LY2606368 Causes Replication Catastrophe and Antitumor Effects through CHK1-Dependent Mechanisms

核分裂突变 DNA损伤 DNA复制 细胞生物学 生物 支票1 有丝分裂 细胞周期 DNA 分子生物学 细胞周期检查点 细胞凋亡 遗传学
作者
Constance King,H. Bruce Diaz,Samuel McNeely,Darlene Barnard,Jack Dempsey,Wayne Blosser,Richard P. Beckmann,David A. Barda,Mark S. Marshall
出处
期刊:Molecular Cancer Therapeutics [American Association for Cancer Research]
卷期号:14 (9): 2004-2013 被引量:153
标识
DOI:10.1158/1535-7163.mct-14-1037
摘要

CHK1 is a multifunctional protein kinase integral to both the cellular response to DNA damage and control of the number of active replication forks. CHK1 inhibitors are currently under investigation as chemopotentiating agents due to CHK1's role in establishing DNA damage checkpoints in the cell cycle. Here, we describe the characterization of a novel CHK1 inhibitor, LY2606368, which as a single agent causes double-stranded DNA breakage while simultaneously removing the protection of the DNA damage checkpoints. The action of LY2606368 is dependent upon inhibition of CHK1 and the corresponding increase in CDC25A activation of CDK2, which increases the number of replication forks while reducing their stability. Treatment of cells with LY2606368 results in the rapid appearance of TUNEL and pH2AX-positive double-stranded DNA breaks in the S-phase cell population. Loss of the CHK1-dependent DNA damage checkpoints permits cells with damaged DNA to proceed into early mitosis and die. The majority of treated mitotic nuclei consist of extensively fragmented chromosomes. Inhibition of apoptosis by the caspase inhibitor Z-VAD-FMK had no effect on chromosome fragmentation, indicating that LY2606368 causes replication catastrophe. Changes in the ratio of RPA2 to phosphorylated H2AX following LY2606368 treatment further support replication catastrophe as the mechanism of DNA damage. LY2606368 shows similar activity in xenograft tumor models, which results in significant tumor growth inhibition. LY2606368 is a potent representative of a novel class of drugs for the treatment of cancer that acts through replication catastrophe.
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