首页> 美国卫生研究院文献>American Journal of Physiology - Cell Physiology >PLK1 regulates spindle association of phosphorylated eukaryotic translation initiation factor 4E-binding protein and spindle function in mouse oocytes
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PLK1 regulates spindle association of phosphorylated eukaryotic translation initiation factor 4E-binding protein and spindle function in mouse oocytes

机译:PLK1调节小鼠卵母细胞中磷酸化的真核翻译起始因子4E结合蛋白的纺锤体关联和纺锤体功能

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摘要

Oocyte meiotic spindles are associated with spindle-enriched mRNAs, phosphorylated ribosome protein S6, and phosphorylated variants of the key translational regulator, eukaryotic translation initiation factor 4E-binding protein 1 (eIF4E-BP1), consistent with translational control of localized mRNAs by eIF4E-BP1 in facilitating spindle formation and stability. Using specific kinase inhibitors, we determined which kinases regulate phosphorylation status of eIF4E-BP1 associated with meiotic spindles in mouse oocytes and effects of kinase inhibition on chromosome congression and spindle formation. Neither ataxia telangiectasia-mutated kinase nor mechanistic target of rapamycin inhibition significantly affected phosphorylation status of spindle-associated eIF4E-BP1 at the phosphorylation sites examined. Spindle-associated phospho-eIF4E-BP1, spindle formation, and chromosome congression were strongly disrupted by polo-like kinase I (PLK1) inhibition at both metaphase I (MI) and MII. In addition, direct inhibition of eIF4E-BP1 via 4EGI led to spindle defects at MI, indicating a direct role for eIF4E-BP1 phosphorylation in meiotic spindle formation. PLK1 also regulated microtubule dynamics throughout the ooplasm, indicating likely coordination between spindle dynamics and broader ooplasm cytoskeletal dynamics. Because diverse upstream signaling pathways converge on PLK1, these results implicate PLK1 as a major regulatory nexus coupling endogenous and exogenous signals via eIF4E-BP1 to the regulation of spindle formation and stability.
机译:卵母细胞减数分裂纺锤体与纺锤体富集的mRNA,磷酸化的核糖体蛋白S6和关键翻译调节子,真核翻译起始因子4E结合蛋白1(eIF4E-BP1)的磷酸化变体相关,与eIF4E-对局部mRNA的翻译控制一致BP1在促进纺锤形成和稳定性方面。使用特定的激酶抑制剂,我们确定了哪些激酶调节与小鼠卵母细胞中减数分裂纺锤体相关的eIF4E-BP1的磷酸化状态以及激酶抑制对染色体国会和纺锤体形成的影响。共济失调的毛细血管扩张突变激酶或雷帕霉素抑制的机制目标均未显着影响纺锤体相关的eIF4E-BP1在所检测的磷酸化位点的磷酸化状态。主轴相关的磷酸化-eIF4E-BP1,纺锤体形成和染色体大会受到中期I(MI)和MII的马球样激酶I(PLK1)抑制强烈破坏。此外,通过4EGI直接抑制eIF4E-BP1导致MI处的纺锤体缺陷,表明eIF4E-BP1磷酸化在减数分裂纺锤体形成中具有直接作用。 PLK1还调节整个卵质的微管动力学,表明纺锤体动力学和更广泛的卵质细胞骨架动力学之间可能协调。由于多种上游信号通路在PLK1上汇合,因此这些结果暗示PLK1是通过eIF4E-BP1将内源性和外源性信号偶联到纺锤体形成和稳定性调节上的主要调节联系。

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