Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Maturation”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 55 records · Page 3Linked to original sources

Disruption of nuclear maturation and rearrangement of cytoskeletal elements in bovine oocytes exposed to heat shock during maturation.

Meiotic maturation in mammalian oocytes is a complex process which involves extensive rearrangement of microtubules, actin filaments and chromosomes. Since cytoskeletal elements are sensitive to disruption by heat shock, a series of experiments were performed to determine whether physiologically relevant heat shock disrupts the progression of the oocyte through meiosis, fertilization and zygote formation. Cumulus-oocyte complexes were cultured at 38.5, 40.0 or 41.0 degrees C for the first 12 h of maturation. Incubation during the last 10 h of maturation and 18 h after fertilization was at 38.5 degrees C and in 5% (v/v) CO2 for both treatments. Examination of the cytoskeleton and the chromosome organization in matured oocytes revealed that oocytes matured at 38.5 degrees C were mostly at metaphase II (MII) stage, while the majority of heat-shocked oocytes were blocked at the first metaphase (MI), first anaphase or first telophase stages. A subset of heat-shocked oocytes possessed misshapen MI spindles with disorganized microtubules and unaligned chromosomes. A higher percentage of TUNEL-positive oocytes was noted for oocytes matured at 41.0 degrees C. Addition of 50 nmol/l sphingosine 1-phosphate to maturation medium blocked the effect of heat shock on progression through meiosis and apoptosis and increased the proportion of oocytes matured at 41.0 degrees C that were at MII. Following insemination, a high percentage of heat-shocked oocytes were unfertilized, while the majority of the control zygotes were fertilized and had two visible pronuclei. In conclusion, heat shock disrupts nuclear maturation and induces apoptosis. These alterations are likely to be involved in the mechanism underlying heat-shock-induced disruption of oocyte capacity for fertilization and subsequent development.

Actin Cytoskeleton↗

[Amniotic fluid cytology and foetal lung maturity--a comparison with the dynamic surface tension measurement of the amniotic fluid for predicting foetal lung maturity].

79 samples of amniotic fluid in 69 pregnancies between 29-40 weeks of gestation were examined for foetal lung maturity (dynamic surface tension) and general maturity (Nile Blue cytological test). Both parameters were compared with the pulmonary maturity of the newborn post partum in 24 cases born within 72 hours after the last amniotic fluid examination. In 49 cases the Nile Blue cytological test showed mature values, in 24 cases immature - and in 6 cases borderline values. The dynamic surface tension measurement showed 55 mature, 19 immature and 5 borderline results. These findings show an earlier maturation of the foetal lung compared with the foetal sebaceous glands. Between 36 and 40 weeks of gestation we found a significant (p less than 0.01) correlation between the two methods. Between 32 and 35 weeks of gestation, the significance was less (p less than 0.05) and between 29 and 31 weeks of gestation no correlation could be found. The Nile Blue cytological test for lipid cells is easy to perform, requires less than 1 ml amniotic fluid and is not influenced by blood and meconium and shows no false positive results. Immature findings with the Nile Blue cytological test should be confirmed by other lung maturity tests, like LS-ratio or amniotic dynamic tension measurement. Therefore we can recommend this simple method for the screening of foetal lung maturity as well.

Amniotic Fluid↗

Comparison of histone H1 kinase activity during meiotic maturation between two types of porcine oocytes matured in different media in vitro.

Histone H1 kinase (H1K) activity was assayed during meiotic maturation in porcine oocytes matured in a modified Krebs-Ringer bicarbonate solution (KRB) or in porcine follicular fluid (pFF) in vitro. Oocytes matured in KRB displayed lower male pronucleus formation ability, delayed first polar body emission, and a higher spontaneous activation rate than oocytes matured in pFF. In oocytes matured in pFF, H1K activity was low at the germinal vesicle stage and increased about 8-fold at first and second metaphases, with a transient depression at first anaphase and telophase. The H1K activity at second metaphase in oocytes matured in KRB was significantly lower than that in oocytes matured in pFF. These results suggest that the maturation medium used influences the fluctuation pattern of H1K activity and the biological characteristics of porcine oocytes cultured in vitro.

Animals↗

Studies on oocyte maturation of the medaka, Oryzias latipes. VI. Relationship between the circadian cycle of oocyte maturation and activity of the pituitary gland.

The relationship between pituitary activity and oocyte maturation was examined in Oryzias latipes (medaka), which has a circadian cycle of oviposition. Throughout the circadian cycle of oviposition, females possessed a population of large oocytes more than 800 micronmeter in diameter that could mature in the presence of gonadotropin. Oocyte maturation was observed in vitro in females hypophysectomized between three and ten hours after the beginning of the light period with the number of maturing oocytes increasing as hypophysectomy was delayed. Although in vivo oocyte maturation was blocked by hypophysectomy within two hours after the beginning of the light period, it was restored by a single injection of synthetic or mammalian pituitary hormones (gonadotropic, corticotropic and thyrotropic hormones) within ten hours after hypophysectomy. Of these pituitary hormones, FSH, LH and TSH could induce in vitro maturation of isolated oocytes. Oocytes matured in vitro in the absence of exogeneous hormones if they were isolated nine or more hours after the onset of light. The present study indicates that the circadian cycle of maturation of Oryzias oocytes is controlled by the release of pituitary hormone between three and nine hours after the beginning of the light period.

Animals↗

Protein phosphorylation and oocyte maturation. II. Inhibition of starfish oocyte maturation by intracellular microinjection of protein phosphatases 1 and 2A and alkaline phosphatase.

Oocyte maturation (meiosis re-initiation) in starfish is induced by the natural hormone 1-methyladenine (1-MeAde). Following hormonal stimulation of the oocyte, an intracellular Maturation Promoting Factor (MPF) appears in the cytoplasm which triggers nuclear envelope breakdown and maturation divisions. Microinjection of pure preparations of the catalytic subunits of protein phosphatases 1 and 2A inhibits 1-MeAde-induced maturation in a dose-dependent manner. Calmodulin-dependent protein phosphatase 2B is inefficient. Maturation induced by mimetics of 1-MeAde, such as dithiothreitol (DTT), methylglyoxal-bis(guanylhydrazone) (MGBG), 8-hydroxyeicosatetraenoic acid (8 HETE) and arachidonic acid (AA) is also inhibited by these protein phosphatases. In all cases inhibition can be reversed by increasing the concentration of 1-Me-Ade or of mimetic. Alkaline phosphatase also inhibits maturation in a dose-dependent way and in a reversible manner. Microinjection of protein phosphatase is still effective when preformed long after the end of the hormone-dependent period, and can even be effective a few minutes before the breakdown of the nuclear envelope. No detectable MPF activity is found in 1-MeAde-treated phosphatase-injected oocytes. However, microinjection of phosphatase 2A simultaneously with MPF (obtained from 1-MeAde-treated donors) does not result in inhibition. These results constitute direct evidence for the necessity of an elevated level of phosphorylated proteins for MPF activity and maturation. The mode of action of 1-MeAde in inducing starfish oocyte maturation is discussed in relation to protein phosphorylation.

Adenine↗

A novel oocyte maturation arresting factor in the central nervous system of scallops inhibits serotonin-induced oocyte maturation and spawning of bivalve mollusks.

Serotonin (5-hydroxytriptamine; 5-HT) is a major neurotransmitter that triggers oocyte maturation and sequential spawning in bivalve mollusks. A proteinous and heat-labile substance that proved to be a novel inhibitor of 5-HT-induced egg release from ovarian tissue was found in the cerebral and pedal ganglia (CPG) of the scallop Patinopecten yessoensis. The same inhibitory activity was also observed in the proteinous fraction from the supernatant of hemolymph. Histological observation demonstrated that the novel inhibitor prevented 5-HT from inducing oocyte maturation in the scallop ovary and that no prostaglandin F2alpha (PGF2alpha) inhibited 5-HT-induced oocyte maturation, although PGF2alpha strongly prohibited 5-HT-induced egg release through the gonoduct from ovarian tissue. The novel inhibitor from the scallop CPG also prohibited 5-HT-induced oocyte maturation of other bivalve species as well as scallops. The novel inhibitor, mediated through a receptor mechanism on oocyte membranes, blocked extracellular Ca2+ uptake into oocytes, which was observed in 5-HT-induced oocyte maturation. It is suggested that the novel inhibitor with a molecular mass of 60 kDa, named oocyte maturation arresting factor, which appears to be a universal substance for bivalve species, may be transported from the CPG to the ovary via hemolymph and may prohibit 5-HT-induced oocyte maturation due to the interference of extracellular Ca2+ influx into oocytes, eventually resulting in the inhibition of spawning. On the other hand, it seems that PGF2alpha inhibits 5-HT-induced transport of mature eggs through the gonoduct.

Animals↗

Rapid decline in folylpolyglutamate synthetase activity and gene expression during maturation of HL-60 cells. Nature of the effect, impact on folate compound polyglutamate pools, and evidence for programmed down-regulation during maturation.

These studies in HL-60 cells examined the regulation of folylpolyglutamate synthetase (FPGS) activity at the level of gene expression during terminal maturation. Following addition of 210 mM Me2SO to cultures of HL-60 cells at a concentration that induces maturation of 85-90% of the cells, FPGS activity, but not folylpolyglutamate hydrolase (FPGH) activity, was reduced 2-7-fold within 1-5 days. The initial decline in FPGS activity preceded any effect of Me2SO on rate of growth and the increase in appearance of nitro blue tetrazolium-positive cells, a marker of cellular maturation, and the decrease after 5 days of exposure to Me2SO was solely accounted for by a 7-fold decrease in value for Vmax. The same time and concentration dependence for Me2SO was shown for the decline in FPGS activity, increase in nitro blue tetrazolium-positive cells, and decline in the level of a 2.1-kilobase FPGS mRNA during exposure to this inducer. This decline in FPGS mRNA was reversible when Me2SO was removed from the culture medium but only until that time when an appreciable number of cells were committed to terminal maturation. Following growth of HL-60 cells with [3H]MTX, used as a model folate compound, a large reduction in its intracellular polyglutamate pools was shown during maturation which quantitatively reflected the decline in FPGS activity as well as folate transport inward (Sirotnak, F.M., Jacobson, D.M., and Yang, C-H. (1986) J. Biol. Chem. 261, 11150-11156). Other data showed that folate status or obviation of the folate requirement during growth of these cells strongly influenced the rapidity of the onset of maturation following exposure to inducer. Overall, these results show that FPGS activity in HL-60 cells is a marker for proliferative capacity and that the underlying basis for the decline in FPGS activity during maturation is altered cognate gene expression which is manifested as early reversible and late irreversible phases. They also suggest that the coordinate reduction observed in folate transport, FPGS activity, dihydrofolate reductase, and probably other folate related enzymes by limiting macromolecular biosynthesis may be early programmed events in the maturation process that influence the switch from proliferation to senescence in these cells.

Blotting, Northern↗

The role of toll-like receptors (TLRs) in bacteria-induced maturation of murine dendritic cells (DCS). Peptidoglycan and lipoteichoic acid are inducers of DC maturation and require TLR2.

Toll-like receptors (TLRs) have been found to be key elements in pathogen recognition by the host immune system. Dendritic cells (DCs) are crucial for both innate immune responses and initiation of acquired immunity. Here we focus on the potential involvement of TLR ligand interaction in DC maturation. TLR2 knockout mice and mice carrying a TLR4 mutation (C3H/HeJ) were investigated for DC maturation induced by peptidoglycan (PGN), lipopolysaccharide (LPS), or lipoteichoic acids (LTAs). All stimuli induced maturation of murine bone marrow-derived DCs in control mice. TLR2(-)/- mice lacked maturation upon stimulation with PGN, as assessed by expression of major histocompatibility complex class II, CD86, cytokine, and chemokine production, fluorescein isothiocyanate-dextran uptake, and mixed lymphocyte reactions, while being completely responsive to LPS. A similar lack of maturation was observed in C3H/HeJ mice upon stimulation with LPS. DC maturation induced by LTAs from two different types of bacteria was severely impaired in TLR2(-)/-, whereas C3H/HeJ mice responded to LTAs in a manner similar to wild-type mice. We demonstrate that DC maturation is induced by stimuli from Gram-positive microorganisms, such as PGN and LTA, with similar efficiency as by LPS. Finally, we provide evidence that TLR2 and TLR4 interaction with the appropriate ligand is essential for bacteria-induced maturation of DCs.

Animals↗

Recombinant LH is equally effective as recombinant hCG in promoting oocyte maturation in a clinical in-vitro maturation programme: a randomized study.

BACKGROUND: Fertilization treatment using oocytes matured in vitro from pre-ovulatory follicles has many potential applications. It minimizes the risk of severe ovarian hyperstimulation and is an alternative for women with polycystic ovary syndrome who may have problems regarding stimulation for IVF. In-vitro maturation (IVM) may prove important for subjects needing fertility preservation, and also provides information about the final stages of oocyte maturation. METHODS: From a randomized study of 73 women in an IVF programme, 36 subjects with 228 oocytes were allocated for oocyte maturation in culture medium with recombinant hCG, and 37 subjects with 256 oocytes for maturation with recombinant LH. The primary outcome was the rate of nuclear maturation of oocytes to metaphase II. During the same period, 32 women outside the study underwent 38 individually tailored IVM treatments. RESULTS: The oocyte maturation rate was 54.8% with hCG and 55.9% with LH; fertilization and cleavage rates were not significantly different. Three pregnancies were achieved in the hCG group and one in the LH group. Seven pregnancies (22.6% per embryo transfer) were achieved in the parallel group. CONCLUSIONS: Recombinant hCG or LH are equally effective in promoting oocyte maturation in a clinical IVM programme.

Adult↗

Targeted gene expression profiling in the rainbow trout (Oncorhynchus mykiss) ovary during maturational competence acquisition and oocyte maturation.

A real-time polymerase chain reaction-based gene expression survey was performed using 37 target genes and 22 female rainbow trout sampled during follicular maturational competence (FMC) acquisition or during oocyte maturation. In females sampled before meiosis resumption, FMC was estimated using an in vitro assay. Several growth factors, bone morphogenetic proteins, steroidogenic enzymes, cathepsins, genes known to play a role in the fish preovulatory ovary, as well as previously unstudied genes, were analyzed in this survey. Gene expression profiling was performed using a supervised clustering analysis in order to identify groups of genes exhibiting similar expression profiles in the ovary during FMC acquisition and follicular maturation. From the clustering analysis, three clusters exhibiting a specific expression during FMC acquisition or at the time of oocyte maturation were identified. Cluster 1 was characterized by a progressive increase in gene expression during FMC acquisition, whereas cluster 2 exhibited an increased expression at the time of oocyte maturation. In contrast, cluster 3 was characterized by a decreased mRNA expression at the time of oocyte maturation. Among the 37 target genes used in this survey, 18 were significantly regulated during maturational competence acquisition or at the time of oocyte maturation. Among these 18 genes, 16 belonged to one of the three clusters identified. Although the results allowed a global description of gene expression profiles, they also suggest an important role for several factors, including some previously unstudied bone morphogenetic proteins, in the paracrine control of FMC acquisition and meiosis resumption.

Animals↗

Presence of organic osmolytes in maturation medium enhances cytoplasmic maturation of porcine oocytes.

The effects of organic osmolytes on cytoplasmic maturation of porcine oocytes were examined in maturation medium (modified Whitten's medium) containing various NaCl concentrations. The presence of organic osmolytes, such as taurine and sorbitol, at 6 and 12 mM in maturation medium containing 68.49 or 92.40 mM NaCl increased oocyte glutathione content. Microfilament organization in oocytes was disrupted in maturation medium containing the higher level of NaCl (92.40 mM). However, supplementation with 12 mM sorbitol to the medium reduced the severity of the abnormality. Early embryonic development in vitro to the blastocyst stage was 8.3 +/- 0.9% for oocytes matured in modified Whitten's medium (68.49 mM NaCl) supplemented with 12 mM sorbitol, and 7.9 +/- 0.8% in modified NCSU23 medium (containing 108.73 mM NaCl, 7 mM taurine, 5 mM hypotaurine, and 1 mM glutamine), compared to 4.7 +/- 0.6% in modified Whitten's medium (68.49 mM Na Cl), which did not contain organic osmolytes. These results indicate that the presence of organic osmolytes, such as sorbitol and taurine, reduces the detrimental effects of high NaCl concentration in media used for the maturation of porcine oocytes. This effect is reflected by oocyte glutathione content and microfilament organization at the end of maturation and early development following in vitro maturation and in vitro fertilization.

Animals↗

Surface ultrastructure and elasticity in growing tips and mature regions of Aspergillus hyphae describe wall maturation.

This study reports the first direct, high-resolution physical and structural evidence of wall changes during hyphal tip growth, visualized by atomic force microscopy (AFM) in Aspergillus nidulans. Images from AFM and cryo-scanning electron microscopy provided comparable information, but AFM was also able to image and physically probe living cells. AFM images showed changes in the surface ultrastructure of A. nidulans hyphae, from newly deposited walls at hyphal tips to fully mature walls, as well as additional changes at young branches arising from mature walls. Surface architecture during wall maturation correlated with changes in the relative viscoelasticity (compliance per unit applied force) of walls measured by force spectroscopy (FS) in growing A. nidulans hyphae. Growing tips showed greater viscoelasticity than mature walls, despite equal support from turgor. Branch tips had comparable viscoelasticity to hyphal tips, unlike the mature wall from which they grew. FS also revealed differences in surface hydrophilicity between newly deposited and mature walls, with the tips being more hydrophilic. The hydrophilicity of young branch tips was similar to that of hyphal tips, and different from that of mature walls. Taken together, AFM images and FS data suggest that the A. nidulans wall matures following deposition at the hyphal tip.

Aspergillus nidulans↗

Inhibition of TNF alpha during maturation of dendritic cells results in the development of semi-mature cells: a potential mechanism for the beneficial effects of TNF alpha blockade in rheumatoid arthritis.

BACKGROUND: Dendritic cells orchestrate pivotal immunological processes mediated by the production of cytokines and chemokines. OBJECTIVE: To assess whether neutralisation of tumour necrosis factor alpha (TNF alpha) during maturation of dendritic cells affects their phenotype and behaviour, which might explain the beneficial effects of TNF alpha neutralisation in rheumatoid arthritis. METHODS: Immature and fully matured dendritic cells were cultured from blood monocytes from patients with rheumatoid arthritis and healthy controls following standardised protocols. TNF alpha was neutralised by addition of the p55 soluble TNF alpha receptor, PEGsTNFRI. The effect of TNF alpha neutralisation on the phenotype (CD14, CD16, CD32, CD64, CD80, CD83, CD86, and MHC) of dendritic cells was investigated by flow cytometry. Expression of chemokines (CCL17, CCL18, CCL19, CCL22, CCL3, and CXCL8) and production of IL1 beta and IL6 during dendritic cell differentiation and maturation were examined. RESULTS: Neutralisation of TNF alpha during the differentiation and maturation of dendritic cells did not result in an altered dendritic cell phenotype in the rheumatoid patients or the healthy controls. In contrast, the expression of CCL17, CCL18, CCL19, CCL22, CCL3, and CXCL8 by dendritic cells was significantly reduced when TNF alpha activity was inhibited during lipopolysaccharide triggered dendritic cell maturation. The production of IL1 beta and IL6 by mature dendritic cells was inhibited by PEGsTNFRI. CONCLUSIONS: Inhibition of TNF alpha activity during dendritic cell maturation leads to the development of semi-mature cells. These data suggest a novel pathway by which the neutralisation of TNF alpha might exert its therapeutic effects.

Arthritis, Rheumatoid↗

Comparisons between cervical vertebrae and hand-wrist maturation for the assessment of skeletal maturity.

It was claimed that, skeletal maturity could be determined by using anatomical changes of the cervical vertebrae observed on the lateral cephalometric radiographs. In this method of assessment cervical vertebrae C2, C3, and C4 are observed and each patient is placed in a cervical vertebrae maturation index (CVMI). Fishman developed a system of hand-wrist skeletal maturation indicators (SMI), using four stages of bone maturation at six anatomic sites. The purpose of this study was to analyze associations between cervical vertebrae maturation index (CVMI) and skeletal maturation index (SMI). The second objective was to determine the reproducibility of the identifications on the lateral cephalograms and hand-wrist films. Lateral cephalometric and left hand-wrist radiographs of 180 untreated subjects (99 girls and 81 boys) aged from 8 to 18 years were obtained from the files of the Marmara University School of Dentistry, Department of Orthodontics. The results of this study indicated that cervical vertebrae maturation and hand-wrist skeletal maturation were significantly related.

Adolescent↗

Pubertal growth and maturity pattern in early and late maturers. A prospective longitudinal study of Swedish urban children.

Pubertal growth in height and the pattern of skeletal and pubertal development were studied in early and late maturers of each sex. The growth rate in height in relation to age at peak height velocity was found to be significantly greater in early maturers of both sexes from at least 7 years before to 2 years after PHV. The peak height was greater in early than in late maturers, the difference being statistically significant in boys only. The amount of growth during the pubertal growth spurt was significantly greater in the early maturers of each sex. The lag periods between the occurrence of maturity indicators of skeletal and pubertal development in relation to age at peak height velocity differed between early and late maturers. The maturity indicators occurred earlier in relation to PHV in the late maturer of each sex.

Adolescent↗

IL-1 beta maturation: evidence that mature cytokine formation can be induced specifically by nigericin.

Mouse peritoneal macrophages stimulated with LPS produce large amounts of pro-IL-1 beta. When these cells were pulse-labeled with [35S]methionine, however, little labeled cytokine appeared in the medium after a chase, and that which was externalized was not processed to its mature biologically active form. In an effort to promote proteolytic maturation of IL-1 beta, macrophages were treated with agents that were expected to compromise their viability. The calcium ionophore A23187 and the detergent saponin caused complete release of nonprocessed 35-kDa pro-IL-1 beta and liberation into the extracellular medium of the cytoplasmic marker enzyme LDH and the lysosomal enzyme beta-N-acetylglucosaminidase. Hypotonic lysis resulted in the release of a 20-kDa IL-1 beta species that was distinct from the 17-kDa mature species. Importantly, incubation of the murine macrophages with the potassium/proton ionophore nigericin led to a quantitative conversion of pro-IL-1 beta to a 17-kDa species. The N-terminus of this nigericin-derived product possessed the amino acid sequence expected for mature biologically active IL-1 beta. Monensin, an ionophore similar to nigericin, did not induce release or proteolysis of IL-1 beta. Complete release of mature IL-1 beta required concentrations of nigericin in excess of 2 microM and a minimum of 10 min of treatment. Mature 17-kDa IL-1 beta was observed within the nigericin-treated cells before their lysis. Nigericin's effect was not limited to mouse peritoneal macrophages, inasmuch as the ionophore also induced release and proteolytic maturation of IL-1 beta produced by LPS-stimulated human peripheral blood monocytes. Treatment of macrophages with LPS and nigericin, therefore, results in a unique series of intracellular events that promote formation of mature 17-kDa IL-1 beta.

Animals↗

In vitro oocyte maturation in the zebra fish, Brachydanio rerio, and the fertilization and development of the mature egg.

The in vitro maturation process of zebra fish oocytes was investigated. When incubated with medium EM-199 containing 0.5 microgram/ml of 17 alpha-hydroxyprogesterone in an incubator with 80% O, 25 degrees C, the germinal vesicles of the oocytes in stage IV migrated from middle between the center and the periphery to the periphery in 40 min, and the oocytes went into stage V 30 min later, undergoing germinal vesicle breakdown (GVBD) with a GVBD% of 59%. Two hours were needed for such oocytes to complete their final maturation. The mature eggs cannot come off the follicle layer surrounding them naturally (ovulation). By removing the follicle and adding active sperm for insemination, we can cause the mature eggs to become fertilized. The chorion elevated and blastoderm formed on the animal pole. The cleavage and development of the fertilized eggs followed are the same as naturally matured fertilized eggs. Using blastula as the criterion for a successful fertilization of the in vitro maturated egg, the fertilization rate is 78%. This is the first report on the successful oocyte final maturation in vitro in zebra fish. The establishment of an oocyte in vitro maturation technique has given grounds for the further investigation on the transfer of foreign genes in the germinal vesicles of the oocytes.

17-alpha-Hydroxyprogesterone↗

Changes in maturation-promoting activity in the cytoplasm of pig oocytes throughout maturation.

Maturation-promoting factor (MPF) was examined in maturing pig oocytes by electrofusing them with germinal vesicle (GV) oocytes. Oocytes containing high levels of MPF (MI or MII stages) induced the breakdown of the GV introduced by fusion and the formation of the metaphase plate in 1 hr. A similar effect was seen when two or three GV oocytes were fused with a MII oocyte and then incubated for 1 hr in the presence of cycloheximide (a specific protein synthesis inhibitor), indicating that high levels of preformed MPF are present at the metaphase stage. During the maturation in vitro of cumulus-enclosed oocytes, a first sharp rise in MPF was seen between 26 and 29 hr of culture (MI stage); MPF declined after 2 hr (AI-TI stages) and again reached high levels at 35 hr, where it remained for the rest of maturation. Denuded oocytes showed a similar behavior, but MPF appeared 9 hr earlier and the rise, due to the asynchronous maturation of these oocytes, was not as sharp as in cumulus enclosed oocytes. Cycloheximide was used to study protein synthesis requirements for oocyte maturation. Intact GV were observed after 44 hr of culture when cycloheximide was added at 26 hr or earlier, and chromosome decondensation and pronuclear formation were observed when the drug was added at 32 hr. Transcriptional requirements were investigated by treating the oocytes with alpha-amanitin, an RNA polymerase inhibitor. This drug could completely inhibit the maturation of cumulus-enclosed oocytes, but this was a somatic cell-mediated effect since denuded oocytes were insensitive to this treatment.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗