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The Inhibition of Polo Kinase by Matrimony Maintains G2 Arrest in the Meiotic Cell Cycle

机译:婚姻对马球激酶的抑制作用在减数分裂细胞周期中维持G2阻滞。

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摘要

Many meiotic systems in female animals include a lengthy arrest in G2 that separates the end of pachytene from nuclear envelope breakdown (NEB). However, the mechanisms by which a meiotic cell can arrest for long periods of time (decades in human females) have remained a mystery. The Drosophila Matrimony (Mtrm) protein is expressed from the end of pachytene until the completion of meiosis I. Loss-of-function mtrm mutants result in precocious NEB. Coimmunoprecipitation experiments reveal that Mtrm physically interacts with Polo kinase (Polo) in vivo, and multidimensional protein identification technology mass spectrometry analysis reveals that Mtrm binds to Polo with an approximate stoichiometry of 1:1. Mutation of a Polo-Box Domain (PBD) binding site in Mtrm ablates the function of Mtrm and the physical interaction of Mtrm with Polo. The meiotic defects observed in mtrm/+ heterozygotes are fully suppressed by reducing the dose of polo+, demonstrating that Mtrm acts as an inhibitor of Polo. Mtrm acts as a negative regulator of Polo during the later stages of G2 arrest. Indeed, both the repression of Polo expression until stage 11 and the inactivation of newly synthesized Polo by Mtrm until stage 13 play critical roles in maintaining and properly terminating G2 arrest. Our data suggest a model in which the eventual activation of Cdc25 by an excess of Polo at stage 13 triggers NEB and entry into prometaphase.
机译:在雌性动物中,许多减数分裂系统都在G2中长时间停滞,从而使粗线末端与核被膜破裂(NEB)分开。然而,减数分裂细胞可以长时间停滞的机制(人类女性数十年)仍然是一个谜。果蝇婚姻(Mtrm)蛋白从粗线末端开始直至减数分裂I完成。功能丧失的mtrm突变体导致早熟的NEB。免疫共沉淀实验表明Mtrm在体内与Polo激酶(Polo)发生物理相互作用,多维蛋白质鉴定技术质谱分析表明Mtrm与Polo的化学计量比约为1:1。 Mtrm中的Polo-Box域(PBD)结合位点的突变消除了Mtrm的功能以及Mtrm与Polo的物理相互作用。通过减少polo + 的剂量,可以完全抑制mtrm / +杂合子中的减数分裂缺陷,这表明Mtrm可以作为Polo的抑制剂。在G2逮捕的后期,Mtrm充当Polo的负调节器。实际上,直到第11阶段的Polo表达抑制和Mtrm直到第13阶段的新合成Polo失活都在维持和适当终止G2阻滞中起着关键作用。我们的数据提出了一个模型,其中在第13阶段通过过量的Polo最终激活Cdc25会触发NEB并进入前中期。

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