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首页> 外文期刊>Nucleic Acids Research >A genome-wide RNAi screen identifies the SMC5/6 complex as a non-redundant regulator of a Topo2a-dependent G2 arrest
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A genome-wide RNAi screen identifies the SMC5/6 complex as a non-redundant regulator of a Topo2a-dependent G2 arrest

机译:基因组RNAi屏幕将SMC5 / 6复合物识别为TOPO2A依赖的G2逮捕的非冗余调节器

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摘要

The Topo2a-dependent arrest is associated with faithful segregation of sister chromatids and has been identified as dysfunctional in numerous tumour cell lines. This genome-protecting pathway is poorly understood and its characterization is of significant interest, potentially offering interventional opportunities in relation to synthetic lethal behaviours in arrest-defective tumours. Using the catalytic Topo2a inhibitor ICRF193, we have performed a genome-wide siRNA screen in arrest-competent, non-transformed cells, to identify genes essential for this arrest mechanism. In addition, we have counter-screened several DNA-damaging agents and demonstrate that the Topo2a-dependent arrest is genetically distinct from DNA damage checkpoints. We identify the components of the SMC5/6 complex, including the activity of the E3 SUMO ligase NSE2, as non-redundant players that control the timing of the Topo2a-dependent arrest in G2. We have independently verified the NSE2 requirement in fibroblasts from patients with germline mutations that cause severely reduced levels of NSE2. Through imaging Topo2a-dependent G2 arrested cells, an increased interaction between Topo2a and NSE2 is observed at PML bodies, which are known SUMOylation hotspots. We demonstrate that Topo2a is SUMOylated in an ICRF193-dependent manner by NSE2 at a novel non-canonical site (K1520) and that K1520 sumoylation is required for chromosome segregation but not the G2 arrest.
机译:Topo2A依赖的逮捕与姐妹染色体的忠实隔离有关,并且已被鉴定为许多肿瘤细胞系中的功能障碍。这种基因组保护途径理解得很差,其表征具有重要兴趣,可能提供与逮捕缺陷肿瘤中合成致死行为有关的介入机会。使用催化TOPO2A抑制剂ICRF193,我们已经在逮捕竞争力,非转化细胞中进行了基因组宽的siRNA筛网,以识别该逮捕机制必需的基因。此外,我们已经对抗几种DNA破坏性药剂,并证明了Topo2A依赖的逮捕与DNA损伤检查点的基因不同。我们识别SMC5 / 6复合体的组件,包括E3 Sumo Ligase NSE2的活动,作为非冗余播放器,可控制G2中的Topo2A依赖禁止的时间。我们独立验证了从种系突变患者的成纤维细胞中的NSE2要求,导致NSE2水平严重降低。通过成像TOPO2A依赖性G2被捕的细胞,在PML体中观察到TOPO2A和NSE2之间的增加的相互作用,其是已知的Sumoylation热点。我们证明Topo2a通过NSE2在新的非规范部位(K1520)中以ICRF193依赖性方式平均,并且染色体隔离需要K1520 Sumoylation,但不是G2逮捕。

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  • 来源
    《Nucleic Acids Research》 |2019年第6期|共16页
  • 作者单位

    Francis Crick Inst Prot Phosphorylat Lab 1 Midland Rd London NW1 1AT England;

    Francis Crick Inst Prot Phosphorylat Lab 1 Midland Rd London NW1 1AT England;

    Francis Crick Inst High Throughput Screening 1 Midland Rd London NW1 1AT England;

    Francis Crick Inst Prot Phosphorylat Lab 1 Midland Rd London NW1 1AT England;

    Francis Crick Inst High Throughput Screening 1 Midland Rd London NW1 1AT England;

    Francis Crick Inst Bioinformat 1 Midland Rd London NW1 1AT England;

    Francis Crick Inst Prot Phosphorylat Lab 1 Midland Rd London NW1 1AT England;

    Francis Crick Inst Prot Phosphorylat Lab 1 Midland Rd London NW1 1AT England;

    Univ Cambridge Wellcome Trust MRC Inst Metab Sci Metab Res Labs Cambridge CB2 0QQ England;

    Cambridge Biomed Res Ctr Natl Inst Hlth Res Cambridge CB2 0QQ England;

    Francis Crick Inst Translat Canc Therapeut 1 Midland Rd London NW1 1AT England;

    Francis Crick Inst Prot Phosphorylat Lab 1 Midland Rd London NW1 1AT England;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
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