Liu Song-Tao, Zhang Hang
Department of Biological Sciences, University of Toledo, 2801 West Bancroft St., Toledo, OH 43606, USA.
AIMS Mol Sci. 2016;3(4):597-634. doi: 10.3934/molsci.2016.4.597. Epub 2016 Oct 24.
The mitotic checkpoint is a specialized signal transduction pathway that contributes to the fidelity of chromosome segregation. The signaling of the checkpoint originates from defective kinetochore-microtubule interactions and leads to formation of the mitotic checkpoint complex (MCC), a highly potent inhibitor of the Anaphase Promoting Complex/Cyclosome (APC/C)-the E3 ubiquitin ligase essential for anaphase onset. Many important questions concerning the MCC and its interaction with APC/C have been intensively investigated and debated in the past 15 years, such as the exact composition of the MCC, how it is assembled during a cell cycle, how it inhibits APC/C, and how the MCC is disassembled to allow APC/C activation. These efforts have culminated in recently reported structure models for human MCC:APC/C supra-complexes at near-atomic resolution that shed light on multiple aspects of the mitotic checkpoint mechanisms. However, confusing statements regarding the MCC are still scattered in the literature, making it difficult for students and scientists alike to obtain a clear picture of MCC composition, structure, function and dynamics. This review will comb through some of the most popular concepts or misconceptions about the MCC, discuss our current understandings, present a synthesized model on regulation of CDC20 ubiquitination, and suggest a few future endeavors and cautions for next phase of MCC research.
有丝分裂检查点是一种特殊的信号转导途径,有助于染色体分离的准确性。检查点的信号传导源于动粒与微管的缺陷相互作用,并导致有丝分裂检查点复合物(MCC)的形成,MCC是后期促进复合物/细胞周期体(APC/C)的一种高效抑制剂,APC/C是后期开始所必需的E3泛素连接酶。在过去15年中,许多关于MCC及其与APC/C相互作用的重要问题都得到了深入研究和讨论,例如MCC的确切组成、它在细胞周期中是如何组装的、它如何抑制APC/C以及MCC是如何分解以允许APC/C激活的。这些努力最终促成了最近报道的人类MCC:APC/C超复合物的结构模型,该模型以近原子分辨率揭示了有丝分裂检查点机制的多个方面。然而,关于MCC的混淆表述仍散见于文献中,这使得学生和科学家都难以清晰了解MCC的组成、结构、功能和动态。本综述将梳理一些关于MCC最流行的概念或误解,讨论我们目前的理解,提出一个关于CDC20泛素化调控的综合模型,并为MCC研究的下一阶段提出一些未来的努力方向和注意事项。