Higginbottom Karen, Jahnke Ulrike, Newland Adrian C, Cotter Finbarr E, Allen Paul David
Centre for Haematology, Institute of Cell and Molecular Sciences, Barts and The London School of Medicine and Dentistry, Queen Mary's University of London, 4 Newark Street, London, E1 2AT, UK.
Apoptosis. 2007 Oct;12(10):1847-55. doi: 10.1007/s10495-007-0104-6.
Cell cycle arrest is a major cellular response to DNA damage preceding the decision to repair or die. Many malignant cells have non-functional p53 rendering them more "aggressive" in nature. Arrest in p53-negative cells occurs at the G2M cell cycle checkpoint. Failure of DNA damaged cells to arrest at G2 results in entry into mitosis and potential death through aberrant mitosis and/or apoptosis. The pivotal kinase regulating the G2M checkpoint is Cdk1/cyclin B whose activity is controlled by phosphorylation. The p53-negative myeloid leukemia cell lines K562 and HL-60 were used to determine Cdk1 phosphorylation status during etoposide treatment. Cdk1 tyrosine 15 phosphorylation was associated with G2M arrest, but not with cell death. Cdk1 tyrosine 15 phosphorylation also led to suppression of nuclear cyclin B-associated Cdk1 kinase activity. However cell death, associated with broader tyrosine phosphorylation of Cdk1 was not attributed to tyrosine 15 alone. This broader phosphoryl isoform of Cdk1 was associated with cyclin A and not cyclin B. Alternative phosphorylations sites were predicted as tyrosines 4, 99 and 237 by computer analysis. No similar pattern was found on Cdk2. These findings suggest novel Cdk1 phosphorylation sites, which appear to be associated with p53-independent cell death following etoposide treatment.
细胞周期阻滞是细胞在决定修复或死亡之前对DNA损伤的主要反应。许多恶性细胞的p53功能失调,使其本质上更具“侵袭性”。p53阴性细胞在G2/M细胞周期检查点发生阻滞。DNA受损细胞未能在G2期阻滞会导致进入有丝分裂,并可能通过异常有丝分裂和/或凋亡而死亡。调节G2/M检查点的关键激酶是Cdk1/细胞周期蛋白B,其活性受磷酸化控制。使用p53阴性的髓系白血病细胞系K562和HL-60来确定依托泊苷处理期间Cdk1的磷酸化状态。Cdk1酪氨酸15磷酸化与G2/M阻滞有关,但与细胞死亡无关。Cdk1酪氨酸15磷酸化还导致核细胞周期蛋白B相关的Cdk1激酶活性受到抑制。然而,与Cdk1更广泛的酪氨酸磷酸化相关的细胞死亡并非仅归因于酪氨酸15。这种更广泛的Cdk1磷酸化异构体与细胞周期蛋白A相关,而不是与细胞周期蛋白B相关。通过计算机分析预测其他磷酸化位点为酪氨酸4、99和237。在Cdk2上未发现类似模式。这些发现提示了新的Cdk1磷酸化位点,这些位点似乎与依托泊苷处理后p53非依赖性细胞死亡有关。