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内在和外在因素在有丝分裂检查点激酶Bub1调控中的作用

Role of Intrinsic and Extrinsic Factors in the Regulation of the Mitotic Checkpoint Kinase Bub1.

作者信息

Breit Claudia, Bange Tanja, Petrovic Arsen, Weir John R, Müller Franziska, Vogt Doro, Musacchio Andrea

机构信息

Department of Mechanistic Cell Biology, Max Planck Institute of Molecular Physiology, Otto-Hahn-Straße 11, 44227, Dortmund, Germany.

Centre for Medical Biotechnology, Faculty of Biology, University Duisburg-Essen, Universitätsstrasse, 45141, Essen, Germany.

出版信息

PLoS One. 2015 Dec 10;10(12):e0144673. doi: 10.1371/journal.pone.0144673. eCollection 2015.

Abstract

The spindle assembly checkpoint (SAC) monitors microtubule attachment to kinetochores to ensure accurate sister chromatid segregation during mitosis. The SAC members Bub1 and BubR1 are paralogs that underwent significant functional specializations during evolution. We report an in-depth characterization of the kinase domains of Bub1 and BubR1. BubR1 kinase domain binds nucleotides but is unable to deliver catalytic activity in vitro. Conversely, Bub1 is an active kinase regulated by intra-molecular phosphorylation at the P+1 loop. The crystal structure of the phosphorylated Bub1 kinase domain illustrates a hitherto unknown conformation of the P+1 loop docked into the active site of the Bub1 kinase. Both Bub1 and BubR1 bind Bub3 constitutively. A hydrodynamic characterization of Bub1:Bub3 and BubR1:Bub3 demonstrates both complexes to have 1:1 stoichiometry, with no additional oligomerization. Conversely, Bub1:Bub3 and BubR1:Bub3 combine to form a heterotetramer. Neither BubR1:Bub3 nor Knl1, the kinetochore receptor of Bub1:Bub3, modulate the kinase activity of Bub1 in vitro, suggesting autonomous regulation of the Bub1 kinase domain. We complement our study with an analysis of the Bub1 substrates. Our results contribute to the mechanistic characterization of a crucial cell cycle checkpoint.

摘要

纺锤体组装检验点(SAC)监测微管与动粒的附着,以确保有丝分裂期间姐妹染色单体的准确分离。SAC成员Bub1和BubR1是旁系同源物,在进化过程中经历了显著的功能特化。我们报告了对Bub1和BubR1激酶结构域的深入表征。BubR1激酶结构域结合核苷酸,但在体外无法发挥催化活性。相反,Bub1是一种活性激酶,受P + 1环处的分子内磷酸化调节。磷酸化的Bub1激酶结构域的晶体结构显示了P + 1环对接至Bub1激酶活性位点的一种迄今未知的构象。Bub1和BubR1都持续结合Bub3。对Bub1:Bub3和BubR1:Bub3的流体动力学表征表明,这两种复合物的化学计量比均为1:1,不存在额外的寡聚化。相反,Bub1:Bub3和BubR1:Bub3结合形成异源四聚体。BubR1:Bub3和Bub1:Bub3的动粒受体Knl1在体外均不调节Bub1的激酶活性,这表明Bub1激酶结构域具有自主调节作用。我们通过对Bub1底物的分析补充了我们的研究。我们的结果有助于对关键细胞周期检验点进行机制表征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f50/4675524/1ab83182c585/pone.0144673.g001.jpg

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