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M Shemesh

Publications and source records attributed to M Shemesh.

At least 19 recordsLinked to original sources

Dexamethasone inhibition of cyclooxygenase expression in bovine term placenta.

Since both prostaglandin (PG) F2 alpha and corticosteroids are elevated in mammals before the onset of parturition, we studied the effect of the synthetic corticosteroid dexamethasone on PGF2 alpha accumulation and cyclooxygenase (prostaglandin synthase, PGS) expression in the bovine fetal placenta. Cultures were prepared from cotyledons at different stages of gestation. The effect of dexamethasone on PGF2 alpha accumulation and PGS expression was determined by radioimmunoassay and [35S]methionine metabolic labeling followed by immunoprecipitation with specific anti-cyclooxygenase antibodies, respectively. Data demonstrate that in fetal placental cells at term, both PGF2 alpha accumulation and cyclooxygenase expression are significantly inhibited after 18 hours of dexamethasone treatment (150 nM). In contrast, neither first nor second trimester cells were sensitive to dexamethasone treatment. Dexamethasone inhibition of PGF2 alpha synthesis in fetal cells at term was abolished in the presence of RNA or protein synthesis inhibitors (actinomycin D or puromycin, 10 micrograms/ml each). Neither progesterone nor 17 beta-estradiol accumulation were affected by dexamethasone treatment at any stage of gestation. Data suggest that corticosteroids play a role in parturition through PGF2 alpha synthesis regulation by fetal placental cells. Since abnormalities during parturition e.g. retained placenta, are common following dexamethasone induction of labor in cows, we postulate that the local inhibition of PGF2 alpha accumulation by cotyledon cells after corticosteroid administration, may be involved in placental retention.

Animals

Bovine placental progesterone synthesis: comparison of first and second trimesters of gestation.

We have previously reported that dispersed caruncle cells from cows during the first trimester of pregnancy, in comparison to caruncle cells from cows of more than 90 days of gestation, produce little progesterone (P4) and are refractory to agents that enhance steroidogenesis. To explain this refractoriness of the first-trimester cells, we determined (1) the expression of cytochrome P450 side-chain cleavage (P450scc) and its mRNA, (2) the expression of adrenodoxin, and (3) 3 beta-hydroxysteroid dehydrogenase activity. We first determined P4 and pregnenolone (P5) production by dispersed caruncle cells from the two gestation periods using RIA. It was found that P4 synthesis by bovine maternal caruncle cells was low or undetectable in the first trimester but increased more than 10-fold in the second trimester of gestation. Addition of 25-OH-cholesterol (5 micrograms/ml) to second-trimester maternal cells increased P5 production, but no effect was observed in first-trimester cells. With [3H]P5 used as substrate, analysis of metabolites on thin-layer chromatography indicated that first-trimester maternal cells synthesized a small amount of P4 (3.02% of total radioactivity) compared to second-trimester cells (16.4%). A readily detectable amount of 17 alpha-OH-P5 was produced by the second-trimester cells (5.02%) but not by the first-trimester cells (0.6%). No other metabolites could be characterized (less than 0.5%). Cytochrome P450scc expression and its mRNA and adrenodoxin content were determined by use of Western blot or dot-blot techniques. Proteins and mRNA were detected in maternal tissues of first and second trimesters of gestation.(ABSTRACT TRUNCATED AT 250 WORDS)

3-Hydroxysteroid Dehydrogenases

Regulation of steroidogenesis in the bovine placenta.

As pregnancy progresses in the cow, the secretory activity of the corpus luteum is markedly diminished. This reduced secretion is due to a decline in the number of viable luteal cells as well as reduction in the secretory activity and responsiveness of the cells to trophic agents. The principal extra-ovarian source of progesterone (P4) by mid-gestation therefore appears to be the placenta. Uniquely this P4 biosynthesis is cyclic-nucleotide independent, but the Ca+2 dependent. It therefore appears that the Ca+2 second messenger and protein kinase C systems are responsible for regulation of sterol biosynthesis in the cow placenta. Dispersed bovine caruncle cells from the first trimester of pregnancy in comparison to caruncle cells of older than 90 days of gestation produce little P4 and are refractory to agents which enhance placental steroidogenesis. In order to explain this refractoriness of the first trimester cells, we determine (1) the expression of P450scc and its mRNA and (2) the expression of adrenodoxin. It was found that P4 synthesis by bovine maternal caruncle cells was low or undetectable in the first trimester but increased more than 10-fold in the second trimester of gestation. Addition of 25-OH-cholesterol to second trimester maternal cells increased P5 production but no effect was observed in first trimester cells. Cytochrome P450scc and its mRNA and adrenodoxin content were determined using Western blot or dot-blot techniques. Both proteins and the mRNA were detected in maternal tissue of first and second trimesters of gestation. In conclusion low P4 levels synthesized by first trimester maternal cells are not due to the absence of either cytochrome P450scc or adrenodoxin protein or production of P450scc mRNA. The data suggest that the refractoriness of the maternal caruncle cells during the first trimester is the result of post-translational regulation.

Adrenodoxin

Cytokine involvement in oocytes and early embryos.

OBJECTIVE: The early events of reproduction involve a carefully modulated complex system of oocyte maturation, fertilization, and proliferation. The aim of the study was to measure the presence of cytokines, namely interleukin 1 (IL-1), interleukin 6 (IL-6), colony-stimulating factor 1 (CSF-1), and tumor necrosis factor (TNF) in the conditioned medium (CM) of the oocytes, granulosa cells, cumulus cells, one to eight-cell embryos and sperm. DESIGN: The material was obtained from men and women undergoing in vitro fertilization therapy. MAIN OUTCOME MEASURES: We hypothesized that cytokines might affect embryonic growth and differentiation as they show a pleotropic effect on immune cells. RESULTS: All these cytokines are present in significant quantities in the CM and were shown to be expressed in a sequential manner; thus, some are present in the oocyte and its vestment, the corona-cumulus complex (IL-1, IL-6, and CSF-1), whereas TNF appears only at the stage of six to eight-cell embryos. Inflammatory cytokines could not be detected in sperm samples. CONCLUSIONS: It is possible that these cytokines have a role in the regulation of embryonic development, maternal immunological recognition of pregnancy, and maintenance of proper hormonal environment.

Cytokines

Dexamethasone inhibition of prostaglandin production in human term placental cells is protein and ribonucleic acid synthesis dependent.

A key enzyme in the regulation of prostaglandin (PG) synthesis is PG synthase (PGS; cyclooxygenase), which converts arachidonic acid to PGs. Since both PGs and glucocorticoids are elevated before parturition, we studied the regulation of dexamethasone (DEX; 150 nM) on PGF2 alpha synthesis and PGS expression in human placental cells in vitro. Both first trimester and term placental cells were used. DEX reduced PGF2 alpha synthesis in human term placental cells, in contrast to first trimester cells which were unaffected by the same treatment. DEX inhibition of PGF2 alpha production by term placental cells was time and dose dependent. PGS expression was analyzed by [35S]methionine metabolic labeling and immunoprecipitation using polyclonal antibodies developed in rabbits against ram seminal vesicle PGS. DEX reduced PGS expression in term placental cells, but not in first trimester cells. In contrast to the effect of DEX on PGF2 alpha, progesterone and estradiol production by cells were unaffected at any stage of gestation examined. DEX inhibition of PGF2 alpha synthesis required de novo biosynthesis of RNA and proteins. These results suggest 1) corticosteroids play a role in the regulation of placental PG synthesis during parturition; 2) the inhibition of PG synthesis and PGS expression by glucocorticoids is RNA and protein biosynthesis dependent; and 3) induction of labor by glucocorticoids is not directly related to changes in placental progesterone or estradiol biosynthesis.

Arachidonic Acid

Granulosa cells as a source and target organ for tumor necrosis factor-alpha.

Tumor necrosis factor (TNF-alpha), a 17 kDa cytokine, is a product of activated macrophages which was recently shown to be produced by rat and bovine granulosa cells. In the present work, human granulosa cells derived from preovulatory follicles were used. It was demonstrated that human granulosa cells produce TNF-alpha (5-10 units/300,000 cells per 15 h). This production was increased by addition of follicle-stimulating hormone or by a combination of human chorionic gonadotrophin and CSF to the culture media. TNF was also found in bovine follicular fluid and the concentration was higher in the periovulatory than mid-cycle follicles. TNF-alpha was found to increase prostaglandin F-2 alpha production by human granulosa cells (P less than 0.001). We conclude that granulosa cells are both a source and target organ for TNF-alpha.

8-Bromo Cyclic Adenosine Monophosphate

Production and regulation of progesterone in bovine corpus luteum and placenta in mid and late gestation: a personal review.

In late pregnancy the secretory activity of the corpus luteum of the cow is markedly diminished. This reduced secretion is due to a decline in the number of viable luteal cells as well as reduction in the secretory activity and responsiveness of the cells to trophic agents. The principal extra-ovarian source of progesterone in late gestation appears to be the placenta, especially the fetal cotyledon, which was shown to produce progesterone throughout gestation. Uniquely, this progesterone biosynthesis is cyclic-nucleotide independent, but Ca2+ dependent. It therefore appears that the Ca2(+)-second messenger and protein kinase C systems are responsible for regulation of sterol biosynthesis in the cow placenta.

Animals

Effect of beta-endorphin on steroidogenesis by bovine luteal cells.

To determine if opioid peptides have a local effect on the modulation of progesterone (P4) synthesis, a study was made of the effect of beta-endorphin and leu-enkephalin on P4 production by pure preparations of small luteal cells and dissociated luteal cells comprising both small and large cells from cows 2-3 months pregnant. Corpora lutea were dispersed by collagenase, and the large and small luteal cells were separated using Percoll gradients. Viable luteal cells (5 x 10(5)) were incubated in 0.5 mL of Eagle medium for 2 h at 37 degrees C, in an atmosphere of 5% CO2. Cells were treated with 8-bromoadenosine 3',5'-monophosphate (8Br-cAMP), hCG, beta-endorphin (BE) and leu-enkephalin (LE) alone or in combination. When small luteal cells were used, P4 synthesis was significantly enhanced in the presence of opioid peptides alone (P less than 0.01); there was an additive effect with 8Br-cAMP and with hCG. For dissociated luteal cells, opioid peptides alone had no effect on P4 production but the stimulation of P4 production induced by 8Br-cAMP or hCG was significantly (P less than 0.01) inhibited in the presence of opioid peptides. In contrast, dissociated luteal cells that were preincubated with PGF2 alpha (degranulation) responded to the presence of BE with increased P4 synthesis similar to that seen with the pure preparation of small luteal cells. It is concluded that opioid peptides play an auto/paracrine role in both basal and tropic hormone-induced stimulation of steroidogenesis by the bovine luteal cell.

8-Bromo Cyclic Adenosine Monophosphate

Ultrastructural localization of cytochrome P-450scc in the bovine placentome using protein A-gold technique.

We have previously reported that the steroidogenic activity of the bovine placentome is stimulated by a calcium-mediated, cyclic nucleotide-independent mechanism and that this steroidogenesis is limited by the availability of sterol substrate to the side-chain cleavage enzyme. We have recently established that the antibody against bovine adrenal cytochrome P-450 cholesterol side-chain cleavage enzyme (P-450scc) can be used to specifically detect P-450scc in both bovine placentome and corpus luteum. In the present study, we used an immunogold technique to localize the P-450scc in the bovine placentome by electron microscopy. The mononucleate cell of the cotyledon showed both giant and normal-sized mitochondria, with the latter, predominating. Both mitochondrial types found in the mononucleate cells clearly displayed gold particles located on the cristae; in contrast, these particles were absent in the binucleate cells. It is worth noting that giant mitochondria were found exclusively in the placental mononucleate cells in both the fetal and maternal sites but not in the binucleate cells. These findings suggest that the cholesterol side-chain cleavage enzyme is present in bovine cotyledon cells, primarily in mononucleate cells. The variations in P-450scc immunoreactivity among different cells of the placenta are suggestive of different steroidogenetic capacities of the cells.

Animals

Regulation of side-chain cleavage enzyme and 3 beta-hydroxysteroid dehydrogenase by Ca2+ second messenger and protein kinase C systems in the placenta of the cow.

The steroidogenic activity of the bovine placenta is not modulated by cyclic nucleotide-mediated mechanisms. However, both translocation of intracellular Ca2+ and influx of extracellular Ca2+ activate the side-chain cleavage enzyme and 3 beta-hydroxysteroid dehydrogenase. Protein kinase C activation in concert with Ca2+ mobilization also activates the side-chain cleavage enzyme. Cholesterol availability is a rate-limiting factor. Using polyclonal antibodies against bovine adrenal cytochrome P-450scc, the presence of P-450scc was demonstrated in both placental and luteal tissues. The cytochrome P-450scc was then localized, using gold-staining electron microscopy, in the mononuclear cells but not the binuclear cells of the placentome. The results suggest that cholesterol is metabolized by the mononuclear cell to pregnenolone, where it is further metabolized to progesterone by the mononuclear and binuclear cells.

1-Methyl-3-isobutylxanthine

Partial purification of a luteotrophic substance from bovine fetal cotyledon granules.

To determine whether luteotrophic activity is present in the bovine placental granules, fetal cotyledons from fetuses of 50-100 days of gestation were used. Enriched granules were prepared using a Percoll gradient. Active substances were obtained from the granules by freeze-thawing. The extracts thus obtained were then eluted on a Sephacryl S-300 column. The resultant fractions were then analysed by (1) a radioreceptor assay for hCG-like substances and (2) a bioassay using progesterone production by bovine luteal cells. There were two peaks of activity, one indicative of a high molecular weight substance and the second of a low molecular weight substance. Higher molecular weight substances were eliminated by using acidic extracts. The low molecular weight fraction was further analysed using reverse phase h.p.l.c. (acetonitrile:water gradient). The elution of this substance at 45% acetonitrile resulted in a 100-fold increase in luteotrophic activity in the bioassay compared to the Sephacryl fraction. The small molecular weight substance is heat-stable and not extracted to the organic phase when partitioned between methanol and chloroform.

Animals

Control of bovine placental progestin synthesis: calcium dependent steroidogenesis is modulated at the site of the cholesterol side chain cleavage enzyme.

We have previously reported that progesterone synthesis in the bovine placenta is regulated by Ca2+ dependent and cyclic nucleotide independent mechanism. In studies conducted to further define the role of Ca2+ in the synthesis of progestins in bovine placental tissue, it was found that both protein kinase C (PKC), as determined by phosphorylation, and cytochrome P-450 side chain cleavage, as determined by Western blot analysis, were detectable in the steroidogenetically active portion of the placentome. To determine the site of action of PKC, fetal cotyledon cells were incubated in media containing 25-hydroxycholesterol in the absence or or presence of 10 ng/ml 12-O-tetradecanoyl-phorbol-13-acetate (TPA). It was found that TPA significantly (P less than 0.05) increased the conversion of the exogenous cholesterol analog to progesterone. To determine if the TPA could act synergistically with calcium activators, fetal cotyledon cells were incubated with either methyl isobutyl xanthine (MIX), an activator of intracellular calcium, or the calcium ionophore, A23187, which increases extracellular calcium influx, or both of these agents, in the presence or absence of TPA. It was found that TPA synergistically increased the conversion of sterol to progestins induced by submaximal concentrations of either MIX or A23187. In the presence of both compounds, TPA induced an even more dramatic increase in progestin synthesis. In experiments in which cyanoketone, an agent that inhibits the conversion of pregnenolone to progesterone, was added, TPA addition resulted in increased pregnenolone production, indicating that side chain cleavage of cholesterol is the site of action. The data, therefore, suggest that: (a) Ca2+ affects mechanisms regulating placental steroidogenesis; (2) one locus of Ca2+ is the cholesterol side chain cleavage reaction; and (3) PKC found in this tissue has a role in the Ca activated progestin production.

1-Methyl-3-isobutylxanthine

Control of bovine placental progesterone synthesis: roles of cholesterol availability and calcium-activated systems.

It was previously reported that dispersed bovine placentome secretes progesterone and that the steroidogenic activity of these cells is stimulated by a calcium-mediated, cyclic nucleotide independent mechanism. In the present study, the influence of substrate availability was explored and the roles of calmodulin and protein kinase C in progestin production examined. Incubation of dispersed fetal cotyledon cells with 25-hydroxycholesterol (25-OH-C), a soluble sterol which readily enters cells and is metabolized to steroid hormones, increased progesterone secretion in a dose-dependent manner. The response to 25-OH-C was dependent on the extracellular calcium concentration. Methyl isobutyl xanthine (MIX) alone also increased pregnenolone as well as progesterone secretion, and the combination of 25-OH-C and MIX stimulated progesterone secretion was inhibited by trifluoperazine. The phorbol ester, 12-O-tetradecanoyl-phorbol-13-acetate (TPA), caused no major effects on steroidogenesis but the stimulatory effects of MIX or the ionophore A23187 were enhanced in its presence. These findings suggest that (1) basal progesterone secretion by fetal cotyledon cells is limited by cholesterol availability; (2) MIX increases steroidogenesis in part by increasing the synthesis of pregnenolone, but its actions are expressed independently of cholesterol availability; (3) both calmodulin and protein kinase C may participate in the modulation of bovine placental steroidogenesis.

1-Methyl-3-isobutylxanthine

Calcium-dependent, cyclic nucleotide-independent steroidogenesis in the bovine placenta.

Dispersed bovine placental cells (fetal cotyledon and maternal caruncle) were shown to synthesize progesterone. To determine if their steroidogenic activity could be modulated by a cyclic nucleotide-mediated process, we added luteinizing hormone, 8-bromoadenosine 3',5'-monophosphate, 8-bromoguanosine 3',5'-monophosphate, adenosine, or cholera toxin to dispersed cells from placentomes of 100-283 days gestational age and examined progesterone synthesis during 3-to 16-hr incubation periods. Net progesterone production, defined as the amount of progesterone released in excess of the zero-time cellular progesterone content, was determined by using a specific RIA. None of these agents significantly affected progesterone synthesis. In contrast, the phosphodiesterase inhibitor 3-isobutyl-1-methylxanthine (MIX; 0.2-0.5 mM) caused a marked increase in progesterone formation. In time course studies it was found that MIX produced a 5-fold increase in progesterone production in 16 hr, with steroid production increasing linearly during this time. MIX also increased the conversion of exogenous pregnenolone to progesterone by placental cells. In view of the failure of cyclic nucleotide analogues and activators of adenylate cyclase to stimulate steroidogenesis, it was necessary to consider other modes of action of MIX. Since MIX is known to affect intracellular calcium translocation, we examined the effects of the calcium ionophore A23187 on progesterone formation. This drug enhanced progesterone formation and augmented the stimulatory effects of MIX. The stimulatory action of A23187 was not affected by cyclic nucleotide analogues. Our data suggest that progesterone synthesis in the bovine placentome is calcium dependent and cyclic nucleotide independent.

1-Methyl-3-isobutylxanthine

Foetal testicular steroidogenesis and responsiveness to LH in freemartins and their male co-twins.

Foetal gonads were obtained from 1) 8 male foetuses that were co-twin to freemartins, 2) 8 isosexual twins, 3) 59 singletons of 45-75 days of gestations, 4) 5 isosexual and 5 male co-twins of 90-120 days and 5) 5 freemartins at 70-120 days of gestation. The gonads were incubated in supplemented medium 199 for 24 h in the absence or presence or LH and the testosterone and progesterone produced measured by RIA. During the time of sexual differentiation (45-75 days) the testes of the male co-twins produced significantly less testosterone than testes from isosexual or singletons of the same age. Testes of foetuses older than 90 days were refractory to LH-stimulation, but freemartin ovaries and testes from their male co-twins continued to respond to LH with increased testosterone production. No significant differences in progesterone production were detected amount co-twins, isosexual twins or singletons at any age. We conclude that the testes of the male twin that is co-twin to a freemartin displays abnormal steroidogenesis. This may be related to reports of abnormal testes after birth in males co-twin to freemartins.

Animals

Modulation of bovine placental prostaglandin synthesis by an endogenous inhibitor.

An endogenous, heat-labile, inhibitor of prostanoid synthesis in maternal caruncle tissue of bovine placentomes was studied. Inhibitory activity was present in caruncle extracts from days 120-250 of gestation, but was not detectable at term (260-280 days). The disappearance of inhibitory activity coincided with an increase in the secretion of prostanoids by dispersed caruncle cells in culture. Coculture of caruncle cells from placentomes of 120-day gestation with fetal cotyledon cells resulted in suppression of prostanoid synthesis by the cotyledon cells. However, this inhibition was not observed in cocultures of dispersed caruncle cells and fetal cotyledon cells from term placentomes. Our findings indicate that an endogenous inhibitor modulates bovine placental prostaglandin synthesis. A decline in the level of this inhibitor at term may be one factor triggering increased prostanoid synthesis required for parturition.

Animals

The role of 17 beta-estradiol in the recovery from oviductal prolapse in layers.

Plasma 17 beta-estradiol concentrations, thecal estrogen content, and uterine prostaglandin synthetase activity were measured in healthy and prolapsed hens as well as in layers that recovered after exposure to low intensity lighting (250 or 50 lx). The effect of estradiol benzoate injections (100 ng, 3 X per week) in hens exposed to high intensity light (greater than 500 lx) was also studied. Prolapsed hens had significantly lower plasma 17 beta-estradiol concentrations (60 +/- 12 pg/ml; mean +/- SEM) than recovered (374 +/- 40 pg/ml) or healthy hens (475 +/- 45 pg/ml). Theca cells from recovered hens had a significantly higher content of 17 beta-estradiol (.7 ng/5 X 10(5) cells) than theca cells from normal or prolapsed birds (.3 ng/5 X 10(5) cells). Microsomes prepared from the uteri of prolapsed hens converted significantly less arachidonic acid to prostaglandin metabolites (4.4%) than did microsomes from healthy or recovered birds (9.0%). Treatment of prolapsed hens with estradiol benzoate resulted in 89% of the birds recovering within 3 weeks compared to a 4% recovery rate in the controls. We conclude that restoration of peripheral 17 beta-estradiol concentrations to normal levels was concomitant with recovery in prolapsed birds, and suggest that the estrogen exerts its effect by raising the level of prostaglandin synthetase activity in the uterus.

Animals