Meiotic Resumption of Porcine Immature Oocytes is Prevented by Ooplasmic Gsα Functions
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概要
- 論文の詳細を見る
A high cyclic adenosine monophosphate (cAMP) level in the fully-grown immature oocytes prevents their meiotic resumption. In Xenopus, inhibitory cAMP is synthesized within oocytes depending on a stimulatory α-subunit of G-protein (Gsα). In the present study, we examined whether ooplasmic Gsα is involved in the meiotic arrest of porcine oocytes. First, we studied the presence of Gsα molecules in porcine oocytes by immunoblotting, which and this suggested the presence of reported isoforms (45 kDa and 48 kDa) not only in cumulus cells but also in porcine oocytes. Then we injected an anti-Gsα antibody into porcine immature oocytes and found that the inhibition of ooplasmic Gsα functions significantly promoted the germinal vesicle breakdown of the oocytes, whose spontaneous meiotic resumption was prevented by 3-isobutyl-l-methyl-xanthine (IBMX) treatment. Although cyclin B synthesis and M-phase promoting factor (MPF) activation were largely prevented until 30 h of culture in IBMX-treated oocytes, the injection of anti-Gsα antibody into thoese oocytes partially recovered the cyclin B synthesis and activated MPF activity at 30 h. These results suggest that the meiotic resumption of porcine oocytes is prevented by ooplasmic Gsα, which may stimulate cAMP synthesis within porcine oocytes, and that synthesized cAMP prevents the meiotic resumption of oocytes through the signaling pathways involved in MPF activation.
- 日本繁殖生物学会の論文
- 2007-12-01
著者
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KANO Kiyoshi
Laboratory of Applied Genetics, Graduate School of Agricultural and Life Science, University of Toky
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NAITO Kunihiko
Laboratory of Applied Genetics, Graduate School of Agricultural and Life Sciences, University of Tok
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Kano Kiyoshi
東京大学 農学生命科学研究科応用遺伝学
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Naito Kunihiko
東京大学 農学生命科学研究科応用遺伝学
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Kano Kiyoshi
Lab. Of Applied Genetics Graduate School Of Agriculture And Life Sciences The Univ. Of Tokyo
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Kano Kiyoshi
Laboratory Of Applied Genetics Graduate School Of Agriculture And Life Sciences The University Of To
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Endo Tsutomu
Laboratory Of Applied Genetics Graduate School Of Agriculture And Life Science University Of Tokyo
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MORIKAWA Marie
Laboratory of Applied Genetics, Graduate School of Agriculture and Life Science, University of Tokyo
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SEKI Mami
Laboratory of Applied Genetics, Graduate School of Agriculture and Life Science, University of Tokyo
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KUME Sachi
Laboratory of Applied Genetics, Graduate School of Agriculture and Life Science, University of Tokyo
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NISHIMURA Yukio
Laboratory of Applied Genetics, Graduate School of Agriculture and Life Science, University of Tokyo
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Naito Kunihiko
Lab. Of Applied Genetics Graduate School Of Agriculture And Life Sciences The Univ. Of Tokyo
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Naito Kunihiko
Laboratory Of Applied Genetics Graduate School Of Agricultural And Life Science University Of Tokyo
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Naito Kunihiko
Laboratory Of Applied Genetics Graduate School Of Agriculture And Life Sciences The University Of To
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Seki Mami
Laboratory Of Applied Genetics Graduate School Of Agriculture And Life Science University Of Tokyo
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Kume Sachi
Laboratory Of Applied Genetics Graduate School Of Agriculture And Life Science University Of Tokyo
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Morikawa Marie
Laboratory Of Applied Genetics Graduate School Of Agriculture And Life Science University Of Tokyo
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Kano Kiyoshi
Laboratory Of Applied Genetics Department Of Animal Resource Science Graduate School Of Agriculture
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Nishimura Yukio
Department Of Animal Resource Sciences Graduate School Of Agricultural And Life Sciences The Univers
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Naito Kunihiko
Laboratory Of Applied Genetics Department Of Animal Resource Sciences Graduate School Of Agricultura
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Naito K
Laboratory Of Applied Genetics Graduate School Of Agricultural And Life Sciences The University Of T
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