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首页> 外文期刊>Journal of Cellular Physiology >Transition metal dependent regulation of the signal transduction cascade driving oocyte meiosis
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Transition metal dependent regulation of the signal transduction cascade driving oocyte meiosis

机译:过渡金属的依赖监管的信号转导级联开卵母细胞减数分裂

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摘要

The G2‐M transition of the cell cycle requires the activation of members of the Cdc25 dual specificity phosphatase family. Using Xenopus oocyte maturation as a model system, we have previously shown that chelation of transition metals blocks meiosis progression by inhibiting Cdc25C activation. Here, using approaches that allow for the isolation of very pure and active recombinant Cdc25C, we show that Cdc25C does not bind zinc as previously reported. Additionally, we show that mutants in the disordered C‐terminal end of Cdc25C are poor initiators of meiosis, likely due to their inability to localize to the proper sub‐cellular location. We further demonstrate that the transition metal chelator, TPEN, acts on or upstream of polo‐like kinases in the oocyte to block meiosis progression. Together our results provide novel insights into Cdc25C structure‐function relationship and the role of transition metals in regulating meiosis.
机译:G2检测M过渡细胞周期的要求激活Cdc25双重的成员特异性磷酸酶家族。卵母细胞成熟作为模型系统,我们有先前表明,螯合过渡减数分裂过程通过抑制金属块Cdc25C激活。允许非常纯粹的隔离和活跃重组Cdc25C,我们表明,Cdc25C不结合锌之前报道。我们表明,突变体在无序C的终端年底Cdc25C贫穷减数分裂的发起者,可能是因为他们无法定位适当的辅助细胞的位置。表明,过渡金属螯合剂,TPEN,作用于或上游的马球类激酶块的卵母细胞减数分裂进程。我们的研究结果提供了新颖的见解Cdc25C结构功能关系和所扮演的角色过渡金属在调节减数分裂。

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