FACS-based genome-wide CRISPR screens define key regulators of DNA damage signaling pathways

基于FACS的全基因组CRISPR筛选确定了DNA损伤信号通路的关键调控因子

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作者:Min Huang,Fuwen Yao,Litong Nie,Chao Wang,Dan Su,Huimin Zhang,Siting Li,Mengfan Tang,Xu Feng,Bin Yu,Zhen Chen,Shimin Wang,Ling Yin,Lisha Mou,Traver Hart,Junjie Chen

Abstract

DNA damage-activated signaling pathways are critical for coordinating multiple cellular processes, which must be tightly regulated to maintain genome stability. To provide a comprehensive and unbiased perspective of DNA damage response (DDR) signaling pathways, we performed 30 fluorescence-activated cell sorting (FACS)-based genome-wide CRISPR screens in human cell lines with antibodies recognizing distinct endogenous DNA damage signaling proteins to identify critical regulators involved in DDR. We discovered that proteasome-mediated processing is an early and prerequisite event for cells to trigger camptothecin- and etoposide-induced DDR signaling. Furthermore, we identified PRMT1 and PRMT5 as modulators that regulate ATM protein level. Moreover, we discovered that GNB1L is a key regulator of DDR signaling via its role as a co-chaperone specifically regulating PIKK proteins. Collectively, these screens offer a rich resource for further investigation of DDR, which may provide insight into strategies of targeting these DDR pathways to improve therapeutic outcomes.

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