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在催化有丝分裂检查点复合物组装过程中,Bub1 和 Cdc20 与磷酸化 Mad1 并列。

Juxtaposition of Bub1 and Cdc20 on phosphorylated Mad1 during catalytic mitotic checkpoint complex assembly.

机构信息

MRC Laboratory of Molecular Biology, Cambridge Biomedical Campus, Francis Crick Avenue, Cambridge, CB2 0QH, UK.

Biomolecular Mass Spectrometry and Proteomics, Bijvoet Center for Biomolecular Research and Utrecht Institute for Pharmaceutical Sciences, University of Utrecht, 3584 CH, Utrecht, The Netherlands.

出版信息

Nat Commun. 2022 Oct 26;13(1):6381. doi: 10.1038/s41467-022-34058-2.

Abstract

In response to improper kinetochore-microtubule attachments in mitosis, the spindle assembly checkpoint (SAC) assembles the mitotic checkpoint complex (MCC) to inhibit the anaphase-promoting complex/cyclosome, thereby delaying entry into anaphase. The MCC comprises Mad2:Cdc20:BubR1:Bub3. Its assembly is catalysed by unattached kinetochores on a Mad1:Mad2 platform. Mad1-bound closed-Mad2 (C-Mad2) recruits open-Mad2 (O-Mad2) through self-dimerization. This interaction, combined with Mps1 kinase-mediated phosphorylation of Bub1 and Mad1, accelerates MCC assembly, in a process that requires O-Mad2 to C-Mad2 conversion and concomitant binding of Cdc20. How Mad1 phosphorylation catalyses MCC assembly is poorly understood. Here, we characterized Mps1 phosphorylation of Mad1 and obtained structural insights into a phosphorylation-specific Mad1:Cdc20 interaction. This interaction, together with the Mps1-phosphorylation dependent association of Bub1 and Mad1, generates a tripartite assembly of Bub1 and Cdc20 onto the C-terminal domain of Mad1 (Mad1). We additionally identify flexibility of Mad1:Mad2 that suggests how the Cdc20:Mad1 interaction brings the Mad2-interacting motif (MIM) of Cdc20 near O-Mad2. Thus, Mps1-dependent formation of the MCC-assembly scaffold functions to position and orient Cdc20 MIM near O-Mad2, thereby catalysing formation of C-Mad2:Cdc20.

摘要

针对有丝分裂中不正确的动粒微管附着,纺锤体组装检查点(SAC)组装有丝分裂检查点复合物(MCC)以抑制后期促进复合物/周期酶,从而延迟进入后期。MCC 由 Mad2:Cdc20:BubR1:Bub3 组成。其组装由 Mad1:Mad2 平台上未附着的动粒催化。Mad1 结合的闭合-Mad2(C-Mad2)通过自二聚化招募开放-Mad2(O-Mad2)。这种相互作用,加上 Mps1 激酶介导的 Bub1 和 Mad1 的磷酸化,加速了 MCC 的组装,这一过程需要 O-Mad2 到 C-Mad2 的转换以及 Cdc20 的伴随结合。Mad1 磷酸化如何催化 MCC 组装还知之甚少。在这里,我们对 Mad1 的 Mps1 磷酸化进行了表征,并获得了对磷酸化特异性 Mad1:Cdc20 相互作用的结构见解。这种相互作用,加上 Bub1 和 Mad1 的 Mps1 依赖性关联,使 Bub1 和 Cdc20 生成三聚体组装到 Mad1(Mad1)的 C 端结构域上。我们还确定了 Mad1 的灵活性,这表明了 Cdc20:Mad1 相互作用如何将 Cdc20 的 Mad2 相互作用基序(MIM)带到 O-Mad2 附近。因此,Mps1 依赖性 MCC 组装支架的形成功能是将 Cdc20 MIM 定位并定向到 O-Mad2 附近,从而催化 C-Mad2:Cdc20 的形成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6b92/9605988/8e1c9672a376/41467_2022_34058_Fig1_HTML.jpg

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