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J L Tilly

Publications and source records attributed to J L Tilly.

At least 73 records · Page 4Linked to original sources

Enhanced expression of bax in small preantral follicles during 4-vinylcyclohexene diepoxide-induced ovotoxicity in the rat.

4-Vinylcyclohexene diepoxide (VCD) destroys small preantral (25-100 microns) ovarian follicles after repeated dosing in mice and rats. A previous study determined this follicular destruction is via apoptosis (physiological cell death). The purposes of this study were to examine the effects of VCD on amounts of mRNA for several genes that might be involved in this ovotoxic response and to determine the specificity of this response for small preantral follicles. The genes of interest were bax, a cell death gene; three forms of the antioxidant enzyme, superoxide dismutase (mitochondrial manganese-containing or MnSOD, cytosolic copper/zinc-containing or Cu/ZnSOD, and secreted or secSOD); and microsomal epoxide hydrolase (mEH), involved in detoxification of VCD. Female Fischer 344 rats were administered daily doses (10 days) of vehicle control (sesame oil) or VCD (80 mg/kg, ip). Four hours after the last injection, livers and ovaries were removed. Small (25-100 microns) and large (100-250 microns) preantral follicles were separated from the ovaries by gentle dissociation and collected by mouth pipeting. Total RNA was extracted from all tissues, reverse transcribed into first-strand cDNA, and amplified by polymerase chain reaction using oligonucleotide primers specific for each gene. Relative levels of mRNA were visualized by agarose gel electrophoresis and autoradiography and quantified by densitometric analysis. Coamplification of ribosomal protein L19 (constitutively expressed in ovarian tissue) was used for normalization in each sample. Increased levels of mRNA for bax (172 +/- 20% of control, p < 0.05), MnSOD (248 +/- 70% of control, p < 0.05), and mEH (352 +/- 120% of control, p < 0.05) were measured in 25- to 100-microns follicles collected from VCD-treated compared with control rats. Unlike 25- to 100-microns follicles (the targets of ovotoxicity), in 100- to 250-microns follicles (nontargets) there were no changes (p > 0.05) in mRNA levels for bax or MnSOD in VCD-treated rats; however, mRNA levels for mEH were significantly decreased (79 +/- 4% of control, p < 0.05), compared with control. No changes in levels of mRNA for mEH were observed in liver from VCD-treated rats relative to control. Additionally, in liver VCD caused a significant decrease in mRNA levels for bax (31 +/- 5% of control, p < 0.05) and Cu-ZnSOD (56 +/- 17% of control, p < 0.05). In summary, dosing of rats with VCD enhanced expression of mRNA encoding several genes that might respond during the induction of ovotoxicity. The selective increase in bax in the population of follicles destroyed by repeated dosing with VCD may reflect their susceptibility to apoptosis.

Animals↗

Apoptotic cell death in the rat adrenal gland: an in vivo and in vitro investigation.

Adrenocortical cell apoptosis was studied by using an established in vivo model, the hypophysectomized rat, and an in vitro model, viz., rat adrenal glands in short-term organ culture. In vivo, apoptosis (biochemical autoradiographic analysis of internucleosomal DNA cleavage) was weak and not apparent until 12-24 h after hypophysectomy. In situ histochemical localization of 3'-end DNA strand breaks revealed that apoptosis in vivo occurred nearly exclusively in subpopulations of zona reticularis cells. Adrenocorticotropic hormone (ACTH) maintenance completely blocked these indices of apoptosis. By contrast, apoptosis (DNA fragmentation) in cultured rat adrenal glands without ACTH was extensive and relatively rapid, being apparent after 1 h and increasing with the duration of incubation. ACTH attenuated (by 44%) but did not completely block apoptosis in vitro. Thus, ACTH appears to be the sole pituitary hormone that forestalls apoptosis of terminally differentiated adrenocortical (zona reticularis) cells. However, the discrepancy between in vitro and in vivo models in terms of the magnitude and rate of DNA fragmentation suggests that, in vivo, other factors finely regulate the magnitude of adrenocortical apoptotic cell death.

Adrenal Cortex↗

Activin inhibits basal and androgen-stimulated proliferation and induces apoptosis in the human prostatic cancer cell line, LNCaP.

LNCaP cells, derived from an androgen-sensitive cell line widely employed as an in vitro model of human prostate cancer, have been shown to express activin receptors. Activin is a local regulator of cellular growth, appears to play a key role in mesoderm induction and differentiation during development, and has been implicated in gonadal tumorigenesis. Follistatin, a monomeric glycoprotein that specifically binds and neutralizes activin, is often coexpressed with activin and, thus, modulates the autocrine/paracrine biological activity of this potent growth factor. We tested the hypothesis that LNCaP growth is modulated by the activin/follistatin system. Recombinant human activin A inhibited [3H]thymidine incorporation in a dose-dependent fashion with an ED50 of approximately 0.43 +/- 0.3 nM. Activin (0.1-3 nM) also inhibited dihydrotestosterone (DHT)-stimulated [3H]thymidine incorporation in LNCaP cells. Similarly, recombinant human inhibin A inhibited LNCaP proliferation, but was only 1/100th as potent as activin. Furthermore, activin (3 nM) induced a 3-fold increase in the extent of labeling of low mol wt DNA fragments typical of apoptosis. Activin-induced apoptosis was also indicated by an increase in the number of cells with reduced DNA content, as measured by flow cytometry of activin-treated cells. Both activin-mediated inhibition of cell proliferation and induction of apoptosis could be completely blocked by recombinant human follistatin. Based upon these results using an in vitro model, we speculate that activin functions locally to oppose androgen-driven cell proliferation and, thus, is a key factor controlling prostate growth. Reduced activin biosynthesis, increased follistatin secretion, or signaling defects in the activin receptor system should be further investigated in future studies as potential mechanisms underlying enhanced androgen-independent growth of human prostate cancer cells.

Activin Receptors↗

Biphasic developmental expression of adrenocorticotropin receptor messenger ribonucleic acid levels in the baboon fetal adrenal gland.

We have previously shown an estrogen-dependent developmental regulation of placental oxidation of cortisol to cortisone that results in enhanced fetal pituitary ACTH production and the induction of steroidogenic enzymes in and de novo cortisol production by the fetal adrenal in the second half of baboon pregnancy. However, it is not known whether the receptor for ACTH is simultaneously generated at this time in development to provide a mechanism for mediating the tropic action of ACTH on steroidogenesis in the primate fetal adrenal gland. Therefore, in the present study we determined the levels of ACTH receptor messenger RNA (mRNA) and correlated ACTH receptor expression with appearance of the mRNA for delta5-3beta-hydroxysteroid dehydrogenase/isomerase (3betaHSD), the enzyme protein that signals functional maturation of the definitive cortical zone in the baboon fetal adrenal. A baboon ACTH receptor complementary DNA was cloned and hybridized with polyadenylated RNA isolated from baboon (Papio anubis) fetal adrenals obtained in early (days 58-64; RNA from seven baboon fetuses pooled to yield three samples), mid-(days 99-103; RNA from five baboons pooled to yield four samples), and late (days 165-168; RNA of four individual baboon fetuses) gestation (term = 184 days). Expression of the primary 3.4-kilobase ACTH receptor mRNA transcript, determined by Northern blot and expressed as a ratio of beta-actin mRNA, was minimal early in gestation (mean +/- SE, 0.11 +/- 0.05 arbitrary densitometric units). However, fetal adrenal ACTH receptor mRNA levels increased (P < 0.001, by ANOVA) approximately 13-fold to 1.41 +/- 0.16 at midgestation, then declined by 70% (P < 0.001) to 0.41 +/- 0.10 in late gestation. To determine whether the decrease in ACTH receptor expression by the fetal adrenal in the second half of pregnancy reflected programmed cell death, the integrity of genomic DNA was assessed by 32P-labeled DNA gel electrophoresis and in situ DNA end labeling. Because DNA oligonucleosomes and apoptotic DNA strand breaks characteristic of apoptosis were absent in the adrenal glands of fetal baboons, the decline in ACTH receptor mRNA levels in the fetal adrenal did not seem to reflect programmed cell death. Expression of the single 2.0-kilobase mRNA transcript for 3betaHSD, an enzyme localized specifically in the definitive zone of the fetal adrenal, was minimal in early (0.01 +/- 0.00 arbitrary units) and mid- (0.10 +/- 0.01) gestation. However, 3betaHSD mRNA levels were markedly increased late in gestation to a value (1.38 =/- 0.34) approximately 13-fold greater (P < 0.001) than that in midgestation. These findings indicate that there was a biphasic monomodal developmental expression of the ACTH receptor in the baboon fetal adrenal, which contrasted with the progressive increase in adrenal weight, 3betaHSD expression, and de novo cortisol production previously determined. Because the fetal adrenal is comprised mainly of the fetal cortical zone throughout gestation, the decrease in ACTH receptor expression between mid- and late gestation seems to occur primarily in the latter zone and may signal a selective decline in tropic responsivity of and delta5-C19-steroid, e.g. dehydroepiandrosterone, biosynthesis within the baboon fetal adrenal gland.

3-Hydroxysteroid Dehydrogenases↗

Susceptibility of avian ovarian granulosa cells to apoptosis is dependent upon stage of follicle development and is related to endogenous levels of bcl-xlong gene expression.

Studies were conducted to evaluate the susceptibility of avian ovarian granulosa cells to apoptosis when incubated in vitro and to relate this relative susceptibility to both the stage of follicle development from which granulosa cells were collected (atresia-prone vs. -resistant) and to the expression of a gene previously linked to the regulation of cell viability, bcl-xlong. Granulosa cells from slow growing, prehierarchal (4- to 8-mm diameter; atresia-prone) follicles were found to undergo rapid and progressively extensive apoptosis after incubation in defined medium for 6-24 h (P < 0.05 vs. unincubated controls). By contrast, cells from the largest preovulatory (F1) follicle, as well as from follicles most recently recruited into the follicle hierarchy (9- to 12-mm diameter), showed significantly less low molecular wt labeling at 6 h of incubation (P < 0.05 vs. 4- to 8-mm follicles). Furthermore, the amount of low molecular wt labeling did not significantly increase in cells from either stage of follicle development at 12 or 24 h of incubation (P < 0.05 vs. 6 h incubation). This biochemical indication of ongoing apoptosis in prehierarchal follicle granulosa cells was confirmed by an increased incidence of pyknotic nuclei detected by morphological analysis. Thus, increased susceptibility to apoptosis in incubated prehierarchal follicle granulosa cells is correlated with the high rate of follicle atresia that is known to occur at this stage of development in vivo. Recombinant human FSH (100 mIU) and transforming growth factor-alpha (3.3 nM) partially suppressed apoptosis in prehierarchal follicle granulosa cells after 6 h of incubation (by 46-57%; P < 0.05 vs. control), as did the cAMP analog, 8-Br-cAMP (1 mM; by 59%; P < 0.05). A single form of the bcl-2-related gene, bcl-x, was detected in hen ovarian tissues; this transcript corresponded to bcl-xlong, the death-suppressing form of bcl-x. The highest levels of bcl-xlong messenger RNA were found in granulosa tissue from preovulatory follicles, with significantly lower levels detected in prehierarchal follicle granulosa tissue (P < 0.05). Elevated expression of bcl-xlong in preovulatory follicles was correlated to increased resistance to the process of apoptosis, in vitro, and the virtual absence of follicle atresia at this stage of development, in vivo. We conclude that there is a direct relationship between the inherent susceptibility of avian granulosa cells to apoptosis and the high rate of follicle atresia in follicles not yet selected into the preovulatory hierarchy. Moreover, our results are consistent with the proposal that the expression of death-suppressing genes, including bcl-xlong, is capable of rendering cells resistant to the process of apoptosis. The findings reported herein provide the foundation for a novel model with which to further elucidate molecular mechanisms related not only to the initiation of follicle atresia, but also events associated with the process of follicle selection.

Alternative Splicing↗

Apoptosis and ovarian function.

For decades, the mechanisms responsible for germ cell depletion from the ovary, either directly during the perinatal period or indirectly via follicular atresia during postnatal life, have remained relatively obscure. The recent application of sensitive biochemical techniques for the study of cell death to the analysis of ovarian function has revealed that these two events, as well as a third instance of ovarian cell degeneration (luteolysis), are dependent upon the activation of physiological cell death mechanisms. It is therefore hypothesized that the controlled deletion of ovarian cell populations is accomplished via activation of a 'universal' pathway of cellular suicide involving altered expression of a conserved cohort of genes. The identity of the hormonal and intracellular effectors responsible for the coordination of life and death decisions made by ovarian cells during development as well as the biological and clinical implications of gene-directed cell death in the ovary are explored in this review.

Animals↗

Ultrastructure of excitotoxic neuronal death in murine cortical culture.

Ischemic and traumatic brain injury are likely to involve neuronal injury triggered by glutamate receptor overactivation. Although excitotoxic neuronal injury has been widely studied in the setting of primary culture, the extent to which these in vitro injury paradigms resemble in vivo ischemic injury morphologically has not previously been well studied. We studied glutamate receptor mediated neuronal death by transmission electron microscopy and light microscopy. Morphologic characteristics of neurons injured by 10 min exposure to 500 microM glutamate include rapid swelling of mitochondria and endoplasmic reticulum, and cytoplasmic and nuclear lucency. Both alpha-amino-3-hydroxy-5-methyl-4-isoxazole propionic acid and kainic acid caused vacuolation, dilatation of the endoplasmic reticulum, cytoplasmic condensation and random condensation of chromatin with preserved mitochondria. None of these injuries was ameliorated by cycloheximide or actinomycin D; all were significantly lessened by aurintricarboxylic acid. Gel electrophoresis showed no increase in DNA fragmentation over control. The morphologic changes seen with alpha-amino-3-hydroxy-5-methyl-4-isoxazole propionic acid and kainate are distinct from the changes induced by glutamate. Excitotoxic injury in this system due to high concentrations of glutamate resembles necrosis while the other agonists produce a different form of cell death which is neither necrosis nor apoptosis.

Animals↗

Expression of members of the bcl-2 gene family in the immature rat ovary: equine chorionic gonadotropin-mediated inhibition of granulosa cell apoptosis is associated with decreased bax and constitutive bcl-2 and bcl-xlong messenger ribonucleic acid levels.

The loss of ovarian follicles through atresia, which accounts for greater than 99% of postnatal female germ cell depletion, is mediated through apoptotic cell death. Although recent data have shown that apoptosis in granulosa cells of ovarian follicles can be hormonally manipulated, the molecular mechanisms responsible for transducing external signals remain to be elucidated. Herein we have characterized changes in the expression of the bcl-2 protooncogene (an inhibitor of apoptosis), the bax gene (an inducer of apoptosis), and the bcl-x gene (which encodes both bcl-xlong, an inhibitor of apoptosis, and bcl-xshort, an inducer of apoptosis) during gonadotropin-stimulated follicular development in vivo and during atresia of antral follicles incubated in vitro. Complementary DNA fragments corresponding to rat bcl-2, rat bax, and rat bcl-x coding sequences were obtained by the reverse transcription-polymerase chain reaction (RT-PCR) technique using total RNA prepared from immature rat ovaries. Northern blot analysis of steady-state bcl-2, bax, and bcl-x messenger RNA (mRNA) levels in total RNA prepared from ovaries of immature rats before and after in vivo priming with 10 IU equine CG (eCG) revealed that eCG-induced follicular growth and survival were associated with a relatively constitutive level of bcl-2 and bcl-x expression but markedly reduced levels of bax mRNA (29 +/- 5% of saline-treated control animals). Using the RT-PCR technique coupled with Southern blot hybridization analysis to distinguish the long vs. short forms of bcl-x (which differ in size by 189 base pairs), it was determined that bcl-xlong was the predominant message expressed by granulosa cells of eCG-primed ovaries. The eCG-mediated decrease in bax expression, coupled with a maintenance of bcl-2 and bcl-xlong mRNA levels, were associated with a pronounced reduction in the extent of granulosa cell apoptosis. In contrast, the induction of apoptosis in a homogeneous population of healthy antral follicles by incubation in vitro without tropic support was associated with an significant increase in bax mRNA levels to 220 +/- 10% of those detected in freshly isolated, healthy follicles. Moreover, bcl-xlong message levels were significantly reduced in follicles incubated for 24 h to 69 +/- 4% of those levels detected in freshly isolated, healthy follicles. However, no significant change in the level of bcl-2 mRNA was detected.(ABSTRACT TRUNCATED AT 250 WORDS)

Amino Acid Sequence↗

Inhibitors of oxidative stress mimic the ability of follicle-stimulating hormone to suppress apoptosis in cultured rat ovarian follicles.

We have reported that members of the bcl-2 gene family are expressed and gonadotropin regulated in ovarian granulosa cells during follicular maturation and atresia. Because Bcl-2, a protein that prevents apoptosis in several cell types, is reported to function as an antioxidant or free radical scavenger, the present studies were designed to investigate if oxidative stress plays a role in granulosa cell apoptosis during follicular atresia in the immature rat ovary. In the first series of experiments, the role of oxidative stress in the induction of granulosa cell apoptosis was directly tested using a defined in vitro follicle culture system. Healthy antral follicles obtained from equine CG (eCG)-primed immature (27 day old) rats were incubated in serum-free medium for 24 h in the absence or presence of FSH (100 ng/ml; a control for inhibiting apoptosis), superoxide dismutase (SOD; 10-1000 U/ml), ascorbic acid (0.01-1 mM; a free radical scavenger), N-acetyl-L-cysteine (25-100 mM; a free radical scavenger and stimulator of endogenous glutathione peroxidase activity), or catalase (10-1000 U/ml). Granulosa cells within follicles incubated in medium alone exhibited extensive apoptosis after 24 h of incubation, and this onset of apoptosis was blocked by treatment with FSH (29 +/- 4% of controls; P < 0.001, n = 3). Moreover, apoptosis in follicles was also inhibited by treatment with SOD (44 +/- 4% of controls at 1000 U/ml; P < 0.01, n = 3), ascorbic acid (55 +/- 9% of controls at 1 mM; P < 0.05, n = 3), N-acetyl-L-cysteine (24 +/- 7% of controls at 100 mM; P < 0.001, n = 3), or catalase (35 +/- 6% of controls at 1000 U/ml; P < 0.001, n = 3). In the second series of experiments, complementary DNAs corresponding to secreted (SEC-SOD), copper/zinc-containing (Cu/Zn-SOD), and manganese-containing (Mn-SOD) forms of rat SOD, rat seleno-cysteine glutathione peroxidase (GSHPx), and rat catalase were isolated and used to synthesize antisense RNA probes for Northern and slot blot analysis of changes in SOD, GSHPx, and catalase gene expression during follicular maturation. In vivo priming of 25-day-old female rats for 2 days with 10 IU eCG, which promoted antral follicular growth and survival, increased levels of messenger RNA encoding SEC-SOD (216 +/- 9% of saline-treated controls, P < 0.05, n = 3) and Mn-SOD (222 +/- 14% of saline-treated controls, P < 0.05, n = 3) vs. saline-treated controls.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Vasoactive intestinal peptide-mediated suppression of apoptosis in the ovary: potential mechanisms of action and evidence of a conserved antiatretogenic role through evolution.

Vasoactive intestinal peptide (VIP)-containing nerve fibers are present in ovarian follicles at all stages of development, and VIP, acting primarily via the cAMP pathway, has been reported to modulate many aspects of granulosa cell function. Herein we examined the effects of VIP and its potential mechanisms of action on apoptosis in antral follicles isolated from ovaries of gonadotropin-primed immature rats and incubated in vitro under serum-free conditions. Additionally, the effects of VIP on apoptosis in isolated avian granulosa cells incubated in vitro were used as a comparative model system to determine whether the ability of VIP to modulate apoptosis in the ovary has been conserved through evolution. Genomic DNA extracted from incubated rat antral follicles exhibited extensive levels of internucleosomal DNA cleavage characteristic of cell death via apoptosis. Treatment of follicles with VIP (1-1000 nM) caused a dose-dependent reduction in the extent of apoptotic DNA breakdown, with a maximal effect achieved with 100 nM VIP. Provision of the adenylyl cyclase activator, forskolin (10 microM), mimicked the inhibitory effect of VIP on apoptosis and concomitantly increased intrafollicular cAMP accumulation, suggesting a role for the cAMP pathway in mediating the immediate actions of VIP on follicular cell survival. Moreover, treatment of rat antral follicles with insulin-like growth factor-binding protein 3 (3 micrograms/ml) partially antagonized the ability of VIP (100 nM) to suppress apoptosis, suggesting involvement of endogenous insulin-like growth factor I in mediating the downstream actions of VIP in incubated rat antral follicles. To further confirm that VIP and activation of the cAMP pathway prevented atresia, individual rat antral follicles incubated for 24 h in the absence or presence of VIP (100 nM) or forskolin (10 microM) were fixed, embedded, and sectioned for morphological analysis. Follicles fixed immediately after isolation from equine CG-primed rat ovaries were classified as morphologically healthy, consistent with the absence of biochemical evidence for apoptosis (e.g. oligonucleosomes) in this pool of follicles. Follicles incubated for 24 h in the absence of tropic support displayed extensive granulosa cell pyknosis and disorganization characteristic of follicles at a moderate stage of atresia. Inclusion of VIP or forskolin maintained the morphological health status of incubated follicles at that resembling healthy follicles fixed immediately after isolation from ovaries of equine CG-primed rats. Lastly, extensive levels of internucleosomal DNA cleavage were also detected in avian granulosa cells incubated for 6 h under serum-free conditions.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Lobe-specific apoptotic cell death in rat prostate after androgen ablation by castration.

It is well established that androgens are central to regulation of the growth of the mammalian prostate gland. Conversely, androgen deprivation by castration induces rapid cell death in the ventral prostate via an apoptotic mechanism. To date, most studies of cell death in the rodent prostate have focused on the ventral lobe, with little attention directed to the dorsal and lateral lobes. The results presented herein demonstrate that cell death in the rat prostate gland caused by castration is lobe specific. In particular, castration caused decreases in wet weights and protein contents of all three prostatic lobes, but these events were more rapid and profound in the ventral than in the dorsal and lateral lobes. Reduced epithelial cell size was apparent in the three lobes as well. However, castration resulted in loss of DNA content in the ventral lobe only. To confirm this finding, and to examine apoptosis of individual cells, we used in situ labeling of fragmented DNA, supported by biochemical analysis of DNA integrity in agarose gels. With both approaches, significant cell death in response to castration was seen in the ventral lobe but not the dorsal and lateral lobes. Taken together, these results clearly indicate that there are lobe-specific differences in the response of the rat prostate to androgen ablation by castration, with apoptotic cell death occurring in the ventral lobe of the prostate but to a far lesser extent, if at all, in the dorsal and lateral lobes. Moreover, castration caused apoptotic death of both epithelial and stromal cells of the ventral prostate, with these cells dying throughout the ductal network of the ventral prostate rather than being restricted to a particular region. We suggest that lobe-specific differences in androgen responsiveness in the rat prostate may provide an appropriate model for the study of androgen-independent prostatic cell survival during tumor progression.

Animals↗

Interleukin-1 beta-converting enzyme-related proteases (IRPs) and mammalian cell death: dissociation of IRP-induced oligonucleosomal endonuclease activity from morphological apoptosis in granulosa cells of the ovarian follicle.

The Caenorhabditis elegans death susceptibility gene, ced-3, has a number of homologs in vertebrate species, including interleukin-1 beta (IL-1 beta)-converting enzyme (ICE), Ich-1long, and CPP32. These genes, which encode a family of related proteases, have been shown to induce apoptosis when transfected into eukaryotic cells. However, it remains to be determined whether these proteases are involved in apoptotic cell death under physiological conditions. The purpose of these studies was to examine the role of ICE-related proteases (IRPs) in apoptosis using a physiologically relevant model system, the ovarian follicle. Somatic granulosa cells within ovarian follicles undergo apoptosis during follicular atresia, a process responsible for the depletion of greater than 95% of the follicles established in the postnatal ovary. To accomplish these studies, we cloned partial rat complementary DNAs encoding ICE, Ich-1, and CPP32 and used these complementary DNAs to examine the gonadotropin regulation of ICE, Ich-1, and CPP32 gene expression in the immature rat ovary. We also examined levels of ICE activity in healthy and atretic rat follicles by monitoring the conversion of exogenous pro-IL-1 beta to the active cytokine, and then evaluated the actions of recombinant IL-1 beta on apoptosis in follicles incubated in vitro. Finally, we tested the requirement for IRP activity in granulosa cell apoptosis and follicular atresia by incubating follicles without and with IRP inhibitors. Northern blot analysis of total RNA samples indicated that gonadotropin-promoted follicular survival was associated with reduced ovarian expression of messenger RNAs encoding Ich-1 and CPP32. In contrast, ICE messenger RNA levels were extremely low and were not affected by gonadotropin treatment. We were also unable to detect ICE activity in proteins extracted from either healthy or atretic rat follicles, collectively suggesting that ICE per se may not function in granulosa cell death. As another approach to determine whether ICE is involved in atresia, healthy antral follicles were isolated from ovaries of gonadotropin-primed immature rats and incubated for 24 h in the absence or presence of 100 ng/ml transforming growth factor-alpha (TGF alpha) without and with 100 ng/ml IL-1 beta. Granulosa cells within follicles incubated in medium alone exhibited extensive levels of apoptosis, and this onset of apoptosis was prevented by the inclusion of TGF alpha. Addition of IL-1 beta did not alter basal levels of apoptosis nor did the cytokine antagonize TGF-alpha-promoted follicle survival, providing additional evidence that ICE activity is not required for atresia to occur.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Expression of the p53 and Wilms' tumor suppressor genes in the rat ovary: gonadotropin repression in vivo and immunohistochemical localization of nuclear p53 protein to apoptotic granulosa cells of atretic follicles.

We have previously demonstrated that the gonadotropin-mediated inhibition of apoptosis in ovarian granulosa cells is linked to changes in the expression of several cell death-related genes, including members of the bcl-2 gene family (bcl-2, bax, and bcl-x). Recently, the product of the p53 tumor suppressor gene, a protein reported to play a critical role in regulating cell proliferation and death, has been shown to directly modulate the transcriptional activity of the bcl-2 and bax genes. In addition, the actions of p53 may be amplified through a cooperative interaction with another tumor suppressor protein, the product of the Wilms' tumor suppressor gene (WT-1). Based on our identification of a potential role for bcl-2-related factors in regulating granulosa cell apoptosis and the reported function of p53 as a regulator of bcl-2 and bax gene transcription in extragonadal cells, the present studies were conducted to determine whether the p53 and WT-1 genes are expressed and gonadotropin regulated in the rat ovary and to investigate whether granulosa cell apoptosis is linked to elevated levels of tumor suppressor gene expression. Northern blot analysis of total RNA prepared from immature (27-day-old) rat ovaries revealed the presence of a single p53 messenger RNA (mRNA) transcript (2.0 kilobases) and multiple WT-1 messages (1.8, 3.5, and 7.5 kilobases). Subcutaneous injection of immature rats with 10 IU equine CG (eCG) reduced the levels of p53 and WT-1 mRNA to 71 +/- 9% (P < 0.05) and 46 +/- 3% (P < 0.05), respectively, of saline-treated control levels after 2 days. The inhibition of tumor suppressor gene expression by eCG treatment was associated with a marked reduction in the number of apoptotic granulosa cells and atretic follicles. Furthermore, immunohistochemical analysis revealed that p53 protein was localized exclusively to nuclei of apoptotic granulosa cells of atretic follicles, and that p53 immunostaining was reduced to undetectable levels after in vivo treatment with eCG. To further evaluate whether granulosa cell apoptosis is linked to increased expression of tumor suppressor genes, we analyzed levels of p53 and WT-1 mRNA in antral follicles induced to undergo atresia in vitro by serum-free culture.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Ablation of bcl-2 gene expression decreases the numbers of oocytes and primordial follicles established in the post-natal female mouse gonad.

Oocyte loss, either directly through attrition (germ cell death) or indirectly through follicular atresia (somatic or granulosa cell death), is a fundamental event associated with defining the time of normal or premature reproductive senescence in females. Although apoptosis has been reported to function as the underlying mechanism responsible for death of both germ cells and somatic cells in the ovary, the final molecular steps which commit ovarian cells to death have not been fully elucidated. To examine if death repressor activity of the bcl-2 gene product is important for germ cell survival, we conducted studies using a Bcl-2 loss-of-function (bcl-2 -/-) transgenic mouse model. Histological analyses revealed that ovaries collected from bcl-2 -/- mice possessed numerous aberrantly formed primordial follicle-like structures containing a single layer of granulosa cells without an oocyte. Additionally, the total number of primordial follicles present which contained a healthy oocyte was markedly reduced in bcl-2 -/- mice as compared to heterozygote (bcl-2 -/+) or wild-type (bcl-2 +/+) mice, suggesting that expression of the bcl-2 death repressor gene is critical for endowment of a normal complement of germ cells and primordial follicles in the mammalian ovary.

Animals↗

Follicle-stimulating hormone receptor expression in the rat ovary: increases during prepubertal development and regulation by the opposing actions of transforming growth factors beta and alpha.

Pituitary gonadotropin FSH acts exclusively on ovarian granulosa cells by binding to specific plasma membrane receptors. Transforming growth factors alpha and beta (TGF alpha and TGF beta), produced locally within the ovary, have been shown to regulate diverse follicle functions, although their potential role in the regulation of FSH receptors has not been assessed. Our first objective was to demonstrate developmental changes in the expression of FSH receptor gene and protein; we then analyzed the regulation of FSH receptor expression by TGF beta s and TGF alpha in cultured granulosa cells. Analysis of steady-state FSH receptor mRNA and protein levels in neonatal and prepubertal ovaries revealed the existence of two predominant FSH receptor mRNA transcripts, 7.0 and 2.5 kb in size, showing a dramatic increase between Day 15 and Day 18 of age followed by a plateau up to 27 days of age. A close parallelism in the developmental changes in FSH receptor mRNA levels and FSH receptor content was observed. Cultured granulosa cells obtained from estrogen-treated immature rats exhibited FSH receptor transcripts similar in size to those seen in whole ovaries. Treatment of granulosa cells for 48 h with TGF beta 1 increased the levels of FSH receptor mRNA for both the 7.0- and 2.5-kb transcripts in a dose-dependent manner (ED50, 1.5 ng/ml), with a maximal 4.0 +/- 0.8-fold increase over control levels observed in response to 10 ng/ml TGF beta 1. Also, TGF beta 2 was as potent as TGF beta 1 in increasing FSH receptor mRNA levels.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Gonadotropin suppression of apoptosis in cultured preovulatory follicles: mediatory role of endogenous insulin-like growth factor I.

Although the majority of ovarian follicles undergo atresia through a mechanism involving apoptotic cell death, in vivo studies concerning the hormonal regulation of atresia have been difficult due to the presence of heterogeneous population of follicles in the ovary. In the present study, the regulation of follicle apoptosis by gonadotropins, insulin-like growth factor I (IGF-I), and IGF-binding protein 3 (IGFBP-3) was examined using a serum-free culture of preovulatory follicles. Immature rats at 26 days of age received a single dose of PMSG. Two days later, the largest preovulatory follicles were collected for in vitro culture with or without hormones. After 24 h of culture, follicular apoptotic DNA fragmentation was analyzed by autoradiography of size-fractionated DNA labeled at 3'-ends by [32P]dideoxy-ATP. A spontaneous increase in apoptotic DNA fragmentation occurred after 24 h of culture in the absence of hormones, whereas treatment with human CG (hCG) or FSH suppressed follicular apoptosis in a dose-dependent manner, with 0.1 microgram/ml causing maximal suppression by 60-62%. Cotreatment with hCG and FSH had no additional effect. Like gonadotropins, treatment with IGF-I and insulin also suppressed the spontaneous onset of apoptosis, with IGF-I being more effective than insulin. Cotreatment with IGFBP-3 and hCG dose-dependently reversed the suppressive effect of hCG on apoptosis by 42%, suggesting a mediatory role of endogenously produced IGF-I. The addition of IGFBP-3 also blocked the suppressive action of IGF-I by 49%, whereas it did not affect the suppressive action of an IGF-I agonist or insulin. Treatment with IGFBP-3 alone had no effect on apoptotic DNA fragmentation. Estrogen and progesterone production by the cultured follicles were also analyzed by RIA. Gonadotropin treatment resulted in a marked stimulation of the production of both steroid productions. In contrast, treatment with IGF-I caused a small increase in estrogen but decreased progesterone production. Although treatment with IGFBP-3 alone decreased both estrogen and progesterone production, cotreatment with IGFBP-3 and hCG resulted in a slight decrease in estrogen production but an increase in progesterone production. Furthermore, IGFBP-3 did not affect IGF-I action on steroid production. To further substantiate the hypothesis that IGFBP-3 blocks the suppressive effect of hCG on apoptosis by neutralizing endogenously produced IGF-I, solution hybridization analysis was performed, and hCG treatment was shown to increase IGF-I messenger RNA levels in cultured follicles by 1.9-fold.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Isolation of turkey adrenocortical cell angiotensin II (AII) receptor partial cDNA: evidence for a single-copy gene expressed predominantly in the adrenal gland.

A turkey adrenocortical cell AII receptor cDNA fragment (714 bp) was isolated by RT-PCR using oligonucleotide primers based on rat aortic smooth muscle (RASM) and bovine adrenal type-1 (AT1) receptor cDNA coding sequences as primers. Sequence analysis indicated 73% nucleotide identity and 78% amino acid identity to the RASM AT1 receptor. Notable differences were 1) two additional Cys at positions 92 and 99 (first extracellular loop), 2) deletion of amino acid 168, formation of a triplet Asn sequence (Asn 186, 187, 188) and substitution of Arg192 with Pro (second extracellular loop) and 3) two additional potential protein kinase C phosphorylation sites, Thr221 and Thr233 (third intracellular loop). Southern blot analysis indicated that the receptor is a product of a single-copy gene. Northern blot analysis indicated at least three mRNA transcripts (7.5, 3.5 and 2.0 kb) expressed predominantly in the adrenal gland.

Adrenal Glands↗

Microscale autoradiographic method for the qualitative and quantitative analysis of apoptotic DNA fragmentation.

A method combining the advantages of electrophoretic DNA fractionation and autoradiography is described for the qualitative and quantitative analysis of internucleosomal DNA fragmentation that occurs during apoptosis, or "programmed cell death." This procedure utilizes terminal transferase enzyme to uniformly add one molecule of [alpha 32P]-dideoxynucleotide to the 3'-end of DNA fragments. Following gel electrophoresis and autoradiographic analysis, the total amount of radiolabel incorporated into the low molecular weight DNA fraction can be quantitated and used to estimate the degree of apoptotic DNA fragmentation in any given sample. This method requires as little as 15 ng of total cellular DNA and increases the sensitivity of apoptotic DNA detection by at least 100-fold over the widely used ethidium bromide staining method. The procedure should prove valuable for the analysis of apoptosis in minute quantities of tissues and cultured cells.

Animals↗