U2OS cells lacking Chk1 undergo aberrant mitosis and fail to activate the spindle checkpoint

诺可达唑 有丝分裂 马达加斯加2 支票1 细胞生物学 主轴检查点 G2-M DNA损伤检查点 胞质分裂 生物 细胞周期 核分裂突变 细胞周期检查点 有丝分裂出口 双核细胞 主轴装置 化学 细胞分裂 细胞 后期 遗传学 微核试验 微核 细胞骨架 有机化学 毒性
作者
Laura Carrassa,Yolanda Sánchez,Eugenio Erba,Giovanna Damia
出处
期刊:Journal of Cellular and Molecular Medicine [Wiley]
卷期号:13 (8a): 1565-1576 被引量:15
标识
DOI:10.1111/j.1582-4934.2009.00362.x
摘要

Chk1 is a conserved protein kinase originally identified in fission yeast, required to delay entry of cells with damaged or unreplicated DNA into mitosis. The requirement of Chk1 for both S and G2/M checkpoints has been elucidated while only few studies have connected Chk1 to the mitotic spindle checkpoint. We used a small interference RNA strategy to investigate the role of Chk1 in unstressed conditions. Chk1 depletion in U2OS human osteosarcoma cells inhibited cell proliferation and raised the percentage of cells with a 4N DNA content, which correlated with accumulation of giant polynucleated cells morphologically distinct from apoptotic cells, while no increased number of cells in G2 or mitosis could be detected. Down-regulation of Chk1 also caused accumulation of cells in the last step of cytokinesis, and of tetraploid cells in G1 phase, which coincided with activation of p53 and increased levels of p21. In addition, Chk1-depleted U2OS cells failed to arrest in mitosis after spindle disruption by nocodazole and showed decreased protein levels of Mad2 and BubR1. These studies show that U2OS cells lacking Chk1 undergo abnormal mitosis and fail to activate the spindle checkpoint, suggesting a role of Chk1 in this checkpoint.
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