Proteomic analysis of porcine oocytes during in vitro maturation reveals essential role for the ubiquitin C-terminal hydrolase-L1
Language English Country England, Great Britain Media print
Document type Journal Article, Research Support, Non-U.S. Gov't
PubMed
17890291
DOI
10.1530/rep-07-0079
PII: 134/4/559
Knihovny.cz E-resources
- MeSH
- Electrophoresis, Gel, Two-Dimensional MeSH
- Myelin Basic Protein analysis metabolism MeSH
- Fertilization in Vitro MeSH
- Immunoblotting MeSH
- Indoles pharmacology MeSH
- Meiosis drug effects physiology MeSH
- Oocytes chemistry metabolism MeSH
- Oximes pharmacology MeSH
- Swine MeSH
- Proteasome Endopeptidase Complex MeSH
- CDC2 Protein Kinase analysis metabolism MeSH
- Protein Kinases analysis metabolism MeSH
- Spectrum Analysis MeSH
- Ubiquitin Thiolesterase analysis antagonists & inhibitors metabolism MeSH
- Ubiquitin metabolism MeSH
- Egg Proteins analysis biosynthesis MeSH
- Animals MeSH
- Check Tag
- Female MeSH
- Animals MeSH
- Publication type
- Journal Article MeSH
- Research Support, Non-U.S. Gov't MeSH
- Names of Substances
- Myelin Basic Protein MeSH
- histone H1 kinase MeSH Browser
- Indoles MeSH
- LDN 57444 MeSH Browser
- Oximes MeSH
- Proteasome Endopeptidase Complex MeSH
- CDC2 Protein Kinase MeSH
- Protein Kinases MeSH
- Ubiquitin Thiolesterase MeSH
- Ubiquitin MeSH
- Egg Proteins MeSH
In this study, we performed proteomic analysis of porcine oocytes during in vitro maturation. Comparison of oocytes at the initial and final stages of meiotic division characterized candidate proteins that were differentially synthesized during in vitro maturation. While the biosynthesis of many of these proteins was significantly decreased, we found four proteins with increased biosynthetic rate, which are supposed to play an essential role in meiosis. Among them, the ubiquitin C-terminal hydrolase-L1 (UCH-L1) was identified by mass spectrometry. To study the regulatory role of UCH-L1 in the process of meiosis in pig model, we used a specific inhibitor of this enzyme, marked C30, belonging to the class of isatin O-acyl oximes. When germinal vesicle (GV) stage cumulus-enclosed oocytes were treated with C30, GV breakdown was inhibited after 28 h of culture, and most of the oocytes were arrested at the first meiosis after 44 h. The block of metaphase I-anaphase transition was not completely reversible. In addition, the inhibition of UCH-L1 resulted in elevated histone H1 kinase activity, corresponding to cyclin-dependent kinase(CDK1)-cyclin B1 complex, and a low level of monoubiquitin. These results supported the hypothesis that UCH-L1 might play a role in metaphase I-anaphase transition by regulating ubiquitin-dependent proteasome mechanisms. In summary, a proteomic approach coupled with protein verification study revealed an essential role of UCH-L1 in the completion of the first meiosis and its transition to anaphase.
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