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Checkpoint kinase 1 modulates sensitivity to cisplatin after spindle checkpoint activation in SW620 cells

机译:SW620细胞中主轴检查点激活后,检查点激酶1调节对顺铂的敏感性

摘要

Aneuploidy is a common feature of tumours that arise by errors in chromosome segregation during mitosis. The aim of this study was to evaluate possible signaling pathways involved in sensitization to chemotherapy in cells with chromosomal instability. We designed a screen using the fission yeast Squizossaccharomyces pombe, to isolate strains showing a phenotype of chromosome mis-segregation and higher sensitivity to the antitumoral drug Bleomycin. We examined differences in gene expression using a comparative analysis of genome-wide expression of the wild type strain and one of the mutants. The results revealed a set of genes involved in cell cycle control, including Mad3/BubR1 and Chk1. We then studied the levels of these two proteins in colorectal cancer human cell lines with different genomic content. Among these, SW620 cells showed higher BubR1 and Chk1 mRNA levels than control cells under normal conditions. Since Chk1 is required for both S and G2/M checkpoints, and the microtubule-destabilizing agent, nocodazole induces mitotic arrest, we attempted to investigate the potential anticancer effects of nocodazole in combination with cisplatin. These studies showed that SW620 cells undergo synergistic cell death after spindle checkpoint activation followed by cisplatin treatment, suggesting a role of Chk1 in this checkpoint, very likely dependent on BubR1 protein. Importantly, Chk1-depleted SW620 cells lost this synergistic effect. In summary, we propose that Chk1 could be a biomarker predictive of the efficacy of chemotherapy across different types of tumors with aneuploidy. These findings may be potentially very useful for the stratification of patients for treatment.
机译:非整倍性是肿瘤的常见特征,其是由有丝分裂过程中染色体分离错误引起的。这项研究的目的是评估染色体不稳定细胞对化学疗法敏感的信号通路。我们设计了使用裂殖酵母粟酒裂殖酵母(Squizossaccharomyces pombe)的筛选器,以分离显示染色体错误分离表型和对抗肿瘤药物博来霉素更高敏感性的菌株。我们使用野生型菌株和突变体之一的全基因组表达的比较分析来检查基因表达的差异。结果揭示了一组涉及细胞周期控制的基因,包括Mad3 / BubR1和Chk1。然后,我们研究了具有不同基因组含量的大肠癌人类细胞系中这两种蛋白质的水平。其中,SW620细胞在正常条件下显示出比对照细胞更高的BubR1和Chk1 mRNA水平。由于Sk和G2 / M检查点都需要Chk1,并且微管去稳定剂诺考达唑诱导有丝分裂停滞,因此我们尝试研究诺考达唑与顺铂联合使用的潜在抗癌作用。这些研究表明,SW620细胞在纺锤体检查点激活后进行顺铂处理后发生协同性细胞死亡,这表明Chk1在该检查点中的作用很可能依赖于BubR1蛋白。重要的是,耗尽Chk1的SW620细胞失去了这种协同作用。总而言之,我们建议Chk1可以作为生物标志物,预测具有非整倍性的不同类型肿瘤之间化学疗法的疗效。这些发现对于将患者分层进行治疗可能非常有用。

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