Krämer Alwin, Mailand Niels, Lukas Claudia, Syljuåsen Randi G, Wilkinson Christopher J, Nigg Erich A, Bartek Jiri, Lukas Jiri
Danish Cancer Society, Institute of Cancer Biology, Department of Cell Cycle and Cancer, Strandboulevarden 49, DK-2100 Copenhagen Ø, Denmark.
Nat Cell Biol. 2004 Sep;6(9):884-91. doi: 10.1038/ncb1165. Epub 2004 Aug 15.
Entry into mitosis occurs after activation of Cdk1, resulting in chromosome condensation in the nucleus and centrosome separation, as well as increased microtubule nucleation activity in the cytoplasm. The active cyclin-B1-Cdk1 complex first appears at the centrosome, suggesting that the centrosome may facilitate the activation of mitotic regulators required for the commitment of cells to mitosis. However, the signalling pathways involved in controlling the initial activation of Cdk1 at the centrosome remain largely unknown. Here, we show that human Chk1 kinase localizes to interphase, but not mitotic, centrosomes. Chemical inhibition of Chk1 resulted in premature centrosome separation and activation of centrosome-associated Cdk1. Forced immobilization of kinase-inactive Chk1 to centrosomes also resulted in premature Cdk1 activation. Conversely, under such conditions wild-type Chk1 impaired activation of centrosome-associated Cdk1, thereby resulting in DNA endoreplication and centrosome amplification. Activation of centrosomal Cdk1 in late prophase seemed to be mediated by cytoplasmic Cdc25B, whose activity is controlled by centrosome-associated Chk1. These results suggest that centrosome-associated Chk1 shields centrosomal Cdk1 from unscheduled activation by cytoplasmic Cdc25B, thereby contributing to proper timing of the initial steps of cell division, including mitotic spindle formation.
Cdk1激活后进入有丝分裂,导致细胞核内染色体凝聚和中心体分离,同时细胞质中微管成核活性增加。活性细胞周期蛋白B1-Cdk1复合物首先出现在中心体,这表明中心体可能促进细胞进入有丝分裂所需的有丝分裂调节因子的激活。然而,在中心体处控制Cdk1初始激活的信号通路仍 largely未知。在这里,我们表明人类Chk1激酶定位于间期中心体,而非有丝分裂中心体。化学抑制Chk1导致中心体过早分离和中心体相关Cdk1的激活。将激酶失活的Chk1强制固定到中心体也会导致Cdk1过早激活。相反,在这种情况下,野生型Chk1会损害中心体相关Cdk1的激活,从而导致DNA核内复制和中心体扩增。前期晚期中心体Cdk1的激活似乎由细胞质Cdc25B介导,其活性受中心体相关Chk1的控制。这些结果表明,中心体相关Chk1保护中心体Cdk1免受细胞质Cdc25B的意外激活,从而有助于细胞分裂初始步骤(包括有丝分裂纺锤体形成)的正确时间安排。