment. IGF-II mRNA transcribed from the fetal or fetal-neonatal IGF-II promoter was found in whole premenopausal ovary, luteinized granulosa cells, and placenta. Insulin and type I and type II IGF receptor mRNAs were detected in all tissues examined. Two protected probe fragments were seen with the type I IGF receptor probe in each case, suggesting the possibility of alternate splicing. These studies provide further evidence for a role of these growth factors in human ovarian function.

DNA

Intraovarian peptides. Stimulators and inhibitors of follicular growth and differentiation.

It was the objective of this article to highlight the concept of putative intraovarian regulators and their emerging role in normal ovarian physiology. A sample of representative putative intraovarian regulators has been provided, although the listing is far from complete. There is every reason to expect that novel putative intraovarian regulators will be uncovered in the foreseeable future, adding further complexity to the ovarian life cycle. That notwithstanding, knowledge gained in the process is expected to emphasize key aspects of ovarian physiology, thereby improving our overall understanding of the workings of this complex organ.

3-Hydroxysteroid Dehydrogenases

Cushing syndrome in pregnancy.

The occurrence of pregnancy in the face of untreated Cushing syndrome is rare because of the high incidence of ovulatory disturbances experienced by patients with the disorder. A total of 58 patients with 65 pregnancies has been reported in the literature to date. Although pituitary-dependent adrenal hyperplasia is the most common etiology of Cushing syndrome in the general population, adrenal adenoma is more common in the pregnant population. Significant maternal morbidity is attributable to hypertension, congestive heart failure, and poor tissue healing. Prematurity and intrauterine growth retardation account for most of the perinatal morbidity; perinatal mortality is substantial. Treatment directed at relieving hypercortisolism has been instituted during pregnancy: Pituitary or adrenal surgery, chemotherapy, and pituitary irradiation have all been reported, with variable results. Information is lacking on any alteration of maternal morbidity after treatment. The impact of therapy on perinatal outcome appears limited to a reduction in the prematurity rate, but overall numbers are small and such a conclusion should be viewed with caution. No significant maternal or perinatal complications secondary to treatment itself were reported.

Cushing Syndrome

Cytokine-mediated regulation of ovarian function. Tumor necrosis factor alpha inhibits gonadotropin-supported ovarian androgen biosynthesis.

Resident ovarian macrophages have been implicated in the regulation of ovarian function, presumably through local paracrine secretion of regulatory molecules (i.e. cytokines). One such macrophage product, tumor necrosis factor (TNF) alpha, has been shown to attenuate the gonadotropin-dependent differentiation of the somatic ovarian (estrogen-producing) granulosa cell. This study examines the possibility that TNF alpha may also regulate the adjacent androgen-producing theca interstitial cell. The basal accumulation of androsterone (the major androgenic steroid), synthesized by whole ovarian dispersates from immature rats, remained unchanged following treatment with TNF alpha (30 ng/ml) alone. In contrast, concurrent treatment with increasing concentrations of TNF alpha (0.03-30 ng/ml), yielded dose-dependent inhibition of the human chorionic gonadotropin (1 ng/ml)-stimulated accumulation of androsterone. This reversible and immunoneutralizable effect of TNF alpha was characterized by a minimal effective dose of 0.1 ng/ml, a median inhibitory dose of 0.9 ng/ml, a maximal inhibitory effect of 90%, and a minimal time requirement of less than or equal to 48 h. Comparable results were obtained when using highly purified theca interstitial cells, thereby indicating that TNF alpha is capable of exerting a direct inhibitory effect at the level of the ovarian androgen-producing cell. TNF alpha action was not accounted for by alterations in the plated viable cell mass. Instead, treatment with TNF alpha resulted in significant inhibition of the human chorionic gonadotropin-supported accumulation of cAMP, the putative second messenger of gonadotropin hormonal action. TNF alpha action at sites distal to cAMP generation was associated with profound inhibition of the conversion of the [3H]pregnanolone (3 alpha-hydroxy,5 alpha-pregnane-20-one) and [3H]17 alpha-hydroxypregnanolone (3 alpha, 17 alpha-dihydroxy,5 alpha-pregnane-20-one) substrates to androsterone, suggesting stimulation of 20 alpha-hydroxysteroid dehydrogenase activity, inhibition of 17 alpha-hydroxylase/17:20 lyase activity, or both. Taken together, these findings indicate that TNF alpha, acting at relatively low concentrations, is capable of inhibiting gonadotropin-supported ovarian androgen biosynthesis by selectively modulating the activity of relevant key steroidogenic enzymes. As such, these observations suggest that the theca interstitial cell is a site of TNF alpha reception and action and that TNF alpha, possibly of resident ovarian macrophage origin, may partake in the regulation of ovarian androgen production, an effect due in part to inhibition of the activity of the key steroidogenic enzymes 17 alpha-hydroxylase/17:20 lyase.

Androsterone