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Production of pyruvate by isolated mouse cumulus cells.

Cumulus cells were isolated by hyaluronidase treatment of whole cumulus masses from superovulated, non-mated mice. The cells, in groups of approximately 200, were incubated for up to 4 h in 50 nl medium M2 at 37 degrees C, and serial 3-nl samples assayed for pyruvate using an ultramicrofluorescence technique. With 5.55 mM glucose, 23.3 mM lactate, or a mixture of the two substrates, the cumulus cells formed pyruvate at rates of 10.2, 9.6, and 8.9 fmol/cell/h, respectively. The concentrations of glucose, pyruvate, and lactate, as measured in 3-nl aliquots of rabbit oviduct fluid were 1.5 mM, 0.3 mM, and 3.7 mM, respectively. When incubated with 1 mM glucose and 3 mM lactate, mouse cumulus cells formed 7.5 fmol pyruvate/cell/h. The mean number of cumulus cells per ovum within a cumulus mass was 2,060. Intact cumulus masses from mated and non-mated superovulated mice, incubated with 1 mM glucose and 3 mM lactate, formed 22.6 and 23.3 pmol pyruvate/ovum/h, respectively. The results suggest that pyruvate production by cumulus cells may be important in supporting the nutrition of unfertilized and fertilized ova, and of spermatozoa, within the oviduct lumen.

Animals

Hyaluronic acid synthesis by mural granulosa cells and cumulus cells in vitro is selectively stimulated by a factor produced by oocytes and by transforming growth factor-beta.

In ovarian antral follicles cumulus cells (approximately 1,000/follicle) closely surround the oocyte, and mural granulosa cells (approximately 50,000/follicle) are distributed at the periphery. Previous work (Salustri, A., Yanagishita, M., and Hascall, V. C. (1990) Dev. Biol. 138, 26-32) showed that oocytes produce a factor(s) which stimulates hyaluronic acid (HA) synthesis by cumulus cells during expansion of the cumulus cell-oocyte complex. We now show that mural granulosa cells also respond in vitro to the oocyte factor(s) with greatly increased HA synthesis. As with cumulus cells, a factor(s) present in fetal calf serum is required to retain newly synthesized HA in the extracellular matrix. Unlike cumulus cells, follicle-stimulating hormone (FSH) is not required for maximal stimulation, in part because mural granulosa cells synthesize prostaglandin E2 which can substitute for FSH in promoting cumulus cell-oocyte complex expansion. Of several growth factors studied, only transforming growth factor-beta 1 (TGF-beta 1) stimulated HA synthesis in both cell types. However, the stimulation of HA synthesis by TGF-beta 1 was additive with that for the oocyte factor(s), and neutralizing antibodies to TGF-beta did not inhibit the response to the oocyte factor(s). The results indicate that the oocyte factor(s) and TGF-beta 1 are not the same and that they operate through different receptors in stimulating HA synthesis. Epidermal growth factor was able to replace FSH in amplifying the response of cumulus cells to the oocyte factor(s) and in stimulating synthesis of dermatan sulfate proteoglycans.

Animals

Metabolic coupling and ligand-stimulated meiotic maturation in the mouse oocyte-cumulus cell complex.

Cumulus cells are metabolically coupled to the mammalian oocyte via heterologous gap junctions. One function attributed to the gap junctional communications is the transfer of regulatory signals that direct the meiotic state of the oocyte. However, the precise role of these junctions in meiotic maturation is still unclear. The aim of this study was to test the hypothesis that meiotic resumption is induced by the transfer of a stimulatory signal(s) from the cumulus cells to the oocyte through the gap junctional coupling pathway. We have previously shown that the mitogenic lectin concanavalin A (Con A) induces oocyte maturation in isolated cumulus cell-enclosed oocytes (CEO) when meiotic arrest is maintained with a number of different inhibitory agents [Biol Reprod 1990; 42:413-423]. In the present study, Con A stimulated maturation in dibutyryl cAMP (dbcAMP)-arrested CEO but not in denuded oocytes cocultured with cumulus cells. Heptanol, a known gap junction uncoupler, effectively prevented Con A- and FSH-induced maturation of intact CEO and dramatically reduced metabolic coupling between cumulus cells and the oocyte. However, this alcohol had no effect on denuded oocytes (DO) or on dbcAMP-arrested CEO in the absence of stimulating ligand. Con A and FSH produced only a minimal loss of coupling. When the effects of heptanol were compared with those of the n-alkanols hexanol and decanol, the efficacies of these agents as suppressors of Con A-stimulated oocyte maturation was directly related to their relative abilities to suppress metabolic coupling.(ABSTRACT TRUNCATED AT 250 WORDS)

Alcohols

Altered steroidogenic pattern of human granulosa-lutein cells in relation to cumulus cell culture morphology.

It has been reported that human-oocyte complexes (COC) retrieved at a stimulated cycle manifest an asynchrony between oocyte meiotic maturation and cumulus mucification. However, when mature COC were subdivided into subtypes marked by the culture morphology of their cumulus cells following 3 days' culture, successful fertilization and cleavage were approximately 1.5-fold lower in mature COC yielding cumulus cells aggregated into clumps (type A and B COC) than in mature COC yielding homogeneously spread cells (type C-D COC). To determine whether the existing relationship between cumulus culture morphology and oocyte functionality in the various COC types (A-D) could be extended to another follicular compartment--the granulosa-lutein (G-L) cells--basal steroid secretion by the corresponding G-L cells was evaluated within 5 days of culture. Over the first 3 days of culture, secretion of progesterone was 3-fold lower and secretion of testosterone (T) was 2.5-fold higher in cultures of G-L cells from follicles yielding type A COC than in type C-D COC. During days 4 and 5 of culture, G-L cells were incubated with or without 10(-7) M 3 beta-hydroxy-5-pregnen-20-one (pregnenolone), dehydroepiandrosterone (DHA), 4-androstene-3,17-dione (androstenedione), or T. The pattern of progesterone level noted over the first 3 days of culture was not altered in the presence of pregnanolone. DHA, androstenedione, or T. Addition of pregnenolone, DHA, androstenedione, or T increased T level 2.5-, 5.6-, 7.3-, and 17.7-fold, respectively, in cultures of G-L cells from follicles yielding type A COC, but did not significantly alter T level in cultures of G-L cells from follicles yielding type C-D COC. In cultures of G-L cells from follicles yielding type A COC, addition of androgens unsaturated at position 4 preferentially increased oestradiol-17 beta (E2) level, whereas in cultures of G-L cells of type C-D COC, DHA and androstenedione preferentially increased E2 level. Taken together, the asynchrony between oocyte and cumulus activity could be diminished when the activity of various follicular cell compartments is evaluated according to cumulus culture morphology rather than cumulus expansion and mucification. The present study suggests that follicles yielding mature COC represent a non-homogenous population in which G-L cells from follicles yielding type A-B COC manifest a less luteinized state than those from follicles yielding type C-D COC.

Androstenedione

Human granulosa-luteal and cumulus cells express transforming growth factors-beta type 1 and type 2 mRNA.

Human granulosa-luteal cells and cumulus cells obtained from women undergoing in vitro fertilization and embryo transfer (IVF-ET) were examined for the presence of TGF-beta 1 and TGF-beta 2 mRNA by reverse transcription-polymerase chain reaction (RT-PCR) analysis. RT-PCR analysis revealed that both follicle cell types express mRNA for both TGF-beta subtypes. Verification of RT-PCR products was done by restriction enzyme digestion analysis. These results suggest a role(s) for TGF-beta 1 and TGF-beta 2 in the development of human granulosa-luteal cells and the oocyte-cumulus cell complex.

Base Sequence

Late preovulatory synthesis of proteoglycans by the human oocyte and cumulus cells and their secretion into the oocyte-cumulus-complex extracellular matrices.

Light- and electron-microscope autoradiography using 3H-glucosamine and 3H-fucose as precursors was employed to investigate proteoglycan synthesis and secretion by late preovulatory human oocytes and cumulus cells. Both the oocyte and cumulus cells were found to be important cellular sources supplying proteoglycans to the oocyte-cumulus-complex extracellular matrices, i.e., the zona pellucida and the cumulus intercellular matrix. Both the oocyte and cumulus cells were shown to secrete labelled proteoglycans into the zona pellucida. Labelled proteoglycans were also detected in the cumulus intercellular matrix. Chase experiments revealed the labelled molecules to be relatively closely associated with both the zona pellucida and the cumulus intercellular matrix. Staining with chromic acid and phosphotungstic acid showed proteoglycan material to penetrate from the cumulus intercellular matrix into pores of the zona pellucida. This material is thought to be a structural equivalent of the newly synthesized proteoglycans secreted by cumulus cells and migrating into the zona pellucida (as detected by autoradiography). It is concluded that newly synthesized proteoglycans secreted by the oocyte and cumulus cells in the late preovulatory period are a component of the microenvironment in which fertilization takes place.

Autoradiography

Influence of dbcAMP on the inhibitory effect of cumulus cell factor(s).

The factor(s) produced by porcine cumulus cells (cumulus cell factor (s): CCF) was described as quantitatively inhibiting the maturation of oocytes in vitro (Petr et al, 1989). When 1, 10, 20 or 40 cumulus oocyte complexes (COCs) were cultured in a droplet of medium (vol 10 microliters), germinal vesicle breakdown (GVBD) was observed in 85, 78, 57 or 19% of the oocytes, respectively. GVBD was observed in 82, 84, 80 or 90% of cumulus-free oocytes, respectively, when they were cultured at the same numbers per 10-microliters droplet. When 1, 10, 20 or 40 cumulus-free oocytes were cultured under the same conditions in a medium containing 140 dbcAMP per ml, 61, 63, 60 or 58% of them were observed at GVBD. However, when COCs were cultured in a 10 microliter droplet of medium with 140 micrograms of dbcAMP per ml, GVBD occurred in 64, 42, 9 or 0% respectively. Based on these results, we can conclude that dbcAMP exerted a further inhibitory effect on GVBD in pig oocytes cultured under the influence of inhibitory factor(s) from cumulus cells. On the other hand, dbcAMP was shown to partly overcome the effect of CCF on GVBD in porcine oocytes. This suggestion was based on the finding that a 6-h pre-culture of COCs in a medium with 1,000 micrograms of dbcAMP significantly decreased the subsequent effect of CCF (GVBD: 44%) compared with those pre-cultured in a medium with 140 micrograms of dbcAMP/ml (GVBD:5%) or without dbcAMP (GVBD: 15%).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Mouse oocytes regulate hyaluronic acid synthesis and mucification by FSH-stimulated cumulus cells.

Mucification (or expansion) of the cumulus cells surrounding the oocyte is thought to depend on the direct action of gonadotropins in stimulating production and deposition of hyaluronic acid (HA) in the extracellular matrix. We now report that the oocyte is essential for this process. Either follicle-stimulating hormone (FSH) at 1 micrograms/ml or dibutyryl cAMP at 2 mM induces mucification of intact cumulus cell-oocyte complexes (COCs) in vitro, but fails to stimulate mucification of isolated cumulus cells. HA synthesis by FSH-stimulated cumulus cells is only approximately 3.5% of the value achieved by FSH-stimulated COCs. Isolated oocytes cultured with or without FSH do not synthesize detectable amounts of HA but induce isolated cumulus cells to increase HA synthesis approximately 13-fold in cocultures with FSH. Medium conditioned by isolated oocytes for 5 hr induces nearly the same level of HA synthesis by cumulus cells under the same culture conditions. FSH also stimulates cumulus cells to increase synthesis of dermatan sulfate proteoglycans (DS-PGs) approximately 3-fold, but this stimulation does not depend upon the presence of oocytes. The results indicate that oocytes produce a soluble factor(s) essential in combination with FSH to stimulate HA, but not DS-PG, synthesis by cumulus cells in vitro and that this factor(s) acts independently or downstream from the FSH-induced formation of cAMP.

Animals

Preendocytotic alterations in cumulus cell gap junctions precede meiotic resumption in the rat cumulus-oocyte complex.

Cumulus cells in the mammalian ovary are normally connected to each other and to their enclosed oocyte by an extensive network of gap junctions (GJs). We have shown that the loss of cumulus cell GJs is correlated temporally with meiotic resumption in the intact preovulatory rat follicle (Larsen et al., 1986). Here we describe morphological changes in GJ particle packing patterns (PPPs) that occur prior to GJ loss and meiotic resumption in hormonally stimulated rat cumulus-oocyte complexes (COCs). In the PMSG-primed rat, 89% of the cumulus cell GJ area detected by freeze-fracture electron microscopy consists of tightly packed junctional particles: 4% exhibit loose PPPs of randomly dispersed particles; and 7% contain a mixture of both tight and loose PPPs. One to 2 hr after stimulation with hCG, the area of GJs containing tight PPPs drops by 50%-60%, while junctions exhibiting loosely organized and mixed patterns increase concomitantly. These shifts in PPPs are accompanied by the appearance of unusual particle-free areas of puckered or ruffled nonjunctional membrane at the GJ periphery. Cumulus cell GJs from isolated COCs incubated in FSH-containing medium demonstrate a similar shift in PPPs prior to meiotic resumption. The appearance of fusing areas of particle-free nonjunctional membrane at the GJ periphery in vitro is correlated with GJ loss and is not seen in COCs treated with dihydrocytochalasin B to inhibit endocytotic removal of cumulus GJs. The structural and temporal nature of these morphological observations supports the hypothesis that interruption of junctional communication plays a role in meiotic maturation of the preovulatory oocyte.

Animals

Ultrastructure of the cumulus cell mass surrounding a human egg in the pronuclear stage.

The cumulus cell mass enclosing a penetrated human egg was studied. The egg, recovered from the Fallopian tube approximately 80 h after luteinizing hormone peak and 35 h after insemination, was surrounded by a large, expanded and dissociated cumulus. Dispersions of the outermost cumulus cell layers occurred during processing, the innermost cell layers remained attached enclosing the egg. The photomicrographs showed that the follicular cells were embedded in an intercellular matrix and contact via gap-junction-like structures between neighboring cells existed. Cumulus cell processes traversing the zona pellucida were not found. Two types of follicular cells coexisted within the cumulus, light and dark cells. These cellular types, were different in morphology and size. Light cells displayed cytoplasmic organelles normally associated with protein synthesis and steroidogenesis. Dark cells with long cytoplasmic processes were involved in sperm phagocytosis. It is suggested from the characteristics of the cytoplasmic organelles that dark cells seem to be modified light follicular cells.

Female

Freeze-fracture observations of ovulated hamster oocytes with their cumulus cells.

Mature unfertilized oocytes in the cumulus oophorus were examined using the freeze-fracture technique. The P face of the oocyte plasma membrane (oolemma) has randomly distributed intramembranous particles (IMPs) with an average diameter of about 10 nm. No marked difference is found between the intermicrovillous and microvillous regions of the oocyte with respect to the size and distribution of IMPs. The E face of the oolemma has fewer IMPs than the P face. The intermicrovillous region is slightly elevated in some places because of close contact with underlying cortical granules. The oolemma of this elevated region and the membrane of the cortical granule have IMPs which are considerably smaller than those in the remaining areas of the oolemma. The IMP density of the P face of the cortical granule membrane is much lower than that of the E face, possibly indicating a membrane specialization required for fusion of the cortical granule membrane with the overlying oolemma at the time of exocytosis. Cytoplasmic lamellae appear as parallel bands of particles in freeze-fractured specimens. No gap junctions are found between the oocyte and cumulus cells, but residual gap junctions are seen among clustered cumulus cells.

Animals

Gonadotropin-induced murine oocyte maturation in vivo is not associated with decreased cyclic adenosine monophosphate in the oocyte-cumulus cell complex.

The cyclic adenosine monophosphate (cAMP) content of intact oocyte-cumulus cell complexes at various times after the induction of oocyte maturation in mice in vivo was correlated with the time of commitment by the oocytes to undergo germinal vesicle breakdown (GVB) and metabolic coupling between the oocyte and cumulus cells. Seventy-nine percent of the oocytes either underwent GVB or were committed to do so by 2 h after injection of human chorionic gonadotropin (hCG). This occurred without a decrease in the coupling between cumulus cells and the oocyte and with increasing cAMP levels in the oocyte-cumulus cell complex. Maintenance of threshold levels of cAMP within mammalian oocytes appears essential for the maintenance of meiotic arrest, but data presented here suggest that oocyte maturation in mice is induced by gonadotropins in nonatretic follicles in vivo by some mechanism other than one which decreases the cAMP content of the intact oocyte-cumulus cell complex.

Animals

Protein synthesis and acrosome reaction-inducing activity of human cumulus cells.

The acrosome reaction of human spermatozoa is a prerequisite to fertilization. It has been hypothesized that secretions of cumulus cells could be involved in the induction of this sperm reaction. A source of variation in the in-vitro fertilization of human oocytes could be the maturational differences in the cumulus cells which affect the acrosome reaction. In order to investigate this possibility, we have studied the capability of secretions obtained from cumulus cells of different maturational stages to induce the acrosome reaction. Capacitated spermatozoa were exposed to the culture medium containing cumulus cell secretions and their acrosomal status was evaluated using the triple stain technique. The maturational status of the cumulus or fertilization of the enclosed oocyte did not influence the percentage of acrosome-reacted live spermatozoa. In order to further document these observations, cumulus cells were submitted to [35S]methionine incorporation and total and secreted proteins were analysed by SDS-PAGE electrophoresis. Neither quantitative nor qualitative changes were detected in the electrophoretic patterns of the proteins obtained from cumulus cells of different maturational status. Thus, variation of the acrosome reaction-inducing activity of cumulus cells does not appear to be involved in the variable fertilization of oocytes obtained from follicles of differing maturity.

Acrosome

Cumulus cells enhance oocyte genomic quality control by promoting DNA damage-induced meiotic arrest.

Cumulus cells are known to maintain oocyte arrest at prophase I through gap junction-mediated cAMP signalling, but their role after meiotic resumption remains unclear. Here, we show that cumulus cells enhance oocyte genomic quality control by sensitizing mouse oocytes to DNA damage-induced meiotic arrest. Time-lapse imaging of SiR-tubulin-labelled spindles revealed that oocytes from cumulus-oocyte complexes (COCs) matured faster than denuded oocytes (DOs). Upon mild DNA damage induced by low-dose etoposide, COC oocytes arrested at metaphase I, whereas DOs completed maturation despite similar levels of DNA lesions. This arrest required spindle assembly checkpoint (SAC) activity, as reversine rescued polar body extrusion and BubR1 and Mad2 were elevated in COCs but not DOs. Disruption of gap junctions or inhibition of mTOR signalling abolished the checkpoint response. Notably, cumulus cells did not enhance oocyte response to minor spindle perturbations. These findings reveal a previously unrecognized role of cumulus cells in mediating DNA damage-induced SAC activation, providing post-GVBD genomic surveillance beyond prophase I arrest.

Animals

Periovulatory expression of cholesterol side-chain cleavage cytochrome P-450 in cumulus cells.

Immunocytochemical staining methods were used to examine the appearance of cholesterol side-chain cleavage cytochrome P-450 (P-450scc) in mitochondria of cumulus cells during follicular development. The cumulus-oocyte complexes were isolated from pregnant mare serum gonadotropin (PMSG)/human CG (hCG)-treated 25 day rats and examined in culture. It is shown that P-450scc is not expressed in the cumulus cell earlier than 2-3 h before ovulation. After ovulation, the expression of P-450scc rapidly increased, so that postovulatory cumuli contained ample amounts of the cytochrome. RIA of progestins secreted by the cumulus-oocyte complexes in culture corroborated the immunocytochemical observations. A single administration of LH or PMSG treatment of hypophysectomized rat did not result in P-450scc accumulation. However, this failure of hormonal responses in vivo was not due to lack of available receptors, since both FSH and LH could induce cAMP accumulation and P-450scc when added to isolated cumuli in culture. Therefore, these findings suggest the presence of a putative intraovarian suppressive factor(s) which disappears before ovulation and thus render(s) the cumulus cells permissive for P-450scc responsiveness. An additional intriguing aspect of P-450scc responsiveness to gonadotropins was revealed in experiments showing that 60% of the cultured cumulus complexes failed to accumulate P-450scc in response to hormones, if collected from 21 day animals. Interestingly, those P-450scc negative cumuli were always associated with an oocyte which did not resume meiotic maturation. We may therefore suggest that meiotic incompetence of the oocyte is also accompanied by functional incompetence of its embracing cumulus cells which cannot, for yet unclear reasons, acquire their steroidogenic capacity.

Animals

Quantitative inhibitory influence of porcine cumulus cells upon the maturation of pig and cattle oocytes in vitro.

Porcine cumulus oocyte complexes (COCs) were cultured together in 10-microliters droplets of culture medium. When 10 COCs were cultured for 24 h, germinal vesicle breakdown (GVBD) occurred in 81% of them. When more COCs (20 or 40) were put into the same volume of medium the frequency of GVBD gradually decreased. This inhibition was not observed in denuded oocytes. The process of GVBD was adversely influenced when 10 COCs were cultured in cumulus-preconditioned medium. It is concluded that porcine cumulus cells produced a factor inhibiting GVBD. After removing the inhibitory block and extensive washing, GVBD of arrested oocytes was significantly accelerated. The addition of LH or heparin only partially overcame the inhibitory action. This factor produced by porcine cumulus cells negatively influenced maturation of bovine oocytes; however, a similar effect was not demonstrated in the mouse. Our results suggest that a high concentration of porcine cumulus cells exerts a quantitative inhibitory effect upon GVBD of porcine and cattle oocytes cultured in vitro.

Animals

Influence of cumulus cell processes on oolemma permeability and lethality of isolated mouse oocytes cultured in Ca2+-free medium.

Cumulus cell processes remaining in the zona pellucida of mouse oocytes mechanically isolated from the ovary have been indirectly visualized by labeling their actin microfilament core with rhodaminyl-phalloidin. If the isolation of the oocytes is performed in Ca2+-free medium, the presence of such processes allows the entry into the cell of low molecular weight molecules (such as 5-6 carboxyfluorescein) and contributes to the death of the cell in such experimental conditions. Following dissolution of the zona pellucida (by enzymatic or acidic treatment) the oocyte is no longer permeable to small molecules and becomes resistant to Ca2+-free medium, probably as a consequence of the collapse of cumulus cell processes. The role of cumulus cell processes and gap junctions in the permeability of mechanically isolated ovarian oocytes is discussed.

Actin Cytoskeleton

Cleavage capability of water buffalo follicular oocytes classified by cumulus cells and fertilized in vitro.

Water buffalo (Murrah) oocytes were collected from ovaries obtained from the slaughter house. They were classified according to the character of the cumulus cells under a stereomicroscope, and cultured in 25 mM Hepes buffered Tissue Culture Medium-199 (TCM-199) supplemented with 5% estrous water buffalo serum in an atmosphere containing 5% CO2 in air at 39 degrees C. After 20-24 hr of in vitro maturation, the oocytes were fertilized using capacitated sperm obtained from 4 different bulls. For cleavage the oocytes were cultured at 39 degrees C in TCM-199 supplemented with 1% estrous water buffalo serum and in an atmosphere containing 5% CO2 in air. The good oocytes, with compact and dense cumulus cells cleaved significantly higher (p less than 0.01, 67.3%), than those of fair. partially naked oocytes with thin cumulus layers (27.5%, 25/91) or small remnants of cumulus cells and poor naked oocytes (3/100). A substantial variation cumulus layers (27.5% 25/91) or small remnants of cumulus cells and poor naked oocytes (3/100). A substantial variation in fertilization and developmental rates (16.0% to 43.8%) was observed among 4 different bulls. Late non-surgically into 14 buffalo recipients on day 6 or 7 of their estrous cycle. One recipient was diagnosed to be pregnant by rectal palpation on day 60 and confirmed to be so on day 90 post-estrus.

Animals