Targeting the DNA Damage Response for Cancer Therapy by Inhibiting the Kinase Wee1

被引:40
作者
Bukhari, Amirali B. [1 ]
Chan, Gordon K. [1 ]
Gamper, Armin M. [1 ]
机构
[1] Univ Alberta, Cross Canc Inst, Dept Oncol, Edmonton, AB, Canada
基金
加拿大自然科学与工程研究理事会; 加拿大健康研究院;
关键词
kinase; DNA damage response (DDR); cell cycle; cancer therapy; Wee1; synthetic lethality; CYCLIN-DEPENDENT KINASES; CELL-CYCLE; MITOTIC ENTRY; IN-VITRO; CHECKPOINT ACTIVATION; REPLICATION STRESS; GENOME INTEGRITY; TYROSINE KINASE; PROTEIN-KINASE; ENTER MITOSIS;
D O I
10.3389/fonc.2022.828684
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Cancer cells typically heavily rely on the G2/M checkpoint to survive endogenous and exogenous DNA damage, such as genotoxic stress due to genome instability or radiation and chemotherapy. The key regulator of the G2/M checkpoint, the cyclin-dependent kinase 1 (CDK1), is tightly controlled, including by its phosphorylation state. This posttranslational modification, which is determined by the opposing activities of the phosphatase cdc25 and the kinase Wee1, allows for a more rapid response to cellular stress than via the synthesis or degradation of modulatory interacting proteins, such as p21 or cyclin B. Reducing Wee1 activity results in ectopic activation of CDK1 activity and drives premature entry into mitosis with unrepaired or under-replicated DNA and causing mitotic catastrophe. Here, we review efforts to use small molecule inhibitors of Wee1 for therapeutic purposes, including strategies to combine Wee1 inhibition with genotoxic agents, such as radiation therapy or drugs inducing replication stress, or inhibitors of pathways that show synthetic lethality with Wee1. Furthermore, it become increasingly clear that Wee1 inhibition can also modulate therapeutic immune responses. We will discuss the mechanisms underlying combination treatments identifying both cell intrinsic and systemic anti-tumor activities.
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页数:13
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共 160 条
[1]   Functional Genetic Screen Identifies Increased Sensitivity to WEE1 Inhibition in Cells with Defects in Fanconi Anemia and HR Pathways [J].
Aarts, Marieke ;
Bajrami, Ilirjana ;
Herrera-Abreu, Maria T. ;
Elliott, Richard ;
Brough, Rachel ;
Ashworth, Alan ;
Lord, Christopher J. ;
Turner, Nicholas C. .
MOLECULAR CANCER THERAPEUTICS, 2015, 14 (04) :865-876
[2]   Forced Mitotic Entry of S-Phase Cells as a Therapeutic Strategy Induced by Inhibition of WEE1 [J].
Aarts, Marieke ;
Sharpe, Rachel ;
Garcia-Murillas, Isaac ;
Gevensleben, Heidrun ;
Hurd, Melissa S. ;
Shumway, Stuart D. ;
Toniatti, Carlo ;
Ashworth, Alan ;
Turner, Nicholas C. .
CANCER DISCOVERY, 2012, 2 (06) :524-539
[3]   Untangling the ATR-CHEK1 network for prognostication, prediction and therapeutic target validation in breast cancer [J].
Abdel-Fatah, Tarek M. A. ;
Middleton, Fiona K. ;
Arora, Arvind ;
Agarwal, Devika ;
Chen, Tao ;
Moseley, Paul M. ;
Perry, Christina ;
Doherty, Rachel ;
Chan, Stephen ;
Green, Andrew R. ;
Rakha, Emad ;
Ball, Graham ;
Ellis, Ian O. ;
Curtin, Nicola J. ;
Madhusudan, Srinivasan .
MOLECULAR ONCOLOGY, 2015, 9 (03) :569-585
[4]   Replication fork instability and the consequences of fork collisions from rereplication [J].
Alexander, Jessica L. ;
Orr-Weaver, Terry L. .
GENES & DEVELOPMENT, 2016, 30 (20) :2241-2252
[5]   Novel functions of FoxM1: from molecular mechanisms to cancer therapy [J].
Alvarez-Fernandez, Monica ;
Medema, Rene H. .
FRONTIERS IN ONCOLOGY, 2013, 3
[6]   Non-Coding RNAs Associated With Radioresistance in Triple-Negative Breast Cancer [J].
Aranza-Martinez, Alberto ;
Sanchez-Perez, Julio ;
Brito-Elias, Luis ;
Lopez-Camarillo, Cesar ;
Cantu de Leon, David ;
Perez-Plasencia, Carlos ;
Lopez-Urrutia, Eduardo .
FRONTIERS IN ONCOLOGY, 2021, 11
[7]   Dual Phosphorylation of Cdk1 Coordinates Cell Proliferation with Key Developmental Processes in Drosophila [J].
Ayeni, Joseph O. ;
Varadarajan, Ramya ;
Mukherjee, Oindrila ;
Stuart, David T. ;
Sprenger, Frank ;
Srayko, Martin ;
Campbell, Shelagh D. .
GENETICS, 2014, 196 (01) :197-+
[8]   DNA damage activates ATM through intermolecular autophosphorylation and dimer dissociation [J].
Bakkenist, CJ ;
Kastan, MB .
NATURE, 2003, 421 (6922) :499-506
[9]   Glioma stem cells promote radioresistance by preferential activation of the DNA damage response [J].
Bao, Shideng ;
Wu, Qiulian ;
McLendon, Roger E. ;
Hao, Yueling ;
Shi, Qing ;
Hjelmeland, Anita B. ;
Dewhirst, Mark W. ;
Bigner, Darell D. ;
Rich, Jeremy N. .
NATURE, 2006, 444 (7120) :756-760
[10]   Cyclin-Dependent Kinase Suppression by WEE1 Kinase Protects the Genome through Control of Replication Initiation and Nucleotide Consumption [J].
Beck, Halfdan ;
Nahse-Kumpf, Viola ;
Larsen, Marie Sofie Yoo ;
O'Hanlon, Karen A. ;
Patzke, Sebastian ;
Holmberg, Christian ;
Mejlvang, Jakob ;
Groth, Anja ;
Nielsen, Olaf ;
Syljuasen, Randi G. ;
Sorensen, Claus Storgaard .
MOLECULAR AND CELLULAR BIOLOGY, 2012, 32 (20) :4226-4236