• Title/Summary/Keyword: mouse oocytes

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Expression of Egr3 in mouse gonads and its localization and function in oocytes

  • Shin, Hyejin;Seol, Dong-Won;Nam, Minyeong;Song, Haengseok;Lee, Dong Ryul;Lim, Hyunjung Jade
    • Asian-Australasian Journal of Animal Sciences
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    • v.30 no.6
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    • pp.781-787
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    • 2017
  • Objective: The early growth response (Egr) family consists of four members (Egr1, Egr2, Egr3, and Egr4) that are zinc finger transcription factors. Among them, Egr3 is involved in transcriptional regulation of target genes during muscle spindle formation and neurite outgrowth. We previously showed that the immunoreactive Egr3 is localized on oocyte spindle and accumulate near the microtubule organizing center during meiosis I in mice. Egr3 was also shown to be localized on spermatocytes. We herein investigated if Egr3 is expressed in mouse gonads and if Egr3 blockade results in any defect in oocyte maturation. Methods: Expression of Egr3 in mouse gonads was examined by reverse transcription-polymerase chain reaction. Full-length Egr3 and truncated Egr3 (${\Delta}Egr3$) complementary RNAs (cRNAs) with Xpress tag at N-terminus and DsRed2 at C-terminus, and small interfering RNA (siRNA) targeting Egr3 were microinjected into mouse oocytes at germinal vesicle stage. Localization of microinjected Egr3 was examined by confocal live imaging and immunofluorescence staining. Results: Egr3 mRNA was detected in mouse ovaries and testes from 1 to 4 week-old mice. An uncharacterized longer transcript containing 5'untranslated region was also detected in 3 and 4 week-old gonads. Microinjected Xpress-Egr3-DsRed2 or Xpress-${\Delta}Egr3$-DsRed2 localized to nuclei and chromosomes during meiotic progression. Microinjection of these cRNAs or Egr3 siRNA in oocytes did not affect meiotic maturation. Immunofluorescence staining of Egr3 in Xpress-${\Delta}Egr3$-DsRed2-injected oocytes showed a positive signal only on meiotic spindle, suggesting that this antibody does not detect endogenous or exogenous Egr3 in mouse oocytes. Conclusion: The results show that Egr3 localizes to chromosomes during meiotic progression and that certain antibodies may not faithfully represent localization of target proteins in oocytes. Egr3 seems to be dispensable during oocyte maturation in mice.

The Effects of Antioxidants on the Culture of Mouse Preantral Follicles In Vitro

  • Kim, Dong-Hoon;Kim, Dong-Kyo;Yang, Byoung-Chul;Park, Jin-Ki
    • Reproductive and Developmental Biology
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    • v.37 no.4
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    • pp.193-197
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    • 2013
  • In order to investigate the effects of antioxidants on the culture of mouse preantral follicles in vitro, we examined the effects of taurine, glutathione and catalase on their growth and maturation. Addition of taurine was not effective on the survival of preantral follicles. However, metaphase II rates of oocytes within preantral follicles were significantly higher in 1 mM treated group than in control and 10 mM treated group (p<0.05). Glutathione did not improved the rates of survival and metaphase II oocytes. However, metaphase II rates of oocytes progressively decreased with increasing glutathione concentration. Catalase also showed that the rates of survival and metaphase II oocytes progressively decreased with increasing concentration. Especially, all of preantral follicles cultured in medium containing 100 IU/ml catalase were degenerated. These results suggest that low concentraion of taurine, as an antioxidant, have positive effect on the culture of mouse preantral follicles in vitro.

Redistribution of Intracellular $Ca^{2+}$ Stores during Mouse OOcyte Maturation (생쥐 난자 성숙시 일어나는 칼슘 저장고의 분포 변화에 관한 연구)

  • 최수완
    • Development and Reproduction
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    • v.1 no.1
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    • pp.45-56
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    • 1997
  • Befor fertilization, mammalian oocytes undergo meiotic maturation, which consists of nuclear and cytoplasmic differentiation. In this study, changes of $Ca^{2+}$ stores in mouse oocytes were examined during meiotic maturation and the role of $Ca^{2+}$ in the regulation of the maturation was investigated by using monoclonal antibodies against smooth endoplasmic reticulum $Ca^{2+}$-ATPase(SERCA-ATPase) and calreticulin. Observations were made under epifluorescence microscope and/or confocal laser scanning microscope. In immature oocytes which did not resume meiotic maturation, SERCA-ATPases were mostly localized in the vicinity of the germinal vesicle and calreticulins were distributed evenly throughout the cytoplasm. In mature oocytes, SERCA-ATPases were observed throughout the cytoplasm, butwere absent from the nuclear region. In contrast, calreticulins were localized mostl in the cortex of the oocyte and were absent from the cytoplasm. However, bright fluoresence stainings were wbserved in the perimeiotic spindle region of mature oocyte when labeled with antibodies against calreticulin. These results indicate that mouse oocytes undergo distinct rearrangement of the localization of $Ca^{2+}$-ATPases and calreticulins during meiotic maturation. Thus it can be suggested that redistribution of the $Ca^{2+}$ stores, as revealed by differential fluorescence stainings, is deeply involved in the regulatory mechanism of mammalian oocyte maturation.

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Internal Perfusion of ADP in Mouse Oocytes Increases Outward $K^+$ Currents (ADP에 의한 생쥐 난자의 외향전류 증가 효과)

  • 한재희;박홍기;강다원;이상미;이상호;배인하;홍성근
    • Development and Reproduction
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    • v.4 no.2
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    • pp.243-250
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    • 2000
  • To find the mechanism underlying the ADP-induced increase in the outward current in ovulated mouse oocytes, we examined changes in voltage-dependent currents using the whole cell voltage clamp technique and the internal perfusion technique. Eggs were collected from the oviduct of superovulated mice with PMSG and hCG. Membrane potential was held at -60 mV (or -80 mV in the case of recording $Ca^{2+}$ currents) and step depolarizations or hyperpolarizations were applied for 300 ms. By step depolarizations, outward currents comprising steady-state and time-dependent components were elicited. They were generated in response to the positive potential more than 20 mV with severe outward rectification and were blocked by external TEA, a specific $K^{+}$ channel blocker, suggesting that they be carried via $K^{+}$ channels. Internally-perused 5 mM ADP gradually increased outward $K^{+}$ currents (IK) 1 min after perfusion of ADP and reached slowly to maximum (150~170%) 5 min later over the positive potential range, implying that ADP might not be acted directly to the $K^{+}$ channels. IK were decreased by 5 mM ATP without affecting the steady-state component of outward current. In contrast to the effect of ADP and ATP on IK, both effect of ATP and ADP on inward $Ca^{2+}$ currents (ICa) could not be detected due to the continuous decrease in current amplitudes with time-lapse ("run-down" phenomena). To check if there is a G protein-involved regulation in the ionic current of mouse oocytes, 1 mM GTP was applied to the cytoplasmic side, and the outward current and inward currents were recorded. ICa was promptly increased in the presence of GTP whereas IK was not changed. from these results, it is concluded that the ATP-dependent regulation is likely linked in the ADP-induced increase in the outward $K^{+}$ current, and G protein-involved cellular signalling might affect ion channels carrying $Ca^{2+}$ and $K^{+}$ in mouse oocytes.

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Expression of Progesterone Receptor Membrane Component 1 and 2 in the Mouse Gonads and Embryos (생쥐 생식소 및 배아의 프로게스테론 수용체 막성분 1과 2의 발현에 관한 연구)

  • Kim, Kyeoung-Hwa;Lee, Kyung-Ah
    • Development and Reproduction
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    • v.11 no.1
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    • pp.21-29
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    • 2007
  • Previously, we found progesterone receptor membrane component 2 (pgrmc2) was highly expressed in germinal vesicle (GV) stage oocytes. The present study was conducted to characterize the expression of pgrmc2, as well as pgrmc1, in the mouse gonads and embryos according to their developmental stages. We found that these membrane components were expressed in ovaries, testes, and embryos at various developmental stages in addition to oocytes. Progesterone-3-O-carboxymethyl oxime-BSA-fluorescein isothiocyanate (P4-BSA-FITC) was applied to visualize the presence of the progesterone receptor on mouse oocyte membrane, and we confirmed that immobilized progesterone is localized at surface of the oocyte. This is, at our knowledge, the first report regarding the expression of membrane component of progesterone receptor in the mouse oocytes, embryos, and gonads. The function and signal transduction pathway of progesterone receptor membrane components in oocytes requires further studies.

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Effects of BMI-1026, A Potent CDK Inhibitor, on Murine Oocyte Maturation and Metaphase II Arrest

  • Choi, Tae-Saeng
    • Reproductive and Developmental Biology
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    • v.31 no.2
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    • pp.71-76
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    • 2007
  • Previous studies have shown that BMI-1026 is a potent inhibitor of the cyclin-dependent kinases (cdk). In cell culture, the compound also arrests G2/M strongly and G1/S and S weakly. Two key kinases, cdk1 (p34cdc2 kinase) and mitogen-activated protein (MAP) kinase (erk1 and 2), perform crucial roles during oocyte maturation and, later, metaphase II (MII) arrest. In mammalian oocytes, both kinases are activated gradually around the time of germinal vesicle breakdown (GVBD) and maintain high activity in eggs arrested at metaphase II. In this study, we examined the effects of BMI-1026 on GVBD and MII arrest in mouse oocytes. BMI-1026 inhibited GVBD of immature oocytes and activated MII-arrested oocytes in a concentration-dependent manner, with more than 90% of oocytes exhibiting GVBD inhibition and MII activation at 100 nM This is approximately 500$\sim$1,000 times more potent than the activity reported for the cdk inhibitors roscovitine (${\sim}50{\mu}M$) and butyrolactone (${\sim}100{\mu}M$). Based on the results of previous in vitro kinase assays, we expected BMI-1026 to inhibit only cdk1 activation in oocytes and eggs, not MAP kinase. However, in our cell-based system, it inhibited the activity of both kinases. We also found that the effect of BMI-1026 is reversible. Our results suggest that BMI-1026 inhibits GVBD and activates MII-arrested oocytes efficiently and reversibly and that it also inhibits both cdk1/histone HI kinase and MAP kinase in mouse oocytes.

In Vitro Growth and Maturation of Mammalian Oocytes (포유동물 난자의 성장과 성숙)

  • Kato, S.;Miyano, T.;Hirao, H.;Miyake, M.
    • Korean Journal of Animal Reproduction
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    • v.19 no.4
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    • pp.323-329
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    • 1996
  • In vitro cultrue systems for the growth of sma-II oocytes and for meiotic maturation are expected to provide a new source of a large population of oocytes as well as assistance in basic physiological studies of oogenesis. Mouse oocytes mid-growth phase can complete grovvth and acquire full developmental capacity in vitro. On the other hand, growing pig oocytes need some other factors. FSH at a low concentration maintains the viability of both oocytes and granulosa cells, and hypoxanthine promotes the meiotic competence of the oocytes during culture period. Considerable improvement in the culture systems for growth of pig oocytes, suggested from mouse studies, and for oocyte maturation could help to develop this technology in larger species.

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Studies on Synergistic Effect of dbcAMP and Progesterone on the Maturation of Mouse Oocytes in vitro (배양중인 생쥐 난자의 성숙에 미치는 dbcAMP 및 Progesterone의 동시영향에 관한 연구)

  • Cho, Wan-Kyoo;Rhee, Kun-Soo
    • The Korean Journal of Zoology
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    • v.28 no.2
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    • pp.99-107
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    • 1985
  • In order to investigate the synergistic effect of dbcAMP and progesterone which are known as the agents to inhibit maturation of mammalian oocytes in vitro, the present studies were done and the results were obtained as follow: 1) if 10 $\\mug$/ml of dbcAMP or 2 $\\mug$/ml of progesterone was given into the medium, each of the agents at the concentration above did not give any inhibitory effect on the maturation of the mouse oocytes in vitro; 2) however, when the two agents at the concentration shown above were given together into the medium, the mouse oocytes were arrested at GV stage; and 3) the oocytes, precultured in the medium containing two agnts at the same concentration as above for four hours, resumed their maturation division upon transfer to the plain medium for the extended culture. Thus, it was found that dbcAMP and progesterone were capable to suppress the maturation of mouse oocytes at the suboptimal concentration when they were given together, and such inhibitory effect was reversible.

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A Role of Tissue Transglutaminase in the Germinal Vesicle Breakdown of Mouse Oocytes

  • Kim, Sung-Woo;Park, Jin-Ki;Lee, Yun-Keun;Lee, Poongyeon;Kim, Jung-Ho;Han, Joo-Hee;Park, Chun-Gyu;Ha, Kwon-Soo;Chang, Won-Kyong
    • Proceedings of the KSAR Conference
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    • 2003.06a
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    • pp.61-61
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    • 2003
  • We have investigated the novel function of tissue transglutaminase (tTG) in the germinal vesicle breakdown (GVBD) of mouse oocyte. tTG was identified in ooplasm and germinal vesicle by immunostaining assay. Spontaneous maturation of the oocytes elevated in situ activity of tTG by over 2.5 fold at 3 hr, which was determined by a confocal microscopic assay. However, incubation with monodansylcadaverine (MDC), a tTG inhibitor, blocked the activation of tTG. The possible role of tTG in GVBD was investigated by the use of two tTG inhibitors, MDC and cystamine. MDC largely inhibited the GVBD by a concentration dependent manner. GV-stage oocytes were matured to the GVBD stage by 78% at 3 hr in BWW culture medium. However, in the oocytes incubated with MDC for 3 hr, the GVBD rates were 43 and 11% by 50 and 100 mM, respectively. MDC also blocked the entry of 70 kDa TRITC-dextran from the ooplasm to the compartment of germinal vesicle, indicating a possible inhibition of nuclear pore disassembly by MDC. The role of tTG in GVBD was further investigated by microinjection with cystamine. The control oocytes, injected with DPBS, showed about 80 % of GVBD at 3 hr. But the oocytes injected with cystamine showed 15% of GVBD at 3 hr and a little higher rate at 6 hr. In addition, the inhibition of GVBD maturation by MDC was reversible by washing. These results suggested that tTG was involved in the early event of mouse oocyte maturation

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Effect of Zona Hardening on In Vitro Fertilization in Mouse Oocytes I. Analysis of Zona Soluble Properties with Proteolytic Enzymes (생쥐난자에 있어서 투명대 경화 현상이 체외수정에 미치는 영향 I. 단백분해효소에 의한 투명대의 용해성 분석)

  • 이상진;이상민;지희준;장경환;정형민;이훈택;정길생
    • Korean Journal of Animal Reproduction
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    • v.17 no.2
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    • pp.93-101
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    • 1993
  • These experiments were carried out to investigate whether zona hardening affect the efficiency of in vitro fertilization in mouse oocytes. The soluble properties for zona pellucida of oocytes matured in vivo, aged oocytes, and ovarian oocytes matured in vitro have been analyzed with proteolytic enzyme, 3mg/ml of $\alpha$-chymotrypsin. The mean solubility(t50) for the zona of unfertilized oocytes, oocytes not fertilized at the first inseminati and in vitro produced zygotes were 10.1, 20.3 and 32.3min., respectively. The t50 for zona lysis of fertilized oocytes was significantly difference than those observed for unfertilized oocytes and oocytes not fertilized at the first insemination(P<0.01). In addition, the t50 of zona in ovulated oocytes with and without cumulus cells incubated for 0, 3, 6, 9 and 12 hr in vitro, t50 were 13.9, 11.1, 20.7 and 28.0min., and 22.3, 21.0, 30.0 and 33.5min., respectively. In these experiments, the zona pellucida showed a gradual increase in resistance to dissolution by $\alpha$-chyjotrypsin with in vitro aging for more than 6 hrs. This effect was greater in cumulus-free as compared to cumulus-intact oocytes. Finally, in cumulus-intact and cumulus-free ovarian oocytes matured for 0, 5, 10 and 15 hr in vitro the t50 of zona pellucida were 3.0, 10.6, 18.4 and 24.5 min., and 3.0, 14.0, 26.2 and 32.0 min., respectively. Clear differences in solubility between the zona pellucida of oocytes matured in vivo and in vitro. This data were found suggest that under in vitro conditions there is a gradual change in the soluble properties of the zona pellucida, particularly in the absence of the cumulus cells.

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