Wassmann K, Benezra R
Cell Biology and Genetics Program, Memorial Sloan-Kettering Cancer Center, 1275 York Avenue, New York, NY 10021, USA.
Proc Natl Acad Sci U S A. 1998 Sep 15;95(19):11193-8. doi: 10.1073/pnas.95.19.11193.
Activation of the mitotic checkpoint pathway in response to mitotic spindle damage in eukaryotic cells delays the exit from mitosis in an attempt to prevent chromosome missegregation. One component of this pathway, hsMad2, has been shown in mammalian cells to physically associate with components of a ubiquitin ligase activity (termed the anaphase promoting complex or APC) when the checkpoint is activated, thereby preventing the degradation of inhibitors of the mitotic exit machinery. In the present report, we demonstrate that the inhibitory association between Mad2 and the APC component Cdc27 also takes place transiently during the early stages of a normal mitosis and is lost before mitotic exit. We also show that Mad2 associates with the APC regulatory protein p55Cdc in mammalian cells as has been reported in yeast. In contrast, however, this complex is present only in nocodazole-arrested or early mitotic cells and is associated with the APC as a Mad2/p55Cdc/Cdc27 ternary complex. Evidence for a Mad2/Cdc27 complex that forms independent of p55Cdc also is presented. These results suggest a model for the regulation of the APC by Mad2 and may explain how the spindle assembly checkpoint apparatus controls the timing of mitosis under normal growth conditions.
真核细胞中,有丝分裂纺锤体受损时,有丝分裂检查点途径被激活,会延迟有丝分裂退出,以防止染色体错误分离。该途径的一个组分hsMad2,在哺乳动物细胞中已被证明,当检查点激活时,它会与泛素连接酶活性的组分(称为后期促进复合物或APC)发生物理结合,从而阻止有丝分裂退出机制抑制剂的降解。在本报告中,我们证明Mad2与APC组分Cdc27之间的抑制性结合在正常有丝分裂早期也会短暂发生,并在有丝分裂退出前消失。我们还表明,Mad2在哺乳动物细胞中与APC调节蛋白p55Cdc结合,正如在酵母中所报道的那样。然而,与之相反的是,这种复合物仅存在于诺考达唑阻滞的细胞或有丝分裂早期细胞中,并作为Mad2/p55Cdc/Cdc27三元复合物与APC相关联。本文还提供了独立于p55Cdc形成的Mad2/Cdc27复合物的证据。这些结果提示了一种Mad2对APC进行调控的模型,并可能解释纺锤体组装检查点装置如何在正常生长条件下控制有丝分裂的时间。