Department of Genome Integrity, Institute of Molecular Genetics, v.v.i., Academy of Sciences of the Czech Republic, Prague CZ-142 20, Czech Republic.
Cell Death Differ. 2012 May;19(5):798-807. doi: 10.1038/cdd.2011.150. Epub 2011 Nov 11.
53BP1 is a mediator of DNA damage response (DDR) and a tumor suppressor whose accumulation on damaged chromatin promotes DNA repair and enhances DDR signaling. Using foci formation of 53BP1 as a readout in two human cell lines, we performed an siRNA-based functional high-content microscopy screen for modulators of cellular response to ionizing radiation (IR). Here, we provide the complete results of this screen as an information resource, and validate and functionally characterize one of the identified 'hits': a nuclear pore component NUP153 as a novel factor specifically required for 53BP1 nuclear import. Using a range of cell and molecular biology approaches including live-cell imaging, we show that knockdown of NUP153 prevents 53BP1, but not several other DDR factors, from entering the nuclei in the newly forming daughter cells. This translates into decreased IR-induced 53BP1 focus formation, delayed DNA repair and impaired cell survival after IR. In addition, NUP153 depletion exacerbates DNA damage caused by replication stress. Finally, we show that the C-terminal part of NUP153 is required for effective 53BP1 nuclear import, and that 53BP1 is imported to the nucleus through the NUP153-importin-β interplay. Our data define the structure-function relationships within this emerging 53BP1-NUP153/importin-β pathway and implicate this mechanism in the maintenance of genome integrity.
53BP1 是 DNA 损伤反应 (DDR) 的介质和肿瘤抑制因子,其在受损染色质上的积累促进 DNA 修复并增强 DDR 信号。我们使用两种人类细胞系中的 53BP1 焦点形成作为读出,进行了基于 siRNA 的功能高内涵显微镜筛选,以寻找调节细胞对电离辐射 (IR) 反应的调节剂。在这里,我们提供了该筛选的完整结果作为信息资源,并验证和功能表征了其中一个鉴定的“命中”:核孔成分 NUP153 是一种新型因子,是 53BP1 核输入所必需的,特别是在新形成的子细胞中。使用一系列细胞和分子生物学方法,包括活细胞成像,我们表明 NUP153 的敲低可防止 53BP1(但不是其他几种 DDR 因子)进入新形成的子细胞的核内。这转化为 IR 诱导的 53BP1 焦点形成减少,DNA 修复延迟和 IR 后细胞存活受损。此外,NUP153 耗竭会加剧复制应激引起的 DNA 损伤。最后,我们表明 NUP153 的 C 末端部分是 53BP1 有效核输入所必需的,并且 53BP1 通过 NUP153-importin-β 相互作用输入细胞核。我们的数据定义了这个新兴的 53BP1-NUP153/importin-β 途径中的结构-功能关系,并暗示该机制在维持基因组完整性中起作用。