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首页> 外文期刊>Human Molecular Genetics >Wnt4/5a signalling coordinates cell adhesion and entry into meiosis during presumptive ovarian follicle development
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Wnt4/5a signalling coordinates cell adhesion and entry into meiosis during presumptive ovarian follicle development

机译:Wnt4 / 5a信号传导在推测性卵泡发育过程中协调细胞黏附和进入减数分裂

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Germ cells are the foundation of an individual, since they generate the gametes and provide the unique genome established through meiosis. The sex-specific fate of the germline in mammals is thought to be controlled by somatic signals, which are still poorly characterized. We demonstrate here that somatic Wnt signalling is crucial for the control of female germline development. Wnt-4 maintains germ cell cysts and early follicular gene expression and provides a female pattern of E-cadherin and β-catenin expression within the germ cells. In addition, we find that Stra8 expression is downregulated and the Cyp26b1 gene is expressed ectopically in the partially masculinized Wnt-4-deficient ovary. Wnt-4 may control meiosis via these proteins since the Cyp26b1 enzyme is known to degrade retinoic acid (RA) and inhibit meiosis in the male embryo, and Stra8 induces meiosis in the female through RA. Reintroduction of a Wnt-4 signal to the partially masculinized embryonic ovary, in fact, rescues the female property to a certain degree, as seen by inhibition of Cyp26b1 and induction of Irx3 gene expression. Wnt-4 deficiency allows only 20% of the germ cells to initiate meiosis in the ovary, whereas meiosis is inhibited completely in the Wnt-4/Wnt-5a double mutant. These findings indicate a critical role for Wnt signalling in meiosis. Thus, the Wnt signals are important somatic cell signals that coordinate presumptive female follicle development.
机译:生殖细胞是个体的基础,因为它们生成配子并提供通过减数分裂建立的独特基因组。哺乳动物中种系的性别特异性命运被认为是受体细胞信号控制的,而这些信号的特征仍然很差。我们在这里证明,体细胞Wnt信号对于女性种系发育的控制至关重要。 Wnt-4维持生殖细胞囊肿和早期卵泡基因表达,并在生殖细胞内提供E-钙粘蛋白和β-连环蛋白表达的女性模式。此外,我们发现Stra8表达下调并且在部分男性化的Wnt-4缺陷型卵巢中异位表达Cyp26b1基因。 Wnt-4可能通过这些蛋白质控制减数分裂,因为已知Cyp26b1酶可降解维甲酸(RA)并抑制雄性胚胎的减数分裂,而Stra8可通过RA诱导雌性减数分裂。实际上,将Wnt-4信号重新引入到部分男性化的胚胎卵巢中,可以在一定程度上拯救雌性,如通过抑制Cyp26b1和诱导Irx3基因表达所见。 Wnt-4缺乏症仅允许20%的生殖细胞在卵巢中引发减数分裂,而减数分裂在Wnt-4 / Wnt-5a双重突变体中被完全抑制。这些发现表明Wnt信号在减数分裂中的关键作用。因此,Wnt信号是重要的体细胞信号,可协调推测的女性卵泡发育。

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  • 来源
    《Human Molecular Genetics》 |2010年第8期|p.1539-1550|共12页
  • 作者单位

    Laboratory of Developmental Biology, Department of Medical Biochemistry and Molecular Biology, Oulu Centre for Cell-Matrix Research, Institute of Biomedicine, Biocenter Oulu and;

    Laboratory of Developmental Biology, Department of Medical Biochemistry and Molecular Biology, Oulu Centre for Cell-Matrix Research, Institute of Biomedicine, Biocenter Oulu and;

    Laboratory of Developmental Biology, Department of Medical Biochemistry and Molecular Biology, Oulu Centre for Cell-Matrix Research, Institute of Biomedicine, Biocenter Oulu and;

    Electron Microscopy Unit, University of Oulu, PO Box 5000, FIN-90220 Oulu, Finland;

    Laboratory of Developmental Biology, Department of Medical Biochemistry and Molecular Biology, Oulu Centre for Cell-Matrix Research, Institute of Biomedicine, Biocenter Oulu and;

    Laboratory of Developmental Biology, Department of Medical Biochemistry and Molecular Biology, Oulu Centre for Cell-Matrix Research, Institute of Biomedicine, Biocenter Oulu and;

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