Fang G, Yu H, Kirschner M W
Department of Cell Biology, Harvard Medical School, Boston, Massachusetts 02115, USA.
Genes Dev. 1998 Jun 15;12(12):1871-83. doi: 10.1101/gad.12.12.1871.
The spindle assembly checkpoint mechanism delays anaphase initiation until all chromosomes are aligned at the metaphase plate. Activation of the anaphase-promoting complex (APC) by binding of CDC20 and CDH1 is required for exit from mitosis, and APC has been implicated as a target for the checkpoint intervention. We show that the human checkpoint protein hMAD2 prevents activation of APC by forming a hMAD2-CDC20-APC complex. When injected into Xenopus embryos, hMAD2 arrests cells at mitosis with an inactive APC. The recombinant hMAD2 protein exists in two-folded states: a tetramer and a monomer. Both the tetramer and the monomer bind to CDC20, but only the tetramer inhibits activation of APC and blocks cell cycle progression. Thus, hMAD2 binding is not sufficient for inhibition, and a change in hMAD2 structure may play a role in transducing the checkpoint signal. There are at least three different forms of mitotic APC that can be detected in vivo: an inactive hMAD2-CDC20-APC ternary complex present at metaphase, a CDC20-APC binary complex active in degrading specific substrates at anaphase, and a CDH1-APC complex active later in mitosis and in G1. We conclude that the checkpoint-mediated cell cycle arrest involves hMAD2 receiving an upstream signal to inhibit activation of APC.
纺锤体组装检查点机制会延迟后期启动,直到所有染色体都排列在中期板上。有丝分裂退出需要通过CDC20和CDH1结合来激活后期促进复合物(APC),并且APC已被认为是检查点干预的靶点。我们发现人类检查点蛋白hMAD2通过形成hMAD2 - CDC20 - APC复合物来阻止APC的激活。当注射到非洲爪蟾胚胎中时,hMAD2会使细胞停滞在有丝分裂期,且APC处于无活性状态。重组hMAD2蛋白以两种折叠状态存在:四聚体和单体。四聚体和单体都能与CDC20结合,但只有四聚体抑制APC的激活并阻断细胞周期进程。因此,hMAD2的结合不足以产生抑制作用,hMAD2结构的变化可能在转导检查点信号中起作用。在体内可检测到至少三种不同形式的有丝分裂APC:中期存在的无活性hMAD2 - CDC20 - APC三元复合物、后期在降解特定底物时具有活性的CDC20 - APC二元复合物以及有丝分裂后期和G1期具有活性的CDH1 - APC复合物。我们得出结论,检查点介导的细胞周期停滞涉及hMAD2接收上游信号以抑制APC的激活。