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SUMO 是一种普遍存在的减数分裂调节因子。

SUMO is a pervasive regulator of meiosis.

机构信息

Howard Hughes Medical Institute, University of California Davis, Davis, United States.

Department of Microbiology & Molecular Genetics, University of California Davis, Davis, United States.

出版信息

Elife. 2021 Jan 27;10:e57720. doi: 10.7554/eLife.57720.

Abstract

Protein modification by SUMO helps orchestrate the elaborate events of meiosis to faithfully produce haploid gametes. To date, only a handful of meiotic SUMO targets have been identified. Here, we delineate a multidimensional SUMO-modified meiotic proteome in budding yeast, identifying 2747 conjugation sites in 775 targets, and defining their relative levels and dynamics. Modified sites cluster in disordered regions and only a minority match consensus motifs. Target identities and modification dynamics imply that SUMOylation regulates all levels of chromosome organization and each step of meiotic prophase I. Execution-point analysis confirms these inferences, revealing functions for SUMO in S-phase, the initiation of recombination, chromosome synapsis and crossing over. K15-linked SUMO chains become prominent as chromosomes synapse and recombine, consistent with roles in these processes. SUMO also modifies ubiquitin, forming hybrid oligomers with potential to modulate ubiquitin signaling. We conclude that SUMO plays diverse and unanticipated roles in regulating meiotic chromosome metabolism.

摘要

蛋白质的 SUMO 修饰有助于精心策划减数分裂的复杂事件,以忠实产生单倍体配子。迄今为止,仅鉴定出少数减数分裂 SUMO 靶标。在这里,我们在芽殖酵母中描绘了一个多维的 SUMO 修饰的减数分裂蛋白质组,鉴定了 775 个靶标中的 2747 个连接位点,并定义了它们的相对水平和动态。修饰位点聚集在无序区域,只有少数符合共识基序。靶标身份和修饰动力学表明 SUMO 化调节染色体组织的所有水平和减数分裂前期 I 的每个步骤。执行点分析证实了这些推断,揭示了 SUMO 在 S 期、重组起始、染色体联会和交叉中的作用。当染色体联会和重组时,K15 连接的 SUMO 链变得突出,这与这些过程中的作用一致。SUMO 还修饰泛素,形成具有调节泛素信号潜力的混合寡聚物。我们得出结论,SUMO 在调节减数分裂染色体代谢中发挥着多样且出乎意料的作用。

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