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封闭 MAD2(C-MAD2)选择性地整合到有丝分裂检查点复合物(MCC)中。

Closed MAD2 (C-MAD2) is selectively incorporated into the mitotic checkpoint complex (MCC).

机构信息

Department of Biological Sciences, University of Toledo, Toledo, OH, USA.

出版信息

Cell Cycle. 2011 Nov 1;10(21):3740-50. doi: 10.4161/cc.10.21.17919.

Abstract

The mitotic checkpoint is a specialized signal transduction pathway that monitors kinetochore-microtubule attachment to achieve faithful chromosome segregation. MAD2 is an evolutionarily conserved mitotic checkpoint protein that exists in open (O) and closed (C) conformations. The increase of intracellular C-MAD2 level during mitosis, through O→C-MAD2 conversion as catalyzed by unattached kinetochores, is a critical signaling event for the mitotic checkpoint. However, it remains controversial whether MAD2 is an integral component of the effector of the mitotic checkpoint--the Mitotic Checkpoint Complex (MCC). We show here that endogenous human MCC is assembled by first forming a BUBR1:BUB3:CDC20 complex in G2 and then selectively incorporating C-MAD2 during mitosis. Nevertheless, MCC can be induced to form in G1/S cells by expressing a C-conformation locked MAD2 mutant, indicating intracellular level of C-MAD2 as a major limiting factor for MCC assembly. In addition, a recombinant MCC containing C-MAD2 exhibits effective inhibitory activity towards APC/C isolated from mitotic HeLa cells, while a recombinant BUBR1:BUB3:CDC20 ternary complex is ineffective at comparable concentrations despite association with APC/C. These results help establish a direct connection between a major signal transducer (C-MAD2) and the potent effector (MCC) of the mitotic checkpoint, and provide novel insights into protein-protein interactions during assembly of a functional MCC.

摘要

有丝分裂检查点是一种专门的信号转导途径,可监测动粒-微管的附着,以实现染色体的正确分离。MAD2 是一种进化上保守的有丝分裂检查点蛋白,存在开放(O)和闭合(C)构象。在有丝分裂过程中,细胞内 C-MAD2 水平的增加,通过未附着的动粒催化的 O→C-MAD2 转换,是有丝分裂检查点的一个关键信号事件。然而,MAD2 是否是有丝分裂检查点效应器——有丝分裂检查点复合物(MCC)的组成部分仍存在争议。我们在这里表明,内源性人 MCC 首先通过在 G2 期形成 BUBR1:BUB3:CDC20 复合物,然后在有丝分裂期间选择性地掺入 C-MAD2 来组装。然而,通过表达 C 构象锁定的 MAD2 突变体,MCC 可以在 G1/S 期诱导形成,表明细胞内 C-MAD2 的水平是 MCC 组装的主要限制因素。此外,含有 C-MAD2 的重组 MCC 对从有丝分裂 HeLa 细胞中分离的 APC/C 表现出有效的抑制活性,而具有 APC/C 结合能力的重组 BUBR1:BUB3:CDC20 三元复合物在可比浓度下则没有效果。这些结果有助于在有丝分裂检查点的主要信号转导蛋白(C-MAD2)和有效的效应蛋白(MCC)之间建立直接联系,并为功能性 MCC 组装过程中的蛋白质-蛋白质相互作用提供新的见解。

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