PLoS ONE · 2013 · 39 citations · 33 references
OocyteMeiotic ArrestGeneticsMolecular BiologyMolecular GeneticsFertilisationTranscriptional RegulationIs InvolvedSpin1 Mutant OocytesGametogenesisProtein FunctionCell DivisionMeiosisMrna-binding Protein Serbp1Cellular BiologyMammalian OocytesGene ExpressionCell BiologyChromatinDevelopmental BiologyOogenesisNatural SciencesMedicineCell Development
Mammalian oocytes are arrested at prophase I of meiosis, and resume meiosis prior to ovulation. Coordination of meiotic arrest and resumption is partly dependent on the post-transcriptional regulation of maternal transcripts. Here, we report that, SPINDLIN1 (SPIN1), a maternal protein containing Tudor-like domains, interacts with a known mRNA-binding protein SERBP1, and is involved in regulating maternal transcripts to control meiotic resumption. Mouse oocytes deficient for Spin1 undergo normal folliculogenesis, but are defective in resuming meiosis. SPIN1, via its Tudor-like domain, forms a ribonucleoprotein complex with SERBP1, and regulating mRNA stability and/or translation. The mRNA for the cAMP-degrading enzyme, PDE3A, is reduced in Spin1 mutant oocytes, possibly contributing to meiotic arrest. Our study demonstrates that Spin1 regulates maternal transcripts post-transcriptionally and is involved in meiotic resumption.
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Granulosa Cell Ligand NPPC and Its Receptor NPR2 Maintain Meiotic Arrest in Mouse Oocytes
Meijia Zhang, You‐Qiang Su, Koji Sugiura et al. · Science · 2010 · 611 citations · Full text
Oocyte, Meiotic Arrest, Fertility +17
Nucleosome-Interacting Proteins Regulated by DNA and Histone Methylation
Till Bartke, Michiel Vermeulen, Blerta Xhemalçe et al. · Cell · 2010 · 595 citations · Full text