CHK1 Inhibitor Blocks Phosphorylation of FAM122A and Promotes Replication Stress

CHK1抑制剂阻断FAM122A的磷酸化并促进复制应激

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作者:Feng Li, David Kozono, Peter Deraska, Timothy Branigan, Connor Dunn, Xiao-Feng Zheng, Kalindi Parmar, Huy Nguyen, James DeCaprio, Geoffrey I Shapiro, Dipanjan Chowdhury, Alan D D'Andrea

Abstract

While effective anti-cancer drugs targeting the CHK1 kinase are advancing in the clinic, drug resistance is rapidly emerging. Here, we demonstrate that CRISPR-mediated knockout of the little-known gene FAM122A/PABIR1 confers cellular resistance to CHK1 inhibitors (CHK1is) and cross-resistance to ATR inhibitors. Knockout of FAM122A results in activation of PP2A-B55α, a phosphatase that dephosphorylates the WEE1 protein and rescues WEE1 from ubiquitin-mediated degradation. The resulting increase in WEE1 protein expression reduces replication stress, activates the G2/M checkpoint, and confers cellular resistance to CHK1is. Interestingly, in tumor cells with oncogene-driven replication stress, CHK1 can directly phosphorylate FAM122A, leading to activation of the PP2A-B55α phosphatase and increased WEE1 expression. A combination of a CHK1i plus a WEE1 inhibitor can overcome CHK1i resistance of these tumor cells, thereby enhancing anti-cancer activity. The FAM122A expression level in a tumor cell can serve as a useful biomarker for predicting CHK1i sensitivity or resistance.

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