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Ddc2/ATRIP 检查点蛋白监测减数分裂重组中间体。

The Ddc2/ATRIP checkpoint protein monitors meiotic recombination intermediates.

机构信息

Instituto de Microbiología Bioquímica, CSIC / University of Salamanca, 37007 Salamanca, Spain.

出版信息

J Cell Sci. 2011 Jul 15;124(Pt 14):2488-500. doi: 10.1242/jcs.081711. Epub 2011 Jun 21.

DOI:10.1242/jcs.081711
PMID:21693576
Abstract

During meiosis, accurate segregation of intact chromosomes is essential for generating healthy gametes. Defects in recombination and/or chromosome synapsis activate the pachytene checkpoint, which delays meiotic cell cycle progression to avoid aberrant chromosome segregation and formation of defective gametes. Here, we characterize the role of the conserved DNA damage checkpoint protein Ddc2/ATRIP in this meiotic surveillance mechanism. We show that deletion of DDC2 relieves the checkpoint-dependent meiotic block that occurs in Saccharomyces cerevisiae mutants defective in various aspects of meiotic chromosome dynamics and results in the generation of faulty meiotic products. Moreover, production of the Ddc2 protein is induced during meiotic prophase, accumulates in checkpoint-arrested mutants and localizes to distinctive chromosomal foci. Formation of meiotic Ddc2 foci requires the generation of Spo11-dependent DNA double-strand breaks (DSBs), and is impaired in an RPA mutant. Chromatin immunoprecipitation analysis reveals that Ddc2 accumulates at meiotic DSB sites, indicating that Ddc2 senses the presence of meiotic recombination intermediates. Furthermore, pachytene checkpoint signaling is defective in the ddc2 mutant. In addition, we show that mammalian ATRIP colocalizes with ATR, TopBP1 and RPA at unsynapsed regions of mouse meiotic chromosomes. Thus, our results point to an evolutionary conserved role for Ddc2/ATRIP in monitoring meiotic chromosome metabolism.

摘要

在减数分裂过程中,完整染色体的准确分离对于产生健康的配子至关重要。重组和/或染色体联会缺陷会激活粗线期检查点,该检查点会延迟减数分裂细胞周期的进展,以避免异常的染色体分离和有缺陷的配子形成。在这里,我们描述了保守的 DNA 损伤检查点蛋白 Ddc2/ATRIP 在这种减数分裂监测机制中的作用。我们表明,DDC2 的缺失可缓解在各种减数分裂染色体动力学缺陷的酿酒酵母突变体中发生的、依赖于检查点的减数分裂阻滞,从而导致有缺陷的减数分裂产物的产生。此外,在减数分裂前期,Ddc2 蛋白的产生被诱导,在检查点停滞的突变体中积累,并定位于独特的染色体焦点。减数分裂 Ddc2 焦点的形成需要 Spo11 依赖性 DNA 双链断裂(DSB)的产生,并且在 RPA 突变体中受损。染色质免疫沉淀分析表明 Ddc2 积累在减数分裂 DSB 位点,表明 Ddc2 感知减数分裂重组中间体的存在。此外,在 ddc2 突变体中,粗线期检查点信号转导缺陷。此外,我们还表明,哺乳动物 ATRIP 与 ATR、TopBP1 和 RPA 在小鼠减数分裂染色体未配对区域共定位。因此,我们的结果表明 Ddc2/ATRIP 在监测减数分裂染色体代谢方面具有进化保守的作用。

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