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Fpr3 和 Zip3 确保了芽殖酵母中减数分裂重组的起始先于染色体联会。

Fpr3 and Zip3 ensure that initiation of meiotic recombination precedes chromosome synapsis in budding yeast.

机构信息

Department of Molecular, Cellular and Developmental Biology, Yale University, New Haven, CT 06520, USA.

出版信息

Curr Biol. 2009 Sep 29;19(18):1519-26. doi: 10.1016/j.cub.2009.08.048. Epub 2009 Sep 17.

Abstract

BACKGROUND

Homolog pairing, synaptonemal complex (SC) assembly (chromosome synapsis), and crossover recombination are essential for successful meiotic chromosome segregation. A distinguishing feature of meiosis in budding yeast and mammals is that synapsis between homologs depends upon recombination; however, the molecular basis for this contingency is not understood.

RESULTS

We show here that the yeast proline isomerase Fpr3 and the small ubiquitin-like modifier (SUMO) ligase Zip3 ensure that SC assembly is dependent upon recombination initiation. When Fpr3 and Zip3 are absent, synapsis occurs even in a mutant that fails to initiate recombination and homolog pairing. Fpr3 and Zip3 appear to specifically prevent synapsis initiation at centromeric sites. This result is consistent with previous observations of SC proteins localizing to centromeres prior to and independent of meiotic recombination initiation. Finally, we show that without Fpr3 and Zip3 activities, the synapsis initiation components Zip2 and Zip4 are dispensable for chromosome synapsis.

CONCLUSIONS

Fpr3 and Zip3 represent parallel pathways that function in a checkpoint-like manner to ensure that chromosome synapsis is contingent on the initiation of recombination. We propose that, during normal meiosis, Zip2 and Zip4 act downstream of recombination signals to oppose Fpr3- and Zip3-mediated inhibitions to initiating SC assembly at centromeres. These data suggest a role for centromeres in coordinating major meiotic chromosomal events and draw an interesting parallel between yeast centromeres and C. elegans pairing centers.

摘要

背景

同源配对、联会复合体(SC)组装(染色体联会)和交叉重组对于成功的减数分裂染色体分离至关重要。芽殖酵母和哺乳动物减数分裂的一个显著特征是同源物之间的联会取决于重组;然而,这种偶然性的分子基础尚不清楚。

结果

我们在这里表明,酵母脯氨酸异构酶 Fpr3 和小泛素样修饰物(SUMO)连接酶 Zip3 确保 SC 组装依赖于重组起始。当 Fpr3 和 Zip3 缺失时,即使在不能起始重组和同源配对的突变体中,联会也会发生。Fpr3 和 Zip3 似乎专门防止在着丝粒位点起始联会。这一结果与之前关于 SC 蛋白在减数分裂重组起始之前和独立于其定位到着丝粒的观察结果一致。最后,我们表明,在没有 Fpr3 和 Zip3 活性的情况下,联会起始组件 Zip2 和 Zip4 对于染色体联会是可有可无的。

结论

Fpr3 和 Zip3 代表平行途径,以类似检查点的方式发挥作用,以确保染色体联会取决于重组的起始。我们提出,在正常减数分裂过程中,Zip2 和 Zip4 作用于重组信号的下游,以拮抗 Fpr3 和 Zip3 介导的在着丝粒处抑制 SC 组装。这些数据表明着丝粒在协调主要的减数分裂染色体事件中起作用,并在酵母着丝粒和 C. elegans 配对中心之间形成了有趣的平行关系。

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