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Ipl1/Aurora B kinase coordinates synaptonemal complex disassembly with cell cycle progression and crossover formation in budding yeast meiosis

机译:Ipl1 / Aurora B激酶协调芽突酵母减数分裂过程中的突触复合体分解与细胞周期进程和交叉形成

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摘要

Several protein kinases collaborate to orchestrate and integrate cellular and chromosomal events at the G2/M transition in both mitotic and meiotic cells. During the G2/M transition in meiosis, this includes the completion of crossover recombination, spindle formation, and synaptonemal complex (SC) breakdown. We identified Ipl1/Aurora B kinase as the main regulator of SC disassembly. Mutants lacking Ipl1 or its kinase activity assemble SCs with normal timing, but fail to dissociate the central element component Zip1, as well as its binding partner, Smt3/SUMO, from chromosomes in a timely fashion. Moreover, lack of Ipl1 activity causes delayed SC disassembly in a cdc5 as well as a CDC5-inducible ndt80 mutant. Crossover levels in the ipl1 mutant are similar to those observed in wild type, indicating that full SC disassembly is not a prerequisite for joint molecule resolution and subsequent crossover formation. Moreover, expression of meiosis I and meiosis II-specific B-type cyclins occur normally in ipl1 mutants, despite delayed formation of anaphase I spindles. These observations suggest that Ipl1 coordinates changes to meiotic chromosome structure with resolution of crossovers and cell cycle progression at the end of meiotic prophase.
机译:几种蛋白激酶共同协作,在有丝分裂和减数分裂细胞中,在G2 / M转换时协调并整合细胞和染色体事件。在减数分裂的G2 / M过渡过程中,这包括完成交叉重组,纺锤体形成和联会复合物(SC)分解。我们确定Ipl1 / Aurora B激酶为SC拆卸的主要调节器。缺乏Ipl1或其激酶活性的突变体会按正常时机组装SC,但不能及时从染色体上解离中央元件组分Zip1及其结合伴侣Smt3 / SUMO。此外,缺乏Ipl1活性会导致cdc5以及CDC5诱导型ndt80突变体中的SC分解延迟。 ipl1突变体中的交叉水平类似于在野生型中观察到的水平,表明完全的SC分解不是联合分子拆分和后续交叉形成的先决条件。此外,减数分裂I和减数分裂II特定的B型细胞周期蛋白的表达通常发生在ipl1突变体中,尽管后期I纺锤体的形成有所延迟。这些观察结果表明,在减数分裂前期结束时,Ipl1协调减数分裂染色体结构的变化,具有交叉的分辨率和细胞周期进程。

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